Renewable energies driven electrochemical wastewater/soil decontamination technologies: A critical review of fundamental concepts and applications
暂无分享,去创建一个
[1] M. C. Potter. Electrical Effects Accompanying the Decomposition of Organic Compounds. II. Ionisation of the Gases Produced during Fermentation , 1911 .
[2] J. Henniker. Triboelectricity in Polymers , 1962, Nature.
[3] M. Thring. World Energy Outlook , 1977 .
[4] W. Beckman,et al. Solar Engineering of Thermal Processes , 1985 .
[5] D. L. Evans,et al. Simplified method for predicting photovoltaic array output , 1980 .
[6] E.-E Delyannis,et al. Status of solar assisted desalination: A review , 1987 .
[7] S. D. Gomkale,et al. Performance analysis of photovoltaic electrodialysis desalination plant at Tanote in Thar desert , 1987 .
[8] Osamu Kuroda,et al. An electrodialysis sea water desalination system powered by photovoltaic cells , 1987 .
[9] J. Pignatello. Dark and photoassisted Fe3+ -catalyzed degradation of chlorophenoxy herbicides by hydrogen peroxide , 1992 .
[10] R. Horn,et al. Contact electrification induced by monolayer modification of a surface and relation to acid–base interactions , 1993, Nature.
[11] C. Comninellis. Electrocatalysis in the electrochemical conversion/combustion of organic pollutants for waste water treatment , 1994 .
[12] N. Ishimaru. Solar photovoltaic desalination of brackish water in remote areas by electrodialysis , 1994 .
[13] J. Šima,et al. Photochemistry of iron (III) complexes , 1997 .
[14] T. Hibino,et al. Characterization of CdS Thin-Film in High Efficient CdS/CdTe Solar Cells , 2000 .
[15] Baltasar Peñate,et al. Electrodialysis desalination designed for wind energy (on-grid tests) , 2001 .
[16] K. Ebihara,et al. Estimation of equivalent circuit parameters of PV module and its application to optimal operation of PV system , 2001 .
[17] J. Baeyens,et al. A review of classic Fenton's peroxidation as an advanced oxidation technique. , 2003, Journal of hazardous materials.
[18] Hussain Al-Madani,et al. Water desalination by solar powered electrodialysis process , 2003 .
[19] C. Comninellis,et al. Electrochemical oxidation of p-chlorophenol on SnO2–Sb2O5 based anodes for wastewater treatment , 2003 .
[20] M. Rodrigo,et al. Electrogeneration of Hydroxyl Radicals on Boron-Doped Diamond Electrodes , 2003 .
[21] J. A. Carta,et al. Operational analysis of an innovative wind powered reverse osmosis system installed in the Canary Islands , 2003 .
[22] Baltasar Peñate,et al. Electrodialysis desalination designed for off-grid wind energy , 2004 .
[23] Lourdes García-Rodríguez,et al. Desalination by Wind Power , 2004 .
[24] R. Leblanc,et al. Electrochemical destruction of triclosan. , 2004 .
[25] Thomas Surek,et al. Crystal growth and materials research in photovoltaics: progress and challenges , 2005 .
[26] Volker Quaschning,et al. Understanding renewable energy systems , 2005 .
[27] Junichi Nemoto,et al. Photoelectrochemical reaction of biomass and bio-related compounds with nanoporous TiO2 film photoanode and O2-reducing cathode , 2006 .
[28] S. Ferro,et al. Electrochemical oxidation of organic pollutants for the wastewater treatment: direct and indirect processes. , 2006, Chemical Society reviews.
[29] P. Cañizares,et al. Coagulation and electrocoagulation of wastes polluted with dyes. , 2006, Environmental science & technology.
[30] Stefano Freguia,et al. Microbial fuel cells: methodology and technology. , 2006, Environmental science & technology.
[31] Juan Manuel Ortiz,et al. Photovoltaic electrodialysis system for brackish water desalination: Modeling of global process , 2006 .
[32] B. Logan,et al. Electricity-producing bacterial communities in microbial fuel cells. , 2006, Trends in microbiology.
[33] P. Cañizares,et al. A comparison of hydrogen cloud explosion models and the study of the vulnerability of the damage caused by an explosion of H2 , 2006 .
[34] J. Garrido,et al. Catalytic behavior of the Fe3+/Fe2+ system in the electro-Fenton degradation of the antimicrobial chlorophene , 2007 .
[35] Juan Manuel Ortiz,et al. Electrodialysis of brackish water powered by photovoltaic energy without batteries: direct connection behaviour , 2007 .
[36] Zhong Lin Wang,et al. Direct-Current Nanogenerator Driven by Ultrasonic Waves , 2007, Science.
[37] Hong Liu,et al. Sustainable Power Generation in Microbial Fuel Cells Using Bicarbonate Buffer and Proton Transfer Mechanisms , 2007 .
[38] M. Panizza,et al. Electrocatalytic materials for the electrochemical oxidation of synthetic dyes , 2007 .
[39] V. Montiel,et al. Desalination of underground brackish waters using an electrodialysis system powered directly by photovoltaic energy , 2008 .
[40] C. Martínez-Huitle,et al. Electrochemical alternatives for drinking water disinfection. , 2008, Angewandte Chemie.
[41] Antonio Rinaldi,et al. Engineering materials and biology to boost performance of microbial fuel cells: a critical review , 2008 .
[42] Kimberly E Carter,et al. Oxidative destruction of perfluorooctane sulfonate using boron-doped diamond film electrodes. , 2008, Environmental science & technology.
[43] Juyuan Jiang,et al. Simultaneous hydrogen production and electrochemical oxidation of organics using boron-doped diamond electrodes. , 2008, Environmental science & technology.
[44] V. Montiel,et al. Electrocoagulation of a synthetic textile effluent powered by photovoltaic energy without batteries: Direct connection behaviour , 2008 .
[45] Hyunwoong Park,et al. Solar-powered electrochemical oxidation of organic compounds coupled with the cathodic production of molecular hydrogen. , 2008, The journal of physical chemistry. A.
[46] C. Cameselle,et al. Sequential Electrokinetic Remediation of Mixed Contaminants in Low Permeability Soils , 2009 .
[47] C. Martínez-Huitle,et al. Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods. An updated review , 2009 .
[48] J. Chen,et al. Use of solar cell in electrokinetic remediation of cadmium-contaminated soil. , 2009, Journal of hazardous materials.
[49] J. Ni,et al. Simultaneous processes of electricity generation and p-nitrophenol degradation in a microbial fuel cell , 2009 .
[50] Gang Chen,et al. Nanoscale design to enable the revolution in renewable energy , 2009, Energy & Environmental Science.
[51] Feng Zhao,et al. Techniques for the study and development of microbial fuel cells: an electrochemical perspective. , 2009, Chemical Society reviews.
[52] K. Xiao,et al. A new method for water desalination using microbial desalination cells. , 2009, Environmental science & technology.
[53] M. Oturan,et al. Electro-Fenton process and related electrochemical technologies based on Fenton's reaction chemistry. , 2009, Chemical reviews.
[54] M. Panizza,et al. Direct and mediated anodic oxidation of organic pollutants. , 2009, Chemical reviews.
[55] Sandra Figueroa,et al. Decolorizing textile wastewater with Fenton's reagent electrogenerated with a solar photovoltaic cell. , 2009, Water research.
[56] Zhong Lin Wang,et al. Self-powered nanowire devices. , 2010, Nature nanotechnology.
[57] Whei-Min Lin,et al. Intelligent approach to maximum power point tracking control strategy for variable-speed wind turbine generation system , 2010 .
[58] V. Montiel,et al. Electrochemical wastewater treatment directly powered by photovoltaic panels: electrooxidation of a dye-containing wastewater. , 2010, Environmental science & technology.
[59] Shungui Zhou,et al. A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation. , 2010 .
[60] A. Fujishima,et al. Development of solar-driven electrochemical and photocatalytic water treatment system using a boron-doped diamond electrode and TiO2 photocatalyst. , 2010, Water research.
[61] Yan Qiao,et al. Electrocatalysis in microbial fuel cells—from electrode material to direct electrochemistry , 2010 .
[62] Fenglin Yang,et al. Degradation of azo dyes using in-situ Fenton reaction incorporated into H2O2-producing microbial fuel cell , 2010 .
[63] S.M. Muyeen,et al. A Variable Speed Wind Turbine Control Strategy to Meet Wind Farm Grid Code Requirements , 2010, IEEE Transactions on Power Systems.
[64] S. Fan,et al. A dual-chamber microbial fuel cell with conductive film-modified anode and cathode and its application for the neutral electro-Fenton process , 2010 .
[65] Shungui Zhou,et al. In situ Fenton-enhanced cathodic reaction for sustainable increased electricity generation in microbial fuel cells , 2010 .
[66] K. Rabaey,et al. Microbial electrosynthesis — revisiting the electrical route for microbial production , 2010, Nature Reviews Microbiology.
[67] C. Feng,et al. Bio-electro-Fenton process driven by microbial fuel cell for wastewater treatment. , 2010, Environmental science & technology.
[68] H. Strathmann. Electrodialysis, a mature technology with a multitude of new applications , 2010 .
[69] Á. Irabien,et al. Photovoltaic solar electrochemical oxidation (PSEO) for treatment of lignosulfonate wastewater , 2010 .
[70] Bryce S. Richards,et al. Chapter 12 Renewable Energy Powered Water Treatment Systems , 2010 .
[71] Lawrence L. Kazmerski,et al. Technical and economic assessment of photovoltaic-driven desalination systems , 2010 .
[72] Yun Yan,et al. Microbial fuel cells using natural pyrrhotite as the cathodic heterogeneous Fenton catalyst towards the degradation of biorefractory organics in landfill leachate , 2010 .
[73] Armando C. Oliveira,et al. Concentrated solar power for renewable electricity and hydrogen production from water—a review , 2010 .
[74] Maria Skyllas-Kazacos,et al. Progress in Flow Battery Research and Development , 2011 .
[75] Huamin Zhang,et al. Ion exchange membranes for vanadium redox flow battery (VRB) applications , 2011 .
[76] Á. Irabien,et al. Photovoltaic solar electro-oxidation (PSEO) process for wastewater treatment , 2011 .
[77] B. Dunn,et al. Electrical Energy Storage for the Grid: A Battery of Choices , 2011, Science.
[78] Robert Pitz-Paal,et al. Technologies and trends in solar power and fuels , 2011 .
[79] P. Liang,et al. Recent progress in electrodes for microbial fuel cells. , 2011, Bioresource technology.
[80] Vincenzo Balzani,et al. Towards an electricity-powered world , 2011 .
[81] Ashutosh Kumar Singh,et al. An introduction to the life cycle assessment (LCA) of bioelectrochemical systems (BES) for sustainable energy and product generation: Relevance and key aspects , 2011 .
[82] Tinu Abraham,et al. Socio-economic & technical assessment of photovoltaic powered membrane desalination processes for India , 2011 .
[83] Alessandro A. Carmona-Martínez,et al. Electrospun and solution blown three-dimensional carbon fiber nonwovens for application as electrodes in microbial fuel cells , 2011 .
[84] Peter W. Sauer,et al. Integrating Renewable Electricity on the Grid , 2011 .
[85] Yi Cui,et al. Nano-structured textiles as high-performance aqueous cathodes for microbial fuel cells , 2011 .
[86] M. Gutiérrez,et al. Three-dimensional microchanelled electrodes in flow-through configuration for bioanode formation and current generation , 2011 .
[87] Shungui Zhou,et al. Coupling of anodic biooxidation and cathodic bioelectro-Fenton for enhanced swine wastewater treatment. , 2011, Bioresource technology.
[88] B. Logan,et al. Neutral hydrophilic cathode catalyst binders for microbial fuel cells , 2011 .
[89] Byung Hong Kim,et al. Electroactive biofilms: Current status and future research needs , 2011 .
[90] Hanqing Yu,et al. Carbon nanotube/chitosan nanocomposite as a biocompatible biocathode material to enhance the electricity generation of a microbial fuel cell , 2011 .
[91] Jiulin Wang,et al. Efficient electricity production and simultaneously wastewater treatment via a high-performance photocatalytic fuel cell. , 2011, Water research.
[92] A. Yeung,et al. A review on techniques to enhance electrochemical remediation of contaminated soils. , 2011, Journal of hazardous materials.
[93] M Pucci,et al. Growing Neural Gas (GNG)-Based Maximum Power Point Tracking for High-Performance Wind Generator With an Induction Machine , 2011, IEEE Transactions on Industry Applications.
[94] Á. Irabien,et al. Design of the Photovoltaic Solar Electro-Oxidation (PSEO) process for wastewater treatment , 2011 .
[95] Renduo Zhang,et al. Simultaneous degradation of refractory contaminants in both the anode and cathode chambers of the microbial fuel cell. , 2011, Bioresource technology.
[96] Ming-hua Zhou,et al. An overview of electrode materials in microbial fuel cells , 2011 .
[97] Kazuya Watanabe,et al. Hierarchical micro/nano structures of carbon composites as anodes for microbial fuel cells. , 2011, Physical chemistry chemical physics : PCCP.
[98] Ranko Goic,et al. review of solar photovoltaic technologies , 2011 .
[99] Yanbiao Liu,et al. A TiO2-nanotube-array-based photocatalytic fuel cell using refractory organic compounds as substrates for electricity generation. , 2011, Chemical communications.
[100] Lijun Wang,et al. Nitrogen-doped carbon nanotubes as efficient and durable metal-free cathodic catalysts for oxygen reduction in microbial fuel cells , 2011 .
[101] Yixin Zhao,et al. Development of plasmonic semiconductor nanomaterials with copper chalcogenides for a future with sustainable energy materials , 2012 .
[102] Federica Cucchiella,et al. Estimation of the energetic and environmental impacts of a roof-mounted building-integrated photovoltaic systems , 2012 .
[103] Yi Cui,et al. Graphene–sponges as high-performance low-cost anodes for microbial fuel cells , 2012 .
[104] Yanbiao Liu,et al. Photoelectrocatalytic Degradation of Refractory Organic Compounds Enhanced by a Photocatalytic Fuel Cell , 2012 .
[105] Zhong Lin Wang,et al. Flexible triboelectric generator , 2012 .
[106] E. Brillas,et al. Remediation of water pollution caused by pharmaceutical residues based on electrochemical separation and degradation technologies: a review. , 2012, Environment international.
[107] B. Erable,et al. Stainless steel is a promising electrode material for anodes of microbial fuel cells , 2012 .
[108] Hong Liu,et al. Improved performance of CEA microbial fuel cells with increased reactor size , 2012 .
[109] Kadir Bakirci,et al. General models for optimum tilt angles of solar panels: Turkey case study , 2012 .
[110] S. Olsen,et al. Bioelectrochemical systems (BES) for sustainable energy production and product recovery from organic wastes and industrial wastewaters , 2012 .
[111] Hanqing Yu,et al. Anodic Fenton process assisted by a microbial fuel cell for enhanced degradation of organic pollutants. , 2012, Water research.
[112] C. Low,et al. Progress in redox flow batteries, remaining challenges and their applications in energy storage , 2012 .
[113] A. Ribeiro,et al. Electrokinetic remediation of organochlorines in soil: enhancement techniques and integration with other remediation technologies. , 2012, Chemosphere.
[114] J. A. Carta. Wind power integration , 2012 .
[115] Yi Cui,et al. Carbon nanotube-coated macroporous sponge for microbial fuel cell electrodes , 2012 .
[116] M. Oturan,et al. Electrochemical treatment of the antibiotic sulfachloropyridazine: kinetics, reaction pathways, and toxicity evolution. , 2012, Environmental science & technology.
[117] Chee Wei Tan,et al. A review of maximum power point tracking algorithms for wind energy systems , 2012 .
[118] Pascale Compain,et al. Solar Energy for Water Desalination , 2012 .
[119] P. Pillay,et al. Study of optimum tilt angles for solar panels in different latitudes for urban applications , 2012 .
[120] G. V. Kooten,et al. Wind Energy Policy , 2012 .
[121] Nasrudin Abd Rahim,et al. Progress in solar PV technology: Research and achievement , 2013 .
[122] U. Lucia. Thermodynamic paths and stochastic order in open systems , 2013 .
[123] Shunxi Zhang,et al. Removal of phosphate from landscape water using an electrocoagulation process powered directly by photovoltaic solar modules , 2013 .
[124] Wen-Wei Li,et al. Towards sustainable wastewater treatment by using microbial fuel cells-centered technologies , 2013 .
[125] H. Tao,et al. Degradation of p-nitrophenol in a BES-Fenton system based on limonite. , 2013, Journal of hazardous materials.
[126] Xuejiang Wang,et al. Removal of fluorine from contaminated soil by electrokinetic treatment driven by solar energy , 2013, Environmental Science and Pollution Research.
[127] I. Ortiz,et al. Removal of pharmaceuticals from a WWTP secondary effluent by ultrafiltration/reverse osmosis followed by electrochemical oxidation of the RO concentrate , 2013 .
[128] Electrochemical coagulation of treated wastewaters for reuse , 2013 .
[129] Qixing Zhou,et al. Acidic and alkaline pretreatments of activated carbon and their effects on the performance of air-cathodes in microbial fuel cells. , 2013, Bioresource technology.
[130] B. Zhou,et al. Converting hazardous organics into clean energy using a solar responsive dual photoelectrode photocatalytic fuel cell. , 2013, Journal of hazardous materials.
[131] H. Herrmann,et al. Photolysis of Fe(III) carboxylato complexes: Fe(II) quantum yields and reaction mechanisms , 2013 .
[132] D. Silva,et al. Decontamination of real textile industrial effluent by strong oxidant species electrogenerated on diamond electrode: Viability and disadvantages of this electrochemical technology , 2013 .
[133] Saffa Riffat,et al. Opportunities for solar water desalination worldwide: Review , 2013 .
[134] B. Logan,et al. Using single-chamber microbial fuel cells as renewable power sources of electro-Fenton reactors for organic pollutant treatment. , 2013, Journal of hazardous materials.
[135] E. Brillas. A review on the degradation of organic pollutants in waters by UV photoelectro-Fenton and solar photoelectro-Fenton , 2013 .
[136] M. Rodrigo,et al. Removal of residual anti-inflammatory and analgesic pharmaceuticals from aqueous systems by electrochemical advanced oxidation processes. A review , 2013 .
[137] M. Oturan,et al. Electrochemistry: as cause and cure in water pollution—an overview , 2014, Environmental Chemistry Letters.
[138] Sergi Garcia-Segura,et al. Degradation of 2,4-Dichlorophenoxyacetic Acid by Electro-oxidation and Electro-Fenton/BDD Processes Using a Pre-pilot Plant , 2013, Electrocatalysis.
[139] Hefa Cheng,et al. Development and bottlenecks of renewable electricity generation in China: a critical review. , 2013, Environmental science & technology.
[140] Á. Irabien,et al. Analysis and Modeling of the Continuous Electro-oxidation Process for Organic Matter Removal in Urban Wastewater Treatment , 2013 .
[141] M. A. Sanromán,et al. Bacterial-fungal interactions enhance power generation in microbial fuel cells and drive dye decolourisation by an ex situ and in situ electro-Fenton process. , 2013, Bioresource technology.
[142] Zhong Lin Wang,et al. Hybrid energy cell for degradation of methyl orange by self-powered electrocatalytic oxidation. , 2013, Nano letters.
[143] E. Hau. Physical Principles of Wind Energy Conversion , 2013 .
[144] Girish Kumar Singh,et al. Solar power generation by PV (photovoltaic) technology: A review , 2013 .
[145] R. Norman,et al. Long-term operation of microbial electrosynthesis systems improves acetate production by autotrophic microbiomes. , 2013, Environmental science & technology.
[146] Amaya Martínez,et al. On-grid and off-grid batch-ED (electrodialysis) process: Simulation and experimental tests , 2013 .
[147] D. Batstone,et al. Electrochemical oxidation of electrodialysed reverse osmosis concentrate on Ti/Pt-IrO2, Ti/SnO2-Sb and boron-doped diamond electrodes. , 2013, Water research.
[148] Shungui Zhou,et al. Bio-electro-Fenton system for enhanced estrogens degradation. , 2013, Bioresource technology.
[149] Wen Liu,et al. A transparent single-friction-surface triboelectric generator and self-powered touch sensor , 2013 .
[150] Zhong Lin Wang,et al. Silicon-based hybrid energy cell for self-powered electrodegradation and personal electronics. , 2013, ACS nano.
[151] Yanbin Wang,et al. Three-dimensional homogeneous ferrite-carbon aerogel: one pot fabrication and enhanced electro-Fenton reactivity. , 2013, ACS applied materials & interfaces.
[152] A. Sapkota,et al. Role of renewable energy technologies for rural electrification in achieving the Millennium Development Goals (MDGs) in Nepal. , 2013, Environmental science & technology.
[153] Hao Song,et al. Synthetic microbial consortia: from systematic analysis to construction and applications. , 2014, Chemical Society reviews.
[154] M. Oturan. Electrochemical advanced oxidation technologies for removal of organic pollutants from water , 2014, Environmental Science and Pollution Research.
[155] Zhong Lin Wang. Triboelectric nanogenerators as new energy technology and self-powered sensors - principles, problems and perspectives. , 2014, Faraday discussions.
[156] Yong Qin,et al. An electrospun nanowire-based triboelectric nanogenerator and its application in a fully self-powered UV detector. , 2014, Nanoscale.
[157] Mohamed Kheireddine Aroua,et al. Prospective applications of renewable energy based electrochemical systems in wastewater treatment: A review , 2014 .
[158] Deger Saygin,et al. Energy demand and emissions of the non-energy sector , 2014 .
[159] F. Javier Zarazaga-Soria,et al. Role of decision support system for renewable energy outreach. , 2014, Environmental science & technology.
[160] Natasha C. Wright,et al. Justification for community-scale photovoltaic-powered electrodialysis desalination systems for inland rural villages in India , 2014 .
[161] J. Jia,et al. Optimization and application of TiO₂/Ti-Pt photo fuel cell (PFC) to effectively generate electricity and degrade organic pollutants simultaneously. , 2014, Water research.
[162] B. Erable,et al. Stainless steel foam increases the current produced by microbial bioanodes in bioelectrochemical systems , 2014 .
[163] H. Ng,et al. A high-performance electrocatalytic air cathode derived from aniline and iron for use in microbial fuel cells , 2014 .
[164] Jingwei Yang,et al. Degradation of Rhodamine B using a Visible-light driven Photocatalytic Fuel Cell , 2014 .
[165] M. Hoffmann,et al. Electrochemical treatment of human waste coupled with molecular hydrogen production , 2014 .
[166] V. Montiel,et al. Electrochemical treatment of wastewater from almond industry using DSA-type anodes: Direct connection to a PV generator , 2014 .
[167] B. Chaplin. Critical review of electrochemical advanced oxidation processes for water treatment applications. , 2014, Environmental science. Processes & impacts.
[168] S. G. Kumar,et al. Physics and chemistry of CdTe/CdS thin film heterojunction photovoltaic devices: fundamental and critical aspects , 2014 .
[169] M. Rodrigo,et al. Electrochemical advanced oxidation processes: today and tomorrow. A review , 2014, Environmental Science and Pollution Research.
[170] Ruzhu Wang,et al. Advances in wind energy resource exploitation in urban environment: A review , 2014 .
[171] M. Hoffmann,et al. Urea degradation by electrochemically generated reactive chlorine species: products and reaction pathways. , 2014, Environmental science & technology.
[172] G. Zhu,et al. A Shape‐Adaptive Thin‐Film‐Based Approach for 50% High‐Efficiency Energy Generation Through Micro‐Grating Sliding Electrification , 2014, Advanced materials.
[173] Muyiwa S. Adaramola,et al. Assessment of Wind Power Generation Along the Coast of Ghana , 2014 .
[174] Zhen He,et al. Recovery of Electrical Energy in Microbial Fuel Cells , 2014 .
[175] Sergi Garcia-Segura,et al. Advances in solar photoelectro-Fenton: Decolorization and mineralization of the Direct Yellow 4 diazo dye using an autonomous solar pre-pilot plant , 2014 .
[176] T. Schmidt,et al. The economic viability of battery storage for residential solar photovoltaic systems – A review and a simulation model , 2014 .
[177] M. A. Sanromán,et al. Application of benthonic microbial fuel cells and electro-Fenton process to dye decolourisation , 2014 .
[178] Lin Li,et al. Optofluidics based micro-photocatalytic fuel cell for efficient wastewater treatment and electricity generation. , 2014, Lab on a chip.
[179] B. Erable,et al. Electroanalysis of microbial anodes for bioelectrochemical systems: basics, progress and perspectives. , 2014, Physical chemistry chemical physics : PCCP.
[180] M. Oturan,et al. Advanced Oxidation Processes in Water/Wastewater Treatment: Principles and Applications. A Review , 2014 .
[181] Hanqing Yu,et al. Cathodic catalysts in bioelectrochemical systems for energy recovery from wastewater. , 2014, Chemical Society reviews.
[182] M. Rodrigo,et al. Electrochemically assisted remediation of pesticides in soils and water: a review. , 2014, Chemical reviews.
[183] Jae-Do Park,et al. Practical energy harvesting for microbial fuel cells: a review. , 2015, Environmental science & technology.
[184] I. Angelidaki,et al. Alternate switching between microbial fuel cell and microbial electrolysis cell operation as a new method to control H2O2 level in Bioelectro-Fenton system , 2015 .
[185] Jian Liang,et al. Can electrokinetic removal of metals from contaminated paddy soils be powered by microbial fuel cells , 2015 .
[186] P. Ekins,et al. The geographical distribution of fossil fuels unused when limiting global warming to 2 °C , 2015, Nature.
[187] Zhong Lin Wang,et al. Triboelectric nanogenerators as self-powered active sensors , 2015 .
[188] V. M. Ortiz-Martínez,et al. Recent progress and perspectives in microbial fuel cells for bioenergy generation and wastewater treatment , 2015 .
[189] P. Cañizares,et al. A wind-powered BDD electrochemical oxidation process for the removal of herbicides. , 2015, Journal of environmental management.
[190] Kexun Li,et al. The performance of activated carbon treated with H3PO4 at 80°C in the air-cathode microbial fuel cell. , 2015 .
[191] Maria-Eleni Ragoussi,et al. New generation solar cells: concepts, trends and perspectives. , 2015, Chemical communications.
[192] M. Pacheco,et al. Review on the electrochemical processes for the treatment of sanitary landfill leachates: Present and future , 2015 .
[193] G. Esposito,et al. Coupling of membrane filtration and advanced oxidation processes for removal of pharmaceutical residues: A critical review , 2015 .
[194] M. Willander,et al. Self-powered electrochemical water treatment system for sterilization and algae removal using water wave energy , 2015 .
[195] Sam F. Y. Li,et al. Bio-electrochemical degradation of paracetamol in a microbial fuel cell-Fenton system , 2015 .
[196] Yajun Zhang,et al. A solar-driven photocatalytic fuel cell with dual photoelectrode for simultaneous wastewater treatment and hydrogen production , 2015 .
[197] C. Ballif,et al. Light management in thin film silicon solar cells , 2015 .
[198] Baogang Zhang,et al. Electrochemical decolorization of methyl orange powered by bioelectricity from single-chamber microbial fuel cells. , 2015, Bioresource technology.
[199] Georgia D. Van de Zande,et al. DESIGN OF A VILLAGE-SCALE PV POWERED ELECTRODIALYSIS REVERSAL SYSTEM FOR BRACKISH WATER DESALINATION IN INDIA , 2015 .
[200] P. Campo,et al. Identification of chlorinated oligomers formed during anodic oxidation of phenol in the presence of chloride. , 2015, Journal of hazardous materials.
[201] B. Li,et al. Novelly developed three-dimensional carbon scaffold anodes from polyacrylonitrile for microbial fuel cells , 2015 .
[202] M. Skyllas-Kazacos,et al. Vanadium redox flow batteries (VRBs) for medium- and large-scale energy storage , 2015 .
[203] F. Cucchiella,et al. Residential photovoltaic plant: environmental and economical implications from renewable support policies , 2015, Clean Technologies and Environmental Policy.
[204] N. K. Jain,et al. A review on development of photovoltaic water pumping system , 2015 .
[205] M. Rodrigo,et al. Single and Coupled Electrochemical Processes and Reactors for the Abatement of Organic Water Pollutants: A Critical Review. , 2015, Chemical reviews.
[206] Caofeng Pan,et al. A self-powered system based on triboelectric nanogenerators and supercapacitors for metal corrosion prevention , 2015 .
[207] Alfredo García-García,et al. Industrial wastewater treatment by electrocoagulation–electrooxidation processes powered by solar cells , 2015 .
[208] B. Logan,et al. Assessment of Microbial Fuel Cell Configurations and Power Densities , 2015 .
[209] D. Sedlak,et al. Challenges and Opportunities for Electrochemical Processes as Next-Generation Technologies for the Treatment of Contaminated Water. , 2015, Environmental science & technology.
[210] S. Freguia,et al. Oxidised stainless steel: a very effective electrode material for microbial fuel cell bioanodes but at high risk of corrosion , 2015 .
[211] Robert L. Jaffe,et al. Pathways for solar photovoltaics , 2015 .
[212] L. Rietveld,et al. Electrochemically active biofilm and photoelectrocatalytic regeneration of the titanium dioxide composite electrode for advanced oxidation in water treatment , 2015 .
[213] Zhong Lin Wang,et al. Networks of triboelectric nanogenerators for harvesting water wave energy: a potential approach toward blue energy. , 2015, ACS nano.
[214] M. Sillanpää,et al. Recent developments of electro-oxidation in water treatment — A review , 2015 .
[215] M. Nagaraju Naik,et al. Review of solar photovoltaic water pumping system technology for irrigation and community drinking water supplies , 2015 .
[216] Zhen He,et al. Graphene-modified electrodes for enhancing the performance of microbial fuel cells. , 2015, Nanoscale.
[217] L. T. Angenent,et al. Microbial electrochemistry and technology: terminology and classification , 2015 .
[218] H. You,et al. Enhanced photocatalytic activity for the degradation of rhodamine B by integrating salinity gradient power into a photocatalytic fuel cell , 2015 .
[219] S. Dou,et al. A technology review of electrodes and reaction mechanisms in vanadium redox flow batteries , 2015 .
[220] K. Baek,et al. Application of solar-cells in the electrokinetic remediation of As-contaminated soil , 2015 .
[221] Zhong Lin Wang,et al. β-cyclodextrin enhanced triboelectrification for self-powered phenol detection and electrochemical degradation , 2015 .
[222] E. Yanful,et al. Solar powered electrokinetic remediation of Cu polluted soil using a novel anode configuration , 2015 .
[223] Antonio Dominguez-Ramos,et al. Sustainability assessment of electrodialysis powered by photovoltaic solar energy for freshwater production , 2015 .
[224] M. Hoffmann,et al. Bi_xTi_(1−x)O_z Functionalized Heterojunction Anode with an Enhanced Reactive Chlorine Generation Efficiency in Dilute Aqueous Solutions , 2015 .
[225] S. Xue,et al. Performance characteristics of a membraneless solar responsive photocatalytic fuel cell with an air-breathing cathode under different fuels and electrolytes and air conditions , 2015 .
[226] H. Sharon,et al. A review of solar energy driven desalination technologies , 2015 .
[227] Baogang Zhang,et al. Utilization of single-chamber microbial fuel cells as renewable power sources for electrochemical degradation of nitrogen-containing organic compounds , 2015 .
[228] P. Cañizares,et al. Combination of bioremediation and electrokinetics for the in-situ treatment of diesel polluted soil: A comparison of strategies. , 2015, The Science of the total environment.
[229] Zhong Lin Wang,et al. Progress in triboelectric nanogenerators as a new energy technology and self-powered sensors , 2015 .
[230] P. Cañizares,et al. Solar-powered CDEO for the treatment of wastewater polluted with the herbicide 2,4-D , 2015 .
[231] Sangki Park,et al. Fabrication of nitrogen-doped graphite felts as positive electrodes using polypyrrole as a coating agent in vanadium redox flow batteries , 2015 .
[232] Vicente Navarro,et al. Scale-up on electrokinetic remediation: Engineering and technological parameters. , 2016, Journal of hazardous materials.
[233] A. Nakayama,et al. An analysis on ion transport process in electrodialysis desalination , 2016 .
[234] Desheng Li,et al. Efficient mineralization of the antibiotic trimethoprim by solar assisted photoelectro-Fenton process driven by a photovoltaic cell. , 2016, Journal of hazardous materials.
[235] Junhui Li,et al. A novel carbon black graphite hybrid air-cathode for efficient hydrogen peroxide production in bioelectrochemical systems , 2016 .
[236] Adrián Escapa,et al. Microbial electrolysis cells: An emerging technology for wastewater treatment and energy recovery. From laboratory to pilot plant and beyond , 2016 .
[237] M. Willander,et al. Triboelectric Nanogenerator for Sustainable Wastewater Treatment via a Self‐Powered Electrochemical Process , 2016 .
[238] P. Cañizares,et al. Solar-powered electrokinetic remediation for the treatment of soil polluted with the herbicide 2,4-D , 2016 .
[239] P. Malek,et al. Decentralized desalination of brackish water using an electrodialysis system directly powered by wind energy , 2016 .
[240] G. Esposito,et al. Sub-stoichiometric titanium oxide (Ti4O7) as a suitable ceramic anode for electrooxidation of organic pollutants: A case study of kinetics, mineralization and toxicity assessment of amoxicillin. , 2016, Water research.
[241] A. Rezaee Jordehi,et al. Parameter estimation of solar photovoltaic (PV) cells: A review , 2016 .
[242] L. Mokrani,et al. MPPT fuzzy logic controller of a wind energy conversion system based on a PMSG , 2016, 2016 8th International Conference on Modelling, Identification and Control (ICMIC).
[243] J. Qu,et al. Macroporous monolithic Magnéli-phase titanium suboxides as anode material for effective bioelectricity generation in microbial fuel cells , 2016 .
[244] A. Julbe,et al. Design of a novel fuel cell-Fenton system: a smart approach to zero energy depollution , 2016 .
[245] Xuejin Li,et al. A solar light driven dual photoelectrode photocatalytic fuel cell (PFC) for simultaneous wastewater treatment and electricity generation. , 2016, Journal of hazardous materials.
[246] P. Cañizares,et al. Performance of wind-powered soil electroremediation process for the removal of 2,4-D from soil. , 2016, Journal of environmental management.
[247] C. Battaglia,et al. High-efficiency crystalline silicon solar cells: status and perspectives , 2016 .
[248] Yang Zhang,et al. Employing Battery Storage to Increase Photovoltaic Self-sufficiency in a Residential Building of Sweden , 2016 .
[249] Long Lin,et al. Rolling Friction Enhanced Free‐Standing Triboelectric Nanogenerators and their Applications in Self‐Powered Electrochemical Recovery Systems , 2016 .
[250] special to C En,et al. Energy-related CO2 emissions keep falling , 2016 .
[251] Zhong‐Lin Wang,et al. Triboelectric Nanogenerators Driven Self‐Powered Electrochemical Processes for Energy and Environmental Science , 2016 .
[252] Abdollah A. Afjeh,et al. Wind energy: Trends and enabling technologies , 2016 .
[253] F. Cucchiella,et al. Photovoltaic energy systems with battery storage for residential areas: an economic analysis , 2016 .
[254] P. Cañizares,et al. Electrokinetic flushing with surrounding electrode arrangements for the remediation of soils that are polluted with 2,4-D: A case study in a pilot plant. , 2016, The Science of the total environment.
[255] Sunny C. Jiang,et al. Electrochemical disinfection of toilet wastewater using wastewater electrolysis cell , 2016, Water research.
[256] Zhong Lin Wang,et al. High-efficiency ramie fiber degumming and self-powered degumming wastewater treatment using triboelectric nanogenerator , 2016 .
[257] P. Cañizares,et al. Application of electrokinetic soil flushing to four herbicides: A comparison. , 2016, Chemosphere.
[258] D. Sedlak,et al. Electrochemical Transformation of Trace Organic Contaminants in the Presence of Halide and Carbonate Ions , 2016, Environmental science & technology.
[259] D. Yan,et al. Microbial community structure of different electrode materials in constructed wetland incorporating microbial fuel cell. , 2016, Bioresource technology.
[260] M Safdar,et al. Microfluidic fuel cells for energy generation. , 2016, Lab on a chip.
[261] Jibran R. Khan,et al. Solar power technologies for sustainable electricity generation – A review , 2016 .
[262] Wei-min Liu,et al. Paper-based triboelectric nanogenerators and their application in self-powered anticorrosion and antifouling , 2016 .
[263] S Dulio,et al. Energy harvesting from human motion: materials and techniques. , 2016, Chemical Society reviews.
[264] Jingquan Liu,et al. A flexible and biocompatible triboelectric nanogenerator with tunable internal resistance for powering wearable devices , 2016, Scientific Reports.
[265] Sergi Garcia-Segura,et al. Combustion of textile monoazo, diazo and triazo dyes by solar photoelectro-Fenton: Decolorization, kinetics and degradation routes , 2016 .
[266] H. Younesi,et al. Electricity generation through degradation of organic matters in medicinal herbs wastewater using bio-electro-Fenton system. , 2016, Journal of environmental management.
[267] Yuguang Niu,et al. Wind energy rejection in China: Current status, reasons and perspectives , 2016 .
[268] D. Broadstock,et al. China's future energy mix and emissions reduction potential: a scenario analysis incorporating technological learning curves , 2016 .
[269] Nadarajah Kannan,et al. Solar energy for future world: - A review , 2016 .
[270] Daewon Kim,et al. Self-powered electro-coagulation system driven by a wind energy harvesting triboelectric nanogenerator for decentralized water treatment , 2016 .
[271] Shuiliang Chen,et al. Modified stainless steel for high performance and stable anode in microbial fuel cells , 2016 .
[272] V. Balzani,et al. Solar Electricity and Solar Fuels: Status and Perspectives in the Context of the Energy Transition. , 2016, Chemistry.
[273] Sandro Nižetić,et al. Water spray cooling technique applied on a photovoltaic panel: The performance response , 2016 .
[274] Vilas R. Kalamkar,et al. Solar photovoltaic water pumping system - A comprehensive review , 2016 .
[275] Shih Yuan Liu,et al. Wind energy applications for Taiwan buildings: What are the challenges and strategies for small wind energy systems exploitation? , 2016 .
[276] P. Cañizares,et al. Remediation of soils polluted with 2,4-D by electrokinetic soil flushing with facing rows of electrodes: A case study in a pilot plant , 2016 .
[277] M. Hoffmann,et al. Synthesis and Stabilization of Blue-Black TiO2 Nanotube Arrays for Electrochemical Oxidant Generation and Wastewater Treatment. , 2016, Environmental science & technology.
[278] N. Barakat,et al. Electrodepositing technique for improving the performance of crystalline and amorphous carbonaceous anodes for MFCs , 2016 .
[279] Fenglin Yang,et al. Energy-efficient degradation of rhodamine B in a LED illuminated photocatalytic fuel cell with anodic Ag/AgCl/GO and cathodic ZnIn2S4 catalysts , 2016 .
[280] Hanqing Yu,et al. Harvest and utilization of chemical energy in wastes by microbial fuel cells. , 2016, Chemical Society reviews.
[281] Mingxing Zhao,et al. Repeated oxidative degradation of methyl orange through bio-electro-Fenton in bioelectrochemical system (BES). , 2016, Bioresource technology.
[282] Dirk Uwe Sauer,et al. Optimization of self-consumption and techno-economic analysis of PV-battery systems in commercial applications , 2016 .
[283] H. Fathabadi. Comparative study between two novel sensorless and sensor based dual-axis solar trackers , 2016 .
[284] G. Esposito,et al. Use of Sub-stoichiometric Titanium Oxide as a Ceramic Electrode in Anodic Oxidation and Electro-Fenton Degradation of the Beta-blocker Propranolol: Degradation Kinetics and Mineralization Pathway , 2017 .
[285] F. Zhao,et al. Progress of air-breathing cathode in microbial fuel cells , 2017 .
[286] Ramesh C. Bansal,et al. A review of technical issues on the development of solar photovoltaic systems , 2017 .
[287] Haoshen Zhou,et al. Solar energy storage in the rechargeable batteries , 2017 .
[288] Yujie Feng,et al. Simultaneous algae-polluted water treatment and electricity generation using a biocathode-coupled electrocoagulation cell (bio-ECC). , 2017, Journal of hazardous materials.
[289] N. Zhang,et al. A paper triboelectric nanogenerator for self-powered electronic systems. , 2017, Nanoscale.
[290] P. Vanýsek,et al. Redox flow batteries as the means for energy storage , 2017 .
[291] Farivar Fazelpour,et al. Wind energy potential and economic assessment of four locations in Sistan and Balouchestan province in Iran , 2017 .
[292] Y. Wong,et al. Hybrid system of photocatalytic fuel cell and Fenton process for electricity generation and degradation of Reactive Black 5 , 2017 .
[293] B. Zhou,et al. Enhanced organic pollutants degradation and electricity production simultaneously via strengthening the radicals reaction in a novel Fenton-photocatalytic fuel cell system. , 2017, Water research.
[294] Kanzumba Kusakana,et al. A review of solar photovoltaic systems cooling technologies , 2017 .
[295] Ruoli Tang,et al. Large-scale photovoltaic system on green ship and its MPPT controlling , 2017 .
[296] C. O. Okoye,et al. Technical and economic assessment of fixed, single and dual-axis tracking PV panels in low latitude countries , 2017 .
[297] I. Angelidaki,et al. Novel bio-electro-Fenton technology for azo dye wastewater treatment using microbial reverse-electrodialysis electrolysis cell. , 2017, Bioresource technology.
[298] Hui Zhang,et al. The Application of Electro-Fenton Process for the Treatment of Artificial Sweeteners , 2017 .
[299] Xiao Chen,et al. Research and current status of the solar photovoltaic water pumping system – A review , 2017 .
[300] S. Adeloju,et al. Recent advances in the development and utilization of modern anode materials for high performance microbial fuel cells. , 2017, Biosensors & bioelectronics.
[301] M. Tian,et al. An innovative electro-fenton degradation system self-powered by triboelectric nanogenerator using biomass-derived carbon materials as cathode catalyst , 2017 .
[302] Anastasios J. Karabelas,et al. Electro-Fenton Applications in the Water Industry , 2017 .
[303] S. Puig,et al. Influence of iron species on integrated microbial fuel cell and electro-Fenton process treating landfill leachate , 2017 .
[304] K. Scott,et al. Durability and regeneration of activated carbon air-cathodes in long-term operated microbial fuel cells , 2017 .
[305] Barry Hartweg. Global Implementation of Renewable Energy , 2017 .
[306] Fenglin Yang,et al. Destruction of tetracycline hydrochloride antibiotics by FeOOH/TiO2 granular activated carbon as expanded cathode in low-cost MBR/MFC coupled system , 2017 .
[307] B. Chang,et al. Advances in microbial fuel cells for wastewater treatment , 2017 .
[308] Robert A. Dorey,et al. Triboelectric nanogenerators: providing a fundamental framework , 2017 .
[309] Zhong Lin Wang,et al. Self-Powered Electrochemical Oxidation of 4-Aminoazobenzene Driven by a Triboelectric Nanogenerator. , 2017, ACS nano.
[310] C. Santoro,et al. Microbial fuel cells: From fundamentals to applications. A review , 2017, Journal of power sources.
[311] Farrukh Nagi,et al. A review of photovoltaic water pumping system designing methods, control strategies and field performance , 2017 .
[312] M. Hoffmann,et al. Toxic Byproduct Formation during Electrochemical Treatment of Latrine Wastewater , 2017, Environmental science & technology.
[313] J. Ramanujam,et al. Copper indium gallium selenide based solar cells – a review , 2017 .
[314] S. Puig,et al. Employing Microbial Electrochemical Technology-driven electro-Fenton oxidation for the removal of recalcitrant organics from sanitary landfill leachate. , 2017, Bioresource technology.
[315] F. Abnisa,et al. Removal of lead by solar-photovoltaic electrocoagulation using novel perforated zinc electrode , 2017 .
[316] D. Zerrouki,et al. Hydrogen recovery from the photovoltaic electroflocculation-flotation process for harvesting Chlorella pyrenoidosa microalgae , 2017 .
[317] B. Logan,et al. The impact of new cathode materials relative to baseline performance of microbial fuel cells all with the same architecture and solution chemistry , 2017 .
[318] S. Ushak,et al. Assessment of pilot-scale water purification module with electrodialysis technology and solar energy , 2017 .
[319] Zhong Lin Wang,et al. Triboelectric Nanogenerator Powered Electrochemical Degradation of Organic Pollutant Using Pt-Free Carbon Materials. , 2017, ACS nano.
[320] D. Park,et al. Performance of the all-vanadium redox flow battery stack , 2017 .
[321] Yosoon Choi,et al. Review of photovoltaic and wind power systems utilized in the mining industry , 2017 .
[322] V. Vilar,et al. Electrochemical advanced oxidation processes: A review on their application to synthetic and real wastewaters , 2017 .
[323] P. G. Vicente,et al. Photovoltaic Evaporative Chimney as a new alternative to enhance solar cooling , 2017 .
[324] Juan R. Trapero,et al. Is microbial fuel cell technology ready? An economic answer towards industrial commercialization , 2017 .
[325] M. Oturan,et al. Heterogeneous Electro-Fenton Process: Principles and Applications , 2017 .
[326] Ahmed M. Soliman,et al. Tilt and azimuth angles in solar energy applications – A review , 2017 .
[327] M. Orabi,et al. Optimum tilt angle for photovoltaic system in desert environment , 2017 .
[328] Jeff Johnson. Growth in global solar energy capacity tops coal , 2017 .
[329] M. Annuar,et al. Mini-review: Anode modification for improved performance of microbial fuel cell , 2017 .
[330] Chang-Ping Yu,et al. Enhancement of emerging contaminants removal using Fenton reaction driven by H2O2-producing microbial fuel cells. , 2017 .
[331] Hongrui Ding,et al. A cost-effective birnessite–silicon solar cell hybrid system with enhanced performance for dye decolorization , 2017 .
[332] Zhiying Yan,et al. Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation. , 2017, Journal of hazardous materials.
[333] P. Cañizares,et al. Reversible electrokinetic adsorption barriers for the removal of atrazine and oxyfluorfen from spiked soils. , 2017, Journal of hazardous materials.
[334] M. Rodrigo,et al. Performance of a vanadium redox flow battery for the storage of electricity produced in photovoltaic solar panels , 2017 .
[335] Muhammad Hassan,et al. Power generation and pollutants removal from landfill leachate in microbial fuel cell: Variation and influence of anodic microbiomes. , 2018, Bioresource technology.
[336] A. Micallef,et al. Overview of solar technologies for electricity, heating and cooling production , 2018, Renewable and Sustainable Energy Reviews.
[337] Ming-hua Zhou,et al. An overview on the removal of synthetic dyes from water by electrochemical advanced oxidation processes. , 2018, Chemosphere.
[338] P. Cañizares,et al. Towards the sustainable powering of the electrocoagulation of wastewater through the use of solar-vanadium redox flow battery: A first approach , 2018 .
[339] E. Tzen. Wind-Powered Desalination—Principles, Configurations, Design, and Implementation , 2018 .
[340] H. Fu. Environmentally friendly and earth-abundant colloidal chalcogenide nanocrystals for photovoltaic applications , 2018 .
[341] John Kaiser Calautit,et al. A review of sustainable solar irrigation systems for Sub-Saharan Africa , 2018 .
[342] Ali Ghorbani Kashkooli,et al. An all-aqueous redox flow battery with unprecedented energy density , 2018 .
[343] Matthew R. Shaner,et al. Geophysical constraints on the reliability of solar and wind power in the United States , 2018 .
[344] Jiankun Liu,et al. Aerodynamic optimization for variable-speed wind turbines based on wind energy capture efficiency , 2018, Applied Energy.
[345] B. Sovacool,et al. Insights into wind sites: Critically assessing the innovation, cost, and performance dynamics of global wind energy development , 2018, Energy Policy.
[346] Á. Irabien,et al. Photovoltaic solar electrodialysis with bipolar membranes , 2018 .
[347] V. Montiel,et al. Prospective Applications of Renewable Energy-Based Electrochemical Systems in Wastewater Treatment , 2018 .
[348] Huizhen Gao,et al. Exchange electrode-electrokinetic remediation of Cr-contaminated soil using solar energy , 2018 .
[349] T. M. Gür. Correction: Review of electrical energy storage technologies, materials and systems: challenges and prospects for large-scale grid storage , 2018 .
[350] I. Angelidaki,et al. Bio-electro-Fenton processes for wastewater treatment: Advances and prospects , 2018, Chemical Engineering Journal.
[351] Babkir Ali,et al. Comparative assessment of the feasibility for solar irrigation pumps in Sudan , 2018 .
[352] Theodore Stathopoulos,et al. Urban wind energy: Some views on potential and challenges , 2018, Journal of Wind Engineering and Industrial Aerodynamics.
[353] P. Cañizares,et al. Vanadium redox flow batteries for the storage of electricity produced in wind turbines , 2018 .
[354] Amir Vadiee,et al. A review of solar chimney integrated systems for space heating and cooling application , 2018 .
[355] E. Santos,et al. Electrochemical technology for the treatment of real washing machine effluent at pre-pilot plant scale by using active and non-active anodes , 2018, Journal of Electroanalytical Chemistry.
[356] G. Esposito,et al. Electrochemical mineralization of sulfamethoxazole over wide pH range using FeIIFeIII LDH modified carbon felt cathode: Degradation pathway, toxicity and reusability of the modified cathode , 2018, Chemical Engineering Journal.
[357] D. Millstein,et al. The future of wind energy in California: Future projections with the Variable-Resolution CESM , 2017, Renewable Energy.
[358] M. Sillanpää,et al. Removal of natural organic matter in drinking water treatment by coagulation: A comprehensive review. , 2018, Chemosphere.
[359] C. Martínez-Huitle,et al. Heterogeneous electro-Fenton and photoelectro-Fenton processes: A critical review of fundamental principles and application for water/wastewater treatment , 2018, Applied Catalysis B: Environmental.
[360] Michele Ciofalo,et al. Electrodialysis for water desalination: A critical assessment of recent developments on process fundamentals, models and applications , 2018 .
[361] D. Schindler,et al. Achieving Germany’s wind energy expansion target with an improved wind turbine siting approach , 2018, Energy Conversion and Management.
[362] M. Rotea,et al. Wind energy research: State-of-the-art and future research directions , 2018, Renewable Energy.
[363] Ying Zhang,et al. Application of solar energy in water treatment processes: A review , 2018 .
[364] M. Tian,et al. An advanced electro-Fenton degradation system with triboelectric nanogenerator as electric supply and biomass-derived carbon materials as cathode catalyst , 2018 .
[365] Meihong Wang,et al. Techno-economic analysis of wind power integrated with both compressed air energy storage (CAES) and biomass gasification energy storage (BGES) for power generation , 2018, RSC advances.
[366] M. A. Sanromán,et al. Current advances and trends in electro-Fenton process using heterogeneous catalysts - A review. , 2018, Chemosphere.
[367] Edit Cséfalvay,et al. Sustainability Assessment of Renewable Energy in the United States, Canada, the European Union, China, and the Russian Federation , 2018 .
[368] O. Stroyuk,et al. Solar light harvesting with multinary metal chalcogenide nanocrystals. , 2018, Chemical Society reviews.
[369] Hoda Akbari,et al. Efficient energy storage technologies for photovoltaic systems , 2019, Solar Energy.
[370] P. Cañizares,et al. Radiation-assisted electrochemical processes in semi-pilot scale for the removal of clopyralid from soil washing wastes , 2019, Separation and Purification Technology.
[371] C. Causserand,et al. Efficiency of plasma elaborated sub-stoichiometric titanium oxide (Ti4O7) ceramic electrode for advanced electrochemical degradation of paracetamol in different electrolyte media , 2019, Separation and Purification Technology.