Different removal efficiency of disinfection-byproduct precursors between dichloroacetonitrile (DCAN) and dichloroacetamide (DCAcAm) by up-flow biological activated carbon (UBAC) process
暂无分享,去创建一个
[1] Princy Hira,et al. Sphingomonas , 2020, Bergey's Manual of Systematics of Archaea and Bacteria.
[2] Xiangru Zhang,et al. Current methods for analyzing drinking water disinfection byproducts , 2019, Current Opinion in Environmental Science & Health.
[3] Wei Chen,et al. Removal of disinfection byproduct precursors and reduction in additive toxicity of chlorinated and chloraminated waters by ozonation and up-flow biological activated carbon process. , 2019, Chemosphere.
[4] Wei Chen,et al. Removal of precursors of typical nitrogenous disinfection byproducts in ozonation integrated with biological activated carbon (O3/BAC). , 2018, Chemosphere.
[5] Xiangru Zhang,et al. A new approach to controlling halogenated DBPs by GAC adsorption of aromatic intermediates from chlorine disinfection: Effects of bromide and contact time , 2018, Separation and Purification Technology.
[6] Xiangru Zhang,et al. A smart strategy for controlling disinfection byproducts by reversing the sequence of activated carbon adsorption and chlorine disinfection. , 2018, Science bulletin.
[7] Cheng Hong-bin,et al. Leakage of soluble microbial products from biological activated carbon filtration in drinking water treatment plants and its influence on health risks. , 2018, Chemosphere.
[8] Chen-yan Hu,et al. Degradation of acrylamide during chlorination as a precursor of haloacetonitriles and haloacetamides. , 2018, The Science of the total environment.
[9] T. Bond,et al. Formation and estimated toxicity of trihalomethanes, haloacetonitriles, and haloacetamides from the chlor(am)ination of acetaminophen. , 2018, Journal of hazardous materials.
[10] Zijian Wang,et al. Tracking changes in composition and amount of dissolved organic matter throughout drinking water treatment plants by comprehensive two-dimensional gas chromatography-quadrupole mass spectrometry. , 2017, The Science of the total environment.
[11] Wei Chen,et al. Optimization of the precursor removal of dichloroacetonitrile (DCAN), an emerging nitrogenous disinfection by-product, in an up-flow BAC filter. , 2017, Chemosphere.
[12] J. Vreeburg,et al. An experimental study on the influence of water stagnation and temperature change on water quality in a full-scale domestic drinking water system. , 2017, Water research.
[13] Wei Chen,et al. The shadow of dichloroacetonitrile (DCAN), a typical nitrogenous disinfection by-product (N-DBP), in the waterworks and its backwash water reuse. , 2017, Chemosphere.
[14] W. Chu,et al. Control of aliphatic halogenated DBP precursors with multiple drinking water treatment processes: Formation potential and integrated toxicity. , 2017, Journal of environmental sciences.
[15] K. Linge,et al. Formation and control of nitrogenous DBPs from Western Australian source waters: Investigating the impacts of high nitrogen and bromide concentrations. , 2017, Journal of environmental sciences.
[16] A. Sorokin,et al. Comparative genomics of extrachromosomal elements in Bacillus thuringiensis subsp. israelensis. , 2017, Research in microbiology.
[17] T. Gollas‐Galván,et al. Bacterial biota of shrimp intestine is significantly modified by the use of a probiotic mixture: a high throughput sequencing approach , 2017, Helgoland Marine Research.
[18] Xiangru Zhang,et al. Removal of Intermediate Aromatic Halogenated DBPs by Activated Carbon Adsorption: A New Approach to Controlling Halogenated DBPs in Chlorinated Drinking Water. , 2017, Environmental science & technology.
[19] D. Reckhow,et al. Formation of Haloacetonitriles, Haloacetamides, and Nitrogenous Heterocyclic Byproducts by Chloramination of Phenolic Compounds. , 2017, Environmental science & technology.
[20] W. Chen,et al. Factors affecting the formation of nitrogenous disinfection by-products during chlorination of aspartic acid in drinking water. , 2017, The Science of the total environment.
[21] J. Keller,et al. Biodegradability of DBP precursors after drinking water ozonation. , 2016, Water research.
[22] Wei Chen,et al. Acute toxicity of dichloroacetonitrile (DCAN), a typical nitrogenous disinfection by-product (N-DBP), on zebrafish (Danio rerio). , 2016, Ecotoxicology and environmental safety.
[23] Dong Zhang,et al. Generation of soluble microbial products by bio-activated carbon filter during drinking water advanced treatment and its influence on spectral characteristics. , 2016, The Science of the total environment.
[24] Wei Chen,et al. The removal process of 2,2-dichloroacetamide (DCAcAm), a new disinfection by-product, in drinking water treatment process and its toxicity on zebrafish. , 2016, Chemosphere.
[25] Yan-ping Duan,et al. Precursors and factors affecting formation of haloacetonitriles and chloropicrin during chlor(am)ination of nitrogenous organic compounds in drinking water. , 2016, Journal of hazardous materials.
[26] Qian-Yuan Wu,et al. Formation of haloacetonitriles and haloacetamides and their precursors during chlorination of secondary effluents. , 2016, Chemosphere.
[27] J. Croué,et al. The role of aromatic precursors in the formation of haloacetamides by chloramination of dissolved organic matter. , 2016, Water research.
[28] Wei Chen,et al. The toxicity of a new disinfection by-product, 2,2-dichloroacetamide (DCAcAm), on adult zebrafish (Danio rerio) and its occurrence in the chlorinated drinking water. , 2015, Chemosphere.
[29] E. Yabuuchi,et al. Sphingomonadales ord. nov , 2015 .
[30] H. Tung,et al. Formation of trichloronitromethane and dichloroacetonitrile in natural waters: precursor characterization, kinetics and interpretation. , 2015, Journal of hazardous materials.
[31] M. R. Templeton,et al. Terminating pre-ozonation prior to biological activated carbon filtration results in increased formation of nitrogenous disinfection by-products upon subsequent chlorination. , 2015, Chemosphere.
[32] D. Stuckey,et al. Analytical methods for soluble microbial products (SMP) and extracellular polymers (ECP) in wastewater treatment systems: a review. , 2014, Water research.
[33] Zhong-hua Liu,et al. Hydrolysis of the neonicotinoid insecticide thiacloprid by the N2-fixing bacterium Ensifer meliloti CGMCC 7333 , 2014 .
[34] S. Krasner,et al. Formation and speciation of nine haloacetamides, an emerging class of nitrogenous DBPs, during chlorination or chloramination. , 2013, Journal of hazardous materials.
[35] Minglu Zhang,et al. Comparison of NOM removal and microbial properties in up-flow/down-flow BAC filter. , 2013, Water research.
[36] Chia-Yang Chen,et al. Characteristics of C-, N-DBPs formation from nitrogen-enriched dissolved organic matter in raw water and treated wastewater effluent. , 2013, Water research.
[37] Xiaobin Liao,et al. Changes of biomass and bacterial communities in biological activated carbon filters for drinking water treatment , 2013 .
[38] Minglu Zhang,et al. Molecular Analysis of Bacterial Communities in Biofilms of a Drinking Water Clearwell , 2012, Microbes and environments.
[39] Qian-Yuan Wu,et al. Dichloroacetonitrile and dichloroacetamide can form independently during chlorination and chloramination of drinking waters, model organic matters, and wastewater effluents. , 2012, Environmental science & technology.
[40] Xiao-jian Zhang,et al. Heterogeneity of microbial community structures inside the up-flow biological activated carbon (BAC) filters for the treatment of drinking water , 2012, Biotechnology and Bioprocess Engineering.
[41] Xin Yang,et al. Precursors and nitrogen origins of trichloronitromethane and dichloroacetonitrile during chlorination/chloramination. , 2012, Chemosphere.
[42] M. R. Templeton,et al. Ozone-biological activated carbon integrated treatment for removal of precursors of halogenated nitrogenous disinfection by-products. , 2012, Chemosphere.
[43] M. R. Templeton,et al. Formation of nitrogenous disinfection by-products from pre-chloramination. , 2011, Chemosphere.
[44] Hongwei Wu,et al. Kinetics and Mechanism of Glucose Decomposition in Hot-Compressed Water: Effect of Initial Glucose Concentration , 2011 .
[45] Khalil Amine,et al. Chemically active reduced graphene oxide with tunable C/O ratios. , 2011, ACS nano.
[46] Weiguang Li,et al. Bacterial community and function of biological activated carbon filter in drinking water treatment. , 2011, Biomedical and environmental sciences : BES.
[47] Yang Deng,et al. Precursors of dichloroacetamide, an emerging nitrogenous DBP formed during chlorination or chloramination. , 2010, Environmental science & technology.
[48] Yang Deng,et al. Formation of haloacetamides during chlorination of dissolved organic nitrogen aspartic acid. , 2010, Journal of hazardous materials.
[49] R. M. Niemi,et al. Previously uncultured beta-Proteobacteria dominate in biologically active granular activated carbon (BAC) filters. , 2009, Water research.
[50] P. Westerhoff,et al. Occurrence and removal of amino acids during drinking water treatment , 2009 .
[51] J. Froidefond,et al. Properties of fluorescent dissolved organic matter in the Gironde Estuary , 2009 .
[52] S. Richardson,et al. Occurrence, synthesis, and mammalian cell cytotoxicity and genotoxicity of haloacetamides: an emerging class of nitrogenous drinking water disinfection byproducts. , 2008, Environmental science & technology.
[53] Wontae Lee,et al. Dissolved organic nitrogen as a precursor for chloroform, dichloroacetonitrile, N-nitrosodimethylamine, and trichloronitromethane. , 2007, Environmental science & technology.
[54] Ying-xin Xie,et al. Assessment of Nitrogen Pollutant Sources in Surface Waters of Taihu Lake Region , 2007 .
[55] Yin-Tak Woo,et al. Haloacetonitriles vs. regulated haloacetic acids: are nitrogen-containing DBPs more toxic? , 2007, Environmental science & technology.
[56] S. Richardson,et al. Occurrence of a new generation of disinfection byproducts. , 2006, Environmental science & technology.
[57] K. Booksh,et al. Fluorescence excitation-emission matrix regional integration to quantify spectra for dissolved organic matter. , 2003, Environmental science & technology.
[58] David A. Reckhow,et al. Formation and degradation of dichloroacetonitrile in drinking waters , 2001 .
[59] O. Lev,et al. Hydrolysis of haloacetonitriles: LINEAR FREE ENERGY RELATIONSHIP, kinetics and products , 1999 .
[60] Y. H. Kim,et al. Effects of dissolved humic materials on acute toxicity of some organic chemicals to aquatic organisms , 1993 .