Outstanding reinforcement on chain elongation through five-micrometer-sized biochar
暂无分享,去创建一个
P. He | Fan Lü | L. Shao | Wenhao Han | Yuhao Liu
[1] S. Loureiro,et al. Biochar in soil mitigates dimethoate hazard to soil pore water exposed biota. , 2020, Journal of hazardous materials.
[2] J. Bundschuh,et al. A critical review on arsenic removal from water using biochar-based sorbents: The significance of modification and redox reactions , 2020, Chemical Engineering Journal.
[3] Zhiping Zhu,et al. Bioconversion of swine manure into high-value products of medium chain fatty acids. , 2020, Waste management.
[4] Jian Zhang,et al. Recent advances in biochar application for water and wastewater treatment: a review , 2020, PeerJ.
[5] P. Oleskowicz-Popiel,et al. Evaluation of the feed composition for an effective medium chain carboxylic acid production in an open culture fermentation. , 2020, The Science of the total environment.
[6] Na Chu,et al. Electro-fermentation regulates mixed culture chain elongation with fresh and acclimated cathode , 2020 .
[7] C. Buisman,et al. Consecutive lactate formation and chain elongation to reduce exogenous chemicals input in repeated-batch food waste fermentation. , 2020, Water research.
[8] Junting Pan,et al. Enhanced methane production and syntrophic connection between microorganisms during semi-continuous anaerobic digestion of chicken manure by adding biochar , 2019 .
[9] P. He,et al. Road to full bioconversion of biowaste to biochemicals centering on chain elongation: A mini review. , 2019, Journal of environmental sciences.
[10] P. He,et al. Ability of biochar to facilitate anaerobic digestion is restricted to stressed surroundings , 2019, Journal of Cleaner Production.
[11] Hongbin Liu,et al. Achievements of biochar application for enhanced anaerobic digestion: A review. , 2019, Bioresource technology.
[12] E. Kwon,et al. Biochar-based engineered composites for sorptive decontamination of water: A review , 2019, Chemical Engineering Journal.
[13] N. Ren,et al. Medium chain carboxylic acids production from waste biomass: Current advances and perspectives. , 2019, Biotechnology advances.
[14] Yaobin Zhang,et al. Potential of direct interspecies electron transfer in synergetic enhancement of methanogenesis and sulfate removal in an up-flow anaerobic sludge blanket reactor with magnetite. , 2019, The Science of the total environment.
[15] Chunmei Liu,et al. Performance and microbial characterization of two-stage caproate fermentation from fruit and vegetable waste via anaerobic microbial consortia. , 2019, Bioresource technology.
[16] M. Coma,et al. Medium Chain Carboxylic Acids from Complex Organic Feedstocks by Mixed Culture Fermentation , 2019, Molecules.
[17] L. Leng,et al. Shaping microbial consortia in coupling glycerol fermentation and carboxylate chain elongation for Co-production of 1,3-propanediol and caproate: Pathways and mechanisms. , 2019, Water research.
[18] R. Surampalli,et al. Pine-wood derived nanobiochar for removal of carbamazepine from aqueous media: Adsorption behavior and influential parameters , 2017, Arabian Journal of Chemistry.
[19] R. Liaquat,et al. Applications of materials as additives in anaerobic digestion technology , 2018, Renewable and Sustainable Energy Reviews.
[20] Yong-guan Zhu,et al. Biochar Modulates Methanogenesis through Electron Syntrophy of Microorganisms with Ethanol as a Substrate. , 2018, Environmental science & technology.
[21] P. He,et al. Metabolic Interactions of a Chain Elongation Microbiome , 2018, Applied and Environmental Microbiology.
[22] Zifu Li,et al. Recovery of Ammonium in Urine by Biochar Derived from Faecal Sludge and its Application as Soil Conditioner , 2018 .
[23] P. He,et al. Particle size dependence of the physicochemical properties of biochar. , 2018, Chemosphere.
[24] Daniel C W Tsang,et al. Wood-based biochar for the removal of potentially toxic elements in water and wastewater: a critical review , 2018, International Materials Reviews.
[25] Jeong-Hoon Park,et al. Direct interspecies electron transfer via conductive materials: A perspective for anaerobic digestion applications. , 2018, Bioresource technology.
[26] P. He,et al. Significant enhancement by biochar of caproate production via chain elongation. , 2017, Water research.
[27] D. Kirk,et al. Preliminary investigation of electrical conductivity of monolithic biochar , 2017 .
[28] P. Myer,et al. Effect of Biochar Type and Size on in Vitro Rumen Fermentation of Orchard Grass Hay , 2017 .
[29] Kelly P. Nevin,et al. Metatranscriptomic Evidence for Direct Interspecies Electron Transfer between Geobacter and Methanothrix Species in Methanogenic Rice Paddy Soils , 2017, Applied and Environmental Microbiology.
[30] Hong Li,et al. The challenges of anaerobic digestion and the role of biochar in optimizing anaerobic digestion. , 2017, Waste management.
[31] Derek R Lovley,et al. Happy together: microbial communities that hook up to swap electrons , 2016, The ISME Journal.
[32] Y. Kamagata,et al. Methane production from coal by a single methanogen , 2016, Science.
[33] P. He,et al. Alcohol-to-acid ratio and substrate concentration affect product structure in chain elongation reactions initiated by unacclimatized inoculum. , 2016, Bioresource technology.
[34] M. Coma,et al. High salinity in molasses wastewaters shifts anaerobic digestion to carboxylate production. , 2016, Water research.
[35] Kelly P. Nevin,et al. Potential enhancement of direct interspecies electron transfer for syntrophic metabolism of propionate and butyrate with biochar in up-flow anaerobic sludge blanket reactors. , 2016, Bioresource technology.
[36] Pinjing He,et al. Biochar alleviates combined stress of ammonium and acids by firstly enriching Methanosaeta and then Methanosarcina. , 2016, Water research.
[37] L. T. Angenent,et al. Chain Elongation with Reactor Microbiomes: Open-Culture Biotechnology To Produce Biochemicals. , 2016, Environmental science & technology.
[38] H. König,et al. Isolation of acetic, propionic and butyric acid-forming bacteria from biogas plants. , 2016, Journal of biotechnology.
[39] S. Sohi,et al. Adsorption kinetics of magnetic biochar derived from peanut hull on removal of Cr (VI) from aqueous solution: Effects of production conditions and particle size. , 2016, Chemosphere.
[40] Pinjing He,et al. Application of eco-compatible biochar in anaerobic digestion to relieve acid stress and promote the selective colonization of functional microbes. , 2015, Water research.
[41] A. Kappler,et al. Biochar as an Electron Shuttle between Bacteria and Fe(III) Minerals , 2014 .
[42] A. Zeng,et al. Microbial community composition and dynamics in high-temperature biogas reactors using industrial bioethanol waste as substrate , 2014, Applied Microbiology and Biotechnology.
[43] Korneel Rabaey,et al. Chain elongation in anaerobic reactor microbiomes to recover resources from waste. , 2014, Current opinion in biotechnology.
[44] Kelly P. Nevin,et al. Promoting Interspecies Electron Transfer with Biochar , 2014, Scientific Reports.
[45] A. Spormann,et al. Hydrogenase-independent uptake and metabolism of electrons by the archaeon Methanococcus maripaludis , 2014, The ISME Journal.
[46] Lei Zhang,et al. Highly ordered macroporous woody biochar with ultra-high carbon content as supercapacitor electrodes , 2013 .
[47] Davey L. Jones,et al. Life in the 'charosphere' - Does biochar in agricultural soil provide a significant habitat for microorganisms? , 2013 .
[48] D. Lovley,et al. Promoting direct interspecies electron transfer with activated carbon , 2012 .
[49] L. T. Angenent,et al. Chain elongation with reactor microbiomes: upgrading dilute ethanol to medium-chain carboxylates , 2012 .
[50] B. Ollivier,et al. Defluviitoga tunisiensis gen. nov., sp. nov., a thermophilic bacterium isolated from a mesothermic and anaerobic whey digester. , 2012, International journal of systematic and evolutionary microbiology.
[51] James M Clomburg,et al. Engineered reversal of the β-oxidation cycle for the synthesis of fuels and chemicals , 2011, Nature.
[52] L. T. Angenent,et al. Waste to bioproduct conversion with undefined mixed cultures: the carboxylate platform. , 2011, Trends in biotechnology.
[53] Hubertus V. M. Hamelers,et al. Biological formation of caproate and caprylate from acetate: fuel and chemical production from low grade biomass , 2011 .
[54] T. Clough,et al. Biochar adsorbed ammonia is bioavailable , 2011, Plant and Soil.
[55] H. Ding,et al. Caproate formation in mixed-culture fermentative hydrogen production. , 2010, Bioresource technology.
[56] Martin Hartmann,et al. Introducing mothur: Open-Source, Platform-Independent, Community-Supported Software for Describing and Comparing Microbial Communities , 2009, Applied and Environmental Microbiology.
[57] Takashi Yamaguchi,et al. Methanofollis ethanolicus sp. nov., an ethanol-utilizing methanogen isolated from a lotus field. , 2009, International journal of systematic and evolutionary microbiology.
[58] Todd S Bridges,et al. Effects of dose and particle size on activated carbon treatment to sequester polychlorinated biphenyls and polycyclic aromatic hydrocarbons in marine sediments , 2005, Environmental toxicology and chemistry.
[59] S. Shima,et al. Coenzyme binding in F420-dependent secondary alcohol dehydrogenase, a member of the bacterial luciferase family. , 2004, Structure.