Polycyclic aromatic hydrocarbons extraction and removal from wastewater by carbon nanotubes: A review of the current technologies, challenges and prospects
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[1] K. Narasimhulu,et al. Recent advances in the bio-remediation of persistent organic pollutants and its effect on environment , 2018, Journal of Cleaner Production.
[2] Lalit N. Goswami,et al. Biological treatment of wastewater containing a mixture of polycyclic aromatic hydrocarbons using the oleaginous bacterium Rhodococcus opacus , 2018, Journal of Cleaner Production.
[3] O. Pinyakong,et al. 16S metagenomic analysis reveals adaptability of a mixed-PAH-degrading consortium isolated from crude oil-contaminated seawater to changing environmental conditions. , 2018, Journal of hazardous materials.
[4] Avelino Núñez-Delgado,et al. Polycyclic aromatic hydrocarbons concentrations in a waste from fuel oil spill and its mixture with other materials: Time-course evolution , 2018 .
[5] Tawfik A. Saleh,et al. Simultaneous adsorptive desulfurization of diesel fuel over bimetallic nanoparticles loaded on activated carbon , 2018 .
[6] M. Hadjmohammadi,et al. Optimization of multiwalled carbon nanotubes reinforced hollow-fiber solid-liquid-phase microextraction for the determination of polycyclic aromatic hydrocarbons in environmental water samples using experimental design. , 2017, Journal of separation science.
[7] M. Smol,et al. The Effectiveness in the Removal of PAHs from Aqueous Solutions in Physical and Chemical Processes: A Review , 2017 .
[8] Jared L. Anderson,et al. Headspace single drop microextraction versus dispersive liquid-liquid microextraction using magnetic ionic liquid extraction solvents. , 2017, Talanta.
[9] Octavio Suárez-Iglesias,et al. Graphene-family nanomaterials in wastewater treatment plants , 2017 .
[10] Jing Li,et al. A novel forward osmosis system in landfill leachate treatment for removing polycyclic aromatic hydrocarbons and for direct fertigation. , 2017, Chemosphere.
[11] F. Jaber,et al. Determination of Polycyclic Aromatic Hydrocarbons (PAH4) in the Traditional Lebanese Grilled Chicken: Implementation of New, Rapid and Economic Analysis Method , 2017, Food Analytical Methods.
[12] M. C. Prieto-Blanco,et al. A novel and cost-effective method for the determination of fifteen polycyclic aromatic hydrocarbons in low volume rainwater samples. , 2016, Talanta.
[13] Heechul Choi,et al. Thin-film nanocomposite membrane with vertically embedded carbon nanotube for forward osmosis , 2016 .
[14] M. Canle,et al. Solid-phase extraction of organic compounds: A critical review. part ii , 2016 .
[15] T. Saleh. Nanocomposite of carbon nanotubes/silica nanoparticles and their use for adsorption of Pb(II): from surface properties to sorption mechanism , 2016 .
[16] T. Saleh. Mercury sorption by silica/carbon nanotubes and silica/activated carbon: a comparison study , 2015 .
[17] M. Shafiq,et al. Fabrication of tethered carbon nanotubes in cellulose acetate/polyethylene glycol-400 composite membranes for reverse osmosis. , 2015, Carbohydrate polymers.
[18] M. Fisichella,et al. High-throughput dispersive liquid/liquid microextraction (DLLME) method for the rapid determination of drugs of abuse, benzodiazepines and other psychotropic medications in blood samples by liquid chromatography–tandem mass spectrometry (LC-MS/MS) and application to forensic cases , 2015 .
[19] M. Terrones,et al. High-performance multi-functional reverse osmosis membranes obtained by carbon nanotube·polyamide nanocomposite , 2015, Scientific Reports.
[21] M. Behzadi,et al. Modified carbon nanotubes as a sorbent for solid-phase extraction of gold, and its determination by graphite furnace atomic absorption spectrometry , 2015, Microchimica Acta.
[22] T. Saleh. Isotherm, kinetic, and thermodynamic studies on Hg(II) adsorption from aqueous solution by silica- multiwall carbon nanotubes , 2015, Environmental Science and Pollution Research.
[23] R. Nabizadeh,et al. Ultrafiltration of natural organic matter from water by vertically aligned carbon nanotube membrane , 2015, Journal of Environmental Health Science and Engineering.
[24] V. Cerdà,et al. Determination of polycyclic aromatic hydrocarbons using lab on valve dispersive liquid-liquid microextraction coupled to high performance chromatography. , 2015, Talanta.
[25] B. Liu,et al. Carbon nanotube catalysts: recent advances in synthesis, characterization and applications. , 2015, Chemical Society reviews.
[26] I. Lavilla,et al. Nanoparticle-enhanced liquid-phase microextraction , 2015 .
[27] Chao Gao,et al. High-flux graphene oxide nanofiltration membrane intercalated by carbon nanotubes. , 2015, ACS applied materials & interfaces.
[28] A. Mohammad,et al. Nanofiltration membranes review: Recent advances and future prospects , 2015 .
[29] Modification of ultrafiltration membranes with carbon nanotube buckypaper for fouling alleviation , 2015 .
[30] Zhiqiang Zhou,et al. Hydrophilic-lipophilic balanced magnetic nanoparticles: preparation and application in magnetic solid-phase extraction of organochlorine pesticides and triazine herbicides in environmental water samples. , 2014, Talanta.
[31] Jolanta Bohdziewicz,et al. Comparison of the retention of selected PAHs from municipal landfill leachate by RO and UF processes , 2014 .
[32] H. Prosen. Applications of Liquid-Phase Microextraction in the Sample Preparation of Environmental Solid Samples , 2014, Molecules.
[33] A. Rubio-Clemente,et al. Removal of polycyclic aromatic hydrocarbons in aqueous environment by chemical treatments: a review. , 2014, The Science of the total environment.
[34] Seeram Ramakrishna,et al. Carbon nanotube membranes for water purification: A bright future in water desalination , 2014 .
[35] C. Pin,et al. 15.8 – Separation Methods Based on Liquid–Liquid Extraction, Extraction Chromatography, and Other Miscellaneous Solid Phase Extraction Processes , 2014 .
[36] A. Molina-Díaz,et al. Comparative evaluation of liquid-liquid extraction, solid-phase extraction and solid-phase microextraction for the gas chromatography-mass spectrometry determination of multiclass priority organic contaminants in wastewater. , 2013, Talanta.
[37] Micah J. Green,et al. Mobility of polyaromatic hydrocarbons (PAHs) in soil in the presence of carbon nanotubes. , 2013, Ecotoxicology and environmental safety.
[38] L. N. Ukiwe,et al. Polycyclic Aromatic Hydrocarbons Degradation Techniques: A Review , 2013 .
[39] Hui-Yi Lin,et al. Determination of Diuretics in Urine Using Immobilized Multi‐Walled Carbon Nanotubes in Hollow Fiber Liquid‐Phase Microextraction Combined with Liquid Chromatography‐Tandem Mass Spectrometry , 2013 .
[40] Chun Wang,et al. Magnetic microsphere-confined graphene for the extraction of polycyclic aromatic hydrocarbons from environmental water samples coupled with high performance liquid chromatography-fluorescence analysis. , 2013, Journal of chromatography. A.
[41] S. Vigneswaran,et al. Nanofiltration for water and wastewater treatment – a mini review , 2013 .
[42] Jiaqi Huang,et al. The road for nanomaterials industry: a review of carbon nanotube production, post-treatment, and bulk applications for composites and energy storage. , 2013, Small.
[43] I. Limam,et al. Off-line solid-phase extraction procedure for the determination of polycyclic aromatic hydrocarbons from aqueous matrices , 2013, International Journal of Environmental Science and Technology.
[44] M. Gong,et al. Quantitative analysis of polycyclic aromatic hydrocarbons in solid residues from supercritical water gasification of wet sewage sludge , 2013 .
[45] Ligang Chen,et al. Preparation of magnetic carbon nanotubes for separation of pyrethroids from tea samples , 2013, Microchimica Acta.
[46] N. Cabaleiro,et al. Current trends in liquid–liquid and solid–liquid extraction for cosmetic analysis: a review , 2013 .
[47] Lingxin Chen,et al. Determination of 16 polycyclic aromatic hydrocarbons in seawater using molecularly imprinted solid-phase extraction coupled with gas chromatography-mass spectrometry. , 2012, Talanta.
[48] Yan-ping Shi,et al. Determination of diethylstilbestrol in milk using carbon nanotube-reinforced hollow fiber solid-phase microextraction combined with high-performance liquid chromatography. , 2012, Talanta.
[49] Antonio V. Herrera-Herrera,et al. Carbon nanotubes applications in separation science: a review. , 2012, Analytica chimica acta.
[50] Linda Zou,et al. Recent developments in forward osmosis : opportunities and challenges. , 2012 .
[51] Zhenhua Wu,et al. Removal of polycyclic aromatic hydrocarbons and phenols from coking wastewater by simultaneously synthesized organobentonite in a one-step process. , 2012, Journal of environmental sciences.
[52] T. Saleh,et al. Column with CNT/magnesium oxide composite for lead(II) removal from water , 2012, Environmental Science and Pollution Research.
[53] Vera Homem,et al. Degradation and removal methods of antibiotics from aqueous matrices--a review. , 2011, Journal of environmental management.
[54] Qiang Zhang,et al. Carbon nanotube mass production: principles and processes. , 2011, ChemSusChem.
[55] T. Hofmann,et al. Measuring and modeling adsorption of PAHs to carbon nanotubes over a six order of magnitude wide concentration range. , 2011, Environmental science & technology.
[56] T. Saleh. The influence of treatment temperature on the acidity of MWCNT oxidized by HNO3 or a mixture of HNO3/H2SO4 , 2011 .
[57] Masaaki Nagatsu,et al. Carbon nanotubes as adsorbents in environmental pollution management: A review , 2011 .
[58] Y. Yamini,et al. Hollow fiber liquid phase microextraction as a preconcentration and clean-up step after pressurized hot water extraction for the determination of non-steroidal anti-inflammatory drugs in sewage sludge. , 2011, Journal of chromatography. A.
[59] Juana Maria Delgado-Saborit,et al. Carcinogenic potential, levels and sources of polycyclic aromatic hydrocarbon mixtures in indoor and outdoor environments and their implications for air quality standards. , 2011, Environment international.
[60] J. Crespo,et al. Removal of pesticides and polycyclic aromatic hydrocarbons from different drinking water sources by nanofiltration , 2011 .
[61] Jinhua Li,et al. Determination of 16 polycyclic aromatic hydrocarbons in environmental water samples by solid-phase extraction using multi-walled carbon nanotubes as adsorbent coupled with gas chromatography-mass spectrometry. , 2010, Journal of chromatography. A.
[62] Soon Huat Tan,et al. A review on carbon nanotubes in an environmental protection and green engineering perspective , 2010 .
[63] Ying Teng,et al. Effect of bioaugmentation by Paracoccus sp. strain HPD-2 on the soil microbial community and removal of polycyclic aromatic hydrocarbons from an aged contaminated soil. , 2010, Bioresource technology.
[64] Hian Kee Lee,et al. Dispersive liquid-liquid microextraction coupled with dispersive micro-solid-phase extraction for the fast determination of polycyclic aromatic hydrocarbons in environmental water samples. , 2010, Analytical chemistry.
[65] Z. Zeng,et al. Solid-phase microextraction using a diglycidyloxycalix[4]arene coated fiber combined with gas chromatography: very simple, rapid and sensitive method for the determination of chlorobenzenes in water , 2010 .
[66] Amirhassan Amiri,et al. Liquid-phase microextraction , 2010 .
[67] C. Liao,et al. Assessing hazardous risks of human exposure to temple airborne polycyclic aromatic hydrocarbons. , 2009, Journal of hazardous materials.
[68] S. Dadfarnia,et al. Solidified floating organic drop microextraction (SFODME) for simultaneous separation/preconcentration and determination of cobalt and nickel by graphite furnace atomic absorption spectrometry (GFAAS). , 2009, Journal of hazardous materials.
[69] B. Xing,et al. Adsorption mechanisms of organic chemicals on carbon nanotubes. , 2008, Environmental science & technology.
[70] Bin Hu,et al. Ionic liquids based single drop microextraction combined with electrothermal vaporization inductively coupled plasma mass spectrometry for determination of Co, Hg and Pb in biological and environmental samples , 2008 .
[71] N. Kalogerakis,et al. Hollow-fibre liquid-phase microextraction: a simple and fast cleanup step used for PAHs determination in pine needles. , 2008, Analytica chimica acta.
[72] C. Feng,et al. Adsorption and desorption of atrazine on carbon nanotubes. , 2008, Journal of colloid and interface science.
[73] S. Pedersen‐Bjergaard,et al. Liquid-phase microextraction with porous hollow fibers, a miniaturized and highly flexible format for liquid-liquid extraction. , 2008, Journal of chromatography. A.
[74] Bin Hu,et al. Headspace single drop microextraction combined with HPLC for the determination of trace polycyclic aromatic hydrocarbons in environmental samples. , 2008, Talanta.
[75] Jia Cao,et al. Multiwalled carbon nanotubes as adsorbents of solid-phase extraction for determination of polycyclic aromatic hydrocarbons in environmental waters coupled with high-performance liquid chromatography. , 2007, Journal of chromatography. A.
[76] Cheol-Min Yang,et al. Adsorption of polyaromatic hydrocarbons on single wall carbon nanotubes of different functionalities and diameters. , 2007, Journal of colloid and interface science.
[77] Jie Liu,et al. Synthesis of uniform double-walled carbon nanotubes using iron disilicide as catalyst. , 2007, Nano letters.
[78] Haifang Li,et al. Solid-phase extraction with C30 bonded silica for analysis of polycyclic aromatic hydrocarbons in airborne particulate matters by gas chromatography-mass spectrometry. , 2007, Journal of chromatography. A.
[79] A. Balinova,et al. Solid-phase extraction on sorbents of different retention mechanisms followed by determination by gas chromatography-mass spectrometric and gas chromatography-electron capture detection of pesticide residues in crops. , 2007, Journal of chromatography. A.
[80] Wei Guo,et al. Distribution of polycyclic aromatic hydrocarbons in water, suspended particulate matter and sediment from Daliao River watershed, China. , 2007, Chemosphere.
[81] Yadollah Yamini,et al. A new liquid-phase microextraction method based on solidification of floating organic drop. , 2007, Analytica chimica acta.
[82] H. Kanoh,et al. Effect of nanoscale curvature of single-walled carbon nanotubes on adsorption of polycyclic aromatic hydrocarbons. , 2007, Nano letters.
[83] W. Stark,et al. The degree and kind of agglomeration affect carbon nanotube cytotoxicity. , 2007, Toxicology letters.
[84] Helen H. Lou,et al. Conceptual design of carbon nanotube processes , 2007 .
[85] Kun Yang,et al. Desorption of polycyclic aromatic hydrocarbons from carbon nanomaterials in water. , 2007, Environmental pollution.
[86] I-Fan Chang,et al. Support vector regression for real-time flood stage forecasting , 2006 .
[87] Walid Elshorbagy,et al. Characterization and assessment of Al Ruwais refinery wastewater. , 2006, Journal of hazardous materials.
[88] Alexander M Puziy,et al. Polymer-Based Carbon Adsorbents Obtained from Copolymer of 4,4'-Bis(maleimidodiphenyl)methane and Divinylbenzene for Use in SPE , 2006 .
[89] M. Prato,et al. Functionalized carbon nanotubes are non-cytotoxic and preserve the functionality of primary immune cells. , 2006, Nano letters.
[90] M. Rezaee,et al. Determination of organic compounds in water using dispersive liquid-liquid microextraction. , 2006, Journal of chromatography. A.
[91] B. Spivakov,et al. Solid-Phase Extraction on Alkyl-bonded Silica Gels in Inorganic Analysis , 2006, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[92] H. Byrne,et al. In-depth study into the interaction of single walled carbon nanotubes with anthracene and p-terphenyl. , 2006, The journal of physical chemistry. B.
[93] F. Busetti,et al. Determination of sixteen polycyclic aromatic hydrocarbons in aqueous and solid samples from an Italian wastewater treatment plant. , 2006, Journal of chromatography. A.
[94] C. Basheer,et al. Dynamic hollow fiber-supported headspace liquid-phase microextraction. , 2005, Journal of chromatography. A.
[95] S. Snyder,et al. Removal of 17β estradiol and fluoranthene by nanofiltration and ultrafiltration , 2004 .
[96] Guibin Jiang,et al. Multiwalled carbon nanotubes as a solid-phase extraction adsorbent for the determination of bisphenol A, 4-n-nonylphenol, and 4-tert-octylphenol. , 2003, Analytical chemistry.
[97] S. Pedersen‐Bjergaard,et al. Development of a simple in-vial liquid-phase microextraction device for drug analysis compatible with capillary gas chromatography, capillary electrophoresis and high-performance liquid chromatography. , 2000, Journal of chromatography. A.
[98] I. Safarik,et al. Magnetic solid-phase extraction , 1999 .
[99] I. Ivanov,et al. Invited Review A Compilation of Physical, Spectroscopic and Photophysical Properties of Polycyclic Aromatic Hydrocarbons , 1999 .
[100] Awwa,et al. Standard Methods for the examination of water and wastewater , 1999 .
[101] R. Harvey. Environmental Chemistry of PAHs , 1998 .
[102] S. Hawthorne,et al. Solid-phase microextraction of PAHs from aqueous samples using fibers coated with HPLC chemically bonded silica stationary phases , 1997 .
[103] A. Wolfe,et al. Benzo[a]pyrene diol epoxide-DNA cis adduct formation through a trans chlorohydrin intermediate. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[104] H. Hayatsu. Cellulose bearing covalently linked copper phthalocyanine trisulphonate as an adsorbent selective for polycyclic compounds and its use in studies of environmental mutagens and carcinogens. , 1992, Journal of chromatography.
[105] S. Bingham,et al. Modulating effects in human diets of dietary fibre and beef, and of time and dose on the reactive microcapsule trapping of benzo[a]pyrene metabolites in the rat gastrointestinal tract. , 1990, Carcinogenesis.
[106] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[107] G. Grimmer,et al. Experimental studies in rat lungs on the carcinogenicity and dose-response relationships of eight frequently occurring environmental polycyclic aromatic hydrocarbons. , 1983, Journal of the National Cancer Institute.