[1] |
WHO. International Agency for Research on Cancer, IARC monographs on the evaluation of the carcinogenic risk of chemicals to humans: Some N-nitroso compounds[R]. Lyon, France: WHO IARC, 1978: Volume 17.
|
[2] |
LIVIAC D, CREUS A, MARCOS R. Genotoxic evaluation of the non-halogenated disinfection by-products nitrosodimethylamine and nitrosodiethylamine[J]. Journal of Hazardous Materials, 2011, 185(2/3): 613-618.
|
[3] |
U. S. EPA IRIS. Chemical Assessment Summary[R]. U. S. EPA IRIS, 2012.
|
[4] |
U. S. EPA IRIS. A-Z List of Substances[R]. U. S. EPA IRIS, 2015.
|
[5] |
WHO. International agency for research on cancer, iarc monographs on the evaluation of carcinogenic risks to human: Agents classified by the IARC monographs[R]. WHO IARC, 2014: Volumes 1-111.
|
[6] |
QIAN Y C, WU M H, WANG W, et al. Determination of 14 nitrosamines at nanogram per liter levels in drinking water[J]. Analytical Chemistry, 2015, 87(2): 1330-1336. doi: 10.1021/ac504104k
|
[7] |
李婷, 鲜啟鸣, 孙成, 等. 水中N-亚硝胺类消毒副产物的污染现状及分析技术[J]. 环境化学, 2012, 31(11): 1767-1774.
LI T, XIAN Q M, SUN C, et al. The level and analysis of N-nitrosamines in waters[J]. Environmental Chemistry, 2012, 31(11): 1767-1774 (in Chinese).
|
[8] |
MCCURRY D L, KRASNER S W, VON GUNTEN U, et al. Determinants of disinfectant pretreatment efficacy for nitrosamine control in chloraminated drinking water[J]. Water Research, 2015, 84: 161-170. doi: 10.1016/j.watres.2015.07.024
|
[9] |
WANG W F, REN S Y, ZHANG H F, et al. Occurrence of nine nitrosamines and secondary amines in source water and drinking water: Potential of secondary amines as nitrosamine precursors[J]. Water Research, 2011, 45(16): 4930-4938. doi: 10.1016/j.watres.2011.06.041
|
[10] |
WANG W F, GUO Y L, YANG Q X, et al. Characterization of the microbial community structure and nitrosamine-reducing isolates in drinking water biofilters[J]. Science of the Total Environment, 2015, 521/522: 219-225. doi: 10.1016/j.scitotenv.2015.03.133
|
[11] |
WANG W F, HU J Y, YU J W, et al. Determination of N-nitrosodimethylamine in drinking water by UPLC-MS/MS[J]. Journal of Environmental Sciences, 2010, 22(10): 1508-1512. doi: 10.1016/S1001-0742(09)60281-3
|
[12] |
KRAUSS M, LONGRÉE P, DORUSCH F, et al. Occurrence and removal of N-nitrosamines in wastewater treatment plants[J]. Water Research, 2009, 43(17): 4381-4391. doi: 10.1016/j.watres.2009.06.048
|
[13] |
HECHT S S. Approaches to cancer prevention based on an understanding of N-nitrosamine carcinogenesis[J]. Proceedings of the Society for Experimental Biology and Medicine, 1997, 216(2): 181-191. doi: 10.3181/00379727-216-44168
|
[14] |
WATSON K, SHAW G, LEUSCH F D L, et al. Chlorine disinfection by-products in wastewater effluent: Bioassay-based assessment of toxicological impact[J]. Water Research, 2012, 46(18): 6069-6083. doi: 10.1016/j.watres.2012.08.026
|
[15] |
RICHARDSON S D, PLEWA M J, WAGNER E D, et al. Occurrence, genotoxicity, and carcinogenicity of regulated and emerging disinfection by-products in drinking water: A review and roadmap for research[J]. Mutation Research/Reviews in Mutation Research, 2007, 636(1/2/3): 178-242.
|
[16] |
BEI E, SHU Y Y, LI S X, et al. Occurrence of nitrosamines and their precursors in drinking water systems around mainland China[J]. Water Research, 2016, 98: 168-175. doi: 10.1016/j.watres.2016.04.013
|
[17] |
BARRETT S, HWANG C, CARRIE GUO Y, et al. Occurrence of NDMA in drinking water: a North American survey, 2001-2002[C]. 2003 AWWA Annual Conference. Denver: 2003.
|
[18] |
CHARROIS J W A, BOYD J M, FROESE K L, et al. Occurrence of N-nitrosamines in Alberta public drinking-water distribution systems[J]. Journal of Environmental Engineering and Science, 2007, 6(1): 103-114. doi: 10.1139/s06-031
|
[19] |
DE CAROLI VIZIOLI B, HANTAO L W, MONTAGNER C C. Drinking water nitrosamines in a large metropolitan region in Brazil[J]. Environmental Science and Pollution Research, 2021, 28(25): 32823-32830. doi: 10.1007/s11356-021-12998-4
|
[20] |
POZZI R, BOCCHINI P, PINELLI F, et al. Determination of nitrosamines in water by gas chromatography/chemical ionization/selective ion trapping mass spectrometry[J]. Journal of Chromatography A, 2011, 1218(14): 1808-1814. doi: 10.1016/j.chroma.2011.02.009
|
[21] |
TEMPLETON M R, CHEN Z. NDMA and seven other nitrosamines in selected UK drinking water supply systems[J]. Journal of Water Supply:Research and Technology-Aqua, 2010, 59(4): 277-283. doi: 10.2166/aqua.2010.077
|
[22] |
JURADO SÁNCHEZ B, BALLESTEROS E, GALLEGO M. Occurrence of aromatic amines and N-nitrosamines in the different steps of a drinking water treatment plant[J]. Water Research, 2012, 46(14): 4543-4555. doi: 10.1016/j.watres.2012.05.039
|
[23] |
ASAMI M, OYA M, KOSAKA K. A nationwide survey of NDMA in raw and drinking water in Japan[J]. Science of the Total Environment, 2009, 407(11): 3540-3545. doi: 10.1016/j.scitotenv.2009.02.014
|
[24] |
HASHEMI S, PARK J H, YANG M, et al. Long-term monitoring and risk assessment of N-nitrosamines in the finished water of drinking water treatment plants in South Korea[J]. Environmental Science and Pollution Research, 2022, 29(3): 3930-3943. doi: 10.1007/s11356-021-15814-1
|
[25] |
CHEN Z Y, YANG L, HUANG Y, et al. Carcinogenic risk of N-nitrosamines in Shanghai drinking water: Indications for the use of ozone pretreatment[J]. Environmental Science & Technology, 2019, 53(12): 7007-7018.
|
[26] |
ZHAO C, LU Q, GU Y, et al. Distribution of N-nitrosamines in drinking water and human urinary excretions in high incidence area of esophageal cancer in Huai'an, China[J]. Chemosphere, 2019, 235: 288-296. doi: 10.1016/j.chemosphere.2019.06.124
|
[27] |
MAQBOOL T, ZHANG J X, LI Q Y, et al. Occurrence and fate of N-nitrosamines in three full-scale drinking water treatment systems with different treatment trains[J]. Science of the Total Environment, 2021, 783: 146982. doi: 10.1016/j.scitotenv.2021.146982
|
[28] |
FAN C C, LIN T F. N-nitrosamines in drinking water and beer: Detection and risk assessment[J]. Chemosphere, 2018, 200: 48-56. doi: 10.1016/j.chemosphere.2018.02.025
|
[29] |
LUO Q, BEI E, LIU C, et al. Spatial, temporal variability and carcinogenic health risk assessment of nitrosamines in a drinking water system in China[J]. Science of the Total Environment, 2020, 736: 139695. doi: 10.1016/j.scitotenv.2020.139695
|
[30] |
赵仑山, 岑况, 刘秀丽, 等. 珠江三角洲含N-亚硝胺地下水与地区性癌症[J]. 地学前缘, 2019, 26(2): 335-349. doi: 10.13745/j.esf.sf.2019.1.19
ZHAO L S, CEN K, LIU X L, et al. N-nitrosamine containing underground waters and regional cancer incidence in the Pearl River Delta region[J]. Earth Science Frontiers, 2019, 26(2): 335-349 (in Chinese). doi: 10.13745/j.esf.sf.2019.1.19
|
[31] |
WHO. N-nitrosodimethylamine in drinking-water: background document for development of WHO guidelines for drinking-water quality[R]. Geneva: WHO, 2008.
|
[32] |
KADMI Y, FAVIER L, WOLBERT D. N-nitrosamines, emerging disinfection by-products of health concern: An overview of occurrence, mechanisms of formation, control and analysis in water[J]. Water Supply, 2015, 15(1): 11-25. doi: 10.2166/ws.2014.095
|
[33] |
JURADO-SÁNCHEZ B, BALLESTEROS E, GALLEGO M. Screening of N-nitrosamines in tap and swimming pool waters using fast gas chromatography[J]. Journal of Separation Science, 2010, 33(4/5): 610-616.
|
[34] |
HEALTH CANADA. N-nitrosodimethylamine NDMA in drinking water[R]. Ottawa, Ontario, Canada: Federal Provincial Territorial Committee on Drinking Water, Health Canada, 2010.
|
[35] |
ONTARIO MINISTRY OF THE ENVIRONMENT. Technical Support Document for Ontario Drinking Water Standards, Objectives And Guidelines[R]. Ontario, Canada: Ontario Ministry of the Environment, 2003.
|
[36] |
CALIFORNIA DEPARTMENT OF PUBLIC HEALTH. Public Health Goal for N-nitrosodimethylamine in Drinking Water[R]. California, U S: California Department of Public Health, 2006.
|
[37] |
LI X, BEI E, QIU Y, et al. Intake of volatile nitrosamines by Chinese residents in different provinces via food and drinking water[J]. Science of the Total Environment, 2021, 754: 142121. doi: 10.1016/j.scitotenv.2020.142121
|
[38] |
CHEN Y J, CHEN W W, HUANG H F, et al. Occurrence of N-nitrosamines and their precursors in the middle and lower reaches of Yangtze River water[J]. Environmental Research, 2021, 195: 110673. doi: 10.1016/j.envres.2020.110673
|
[39] |
ZHOU Q L, McCRAVEN S, GARCIA J, et al. Field evidence of biodegradation of N-nitrosodimethylamine (NDMA) in groundwater with incidental and active recycled water recharge[J]. Water Research, 2009, 43(3): 793-805. doi: 10.1016/j.watres.2008.11.011
|
[40] |
PRESCOTT M, KRASNER S W, GUO Y C. Estimation of NDMA precursor loading in source water via artificial sweetener monitoring[J]. Journal - American Water Works Association, 2017, 109: E243-E251.
|
[41] |
SCHREIBER I M, MITCH W A. Occurrence and fate of nitrosamines and nitrosamine precursors in wastewater-impacted surface waters using boron as a conservative tracer[J]. Environmental Science & Technology, 2006, 40(10): 3203-3210.
|
[42] |
WANG X Z, LIU Z M, WANG C, et al. Occurrence and formation potential of nitrosamines in river water and ground water along the Songhua River, China[J]. Journal of Environmental Sciences, 2016, 50: 65-71. doi: 10.1016/j.jes.2016.05.021
|
[43] |
VAN HUY N, MURAKAMI M, SAKAI H, et al. Occurrence and formation potential of N-nitrosodimethylamine in ground water and river water in Tokyo[J]. Water Research, 2011, 45(11): 3369-3377. doi: 10.1016/j.watres.2011.03.053
|
[44] |
KIM G A, SON H J, KIM C W, et al. Nitrosamine occurrence at Korean surface water using an analytical method based on GC/LRMS[J]. Environmental Monitoring and Assessment, 2013, 185(2): 1657-1669. doi: 10.1007/s10661-012-2658-1
|
[45] |
LEE J H, OH J E. A comprehensive survey on the occurrence and fate of nitrosamines in sewage treatment plants and water environment[J]. Science of the Total Environment, 2016, 556: 330-337. doi: 10.1016/j.scitotenv.2016.02.090
|
[46] |
DHS. California Department of Health Services; NDMA in California Drinking Water[R]. California U S: DHS, 2002.
|
[47] |
MA F J, WAN Y, YUAN G X, et al. Occurrence and source of nitrosamines and secondary amines in groundwater and its adjacent Jialu River Basin, China[J]. Environmental Science & Technology, 2012, 46(6): 3236-3243.
|
[48] |
CHEN W W, CHEN Y J, HUANG H F, et al. Occurrence of N-nitrosamines in the Pearl River Delta of China: Characterization and evaluation of different sources[J]. Water Research, 2019, 164: 114896. doi: 10.1016/j.watres.2019.114896
|
[49] |
WANG C K, LIU S M, WANG J, et al. Monthly survey of N-nitrosamine yield in a conventional water treatment plant in North China[J]. Journal of Environmental Sciences, 2015, 38: 142-149. doi: 10.1016/j.jes.2015.05.025
|
[50] |
CHEN W H, WANG C Y, HUANG T H. Formation and fates of nitrosamines and their formation potentials from a surface water source to drinking water treatment plants in Southern Taiwan[J]. Chemosphere, 2016, 161: 546-554. doi: 10.1016/j.chemosphere.2016.07.027
|
[51] |
YOON W H, LEE J H, LEE H J, et al. Investigation of N-nitrosamines using GC-MS/MS in Han-river water supply systems[J]. Journal of Korean Society on Water Environment, 2016, 32(5): 410-418. doi: 10.15681/KSWE.2016.32.5.410
|
[52] |
MITCH W A, SHARP J O, TRUSSELL R R, et al. N-nitrosodimethylamine (NDMA) as a drinking water contaminant: A review[J]. Environmental Engineering Science, 2003, 20(5): 389-404. doi: 10.1089/109287503768335896
|
[53] |
KRASNER S W, WESTERHOFF P, CHEN B Y, et al. Occurrence of disinfection byproducts in United States wastewater treatment plant effluents[J]. Environmental Science & Technology, 2009, 43(21): 8320-8325.
|
[54] |
SEDLAK D L, DEEB R A, HAWLEY E L, et al. Sources and fate of nitrosodimethylamine and its precursors in municipal wastewater treatment plants[J]. Water Environment Research:a Research Publication of the Water Environment Federation, 2005, 77(1): 32-39. doi: 10.2175/106143005X41591
|
[55] |
ZENG T, MITCH W A. Contribution of N-nitrosamines and their precursors to domestic sewage by greywaters and blackwaters[J]. Environmental Science & Technology, 2015, 49(22): 13158-13167.
|
[56] |
DISTRICT O C S. Sources of nitrosodimethylamine in the Orange County Sanitation District Service Area[J]. Report. Source Control Division, Orange County Sanitation District, California, 2002.
|
[57] |
AYDIN E, YAMAN F B, ATES GENCELI E, et al. Occurrence of THM and NDMA precursors in a watershed: Effect of seasons and anthropogenic pollution[J]. Journal of Hazardous Materials, 2012, 221/222: 86-91. doi: 10.1016/j.jhazmat.2012.04.012
|
[58] |
FARRÉ M J, JAÉN-GIL A, HAWKES J, et al. Orbitrap molecular fingerprint of dissolved organic matter in natural waters and its relationship with NDMA formation potential[J]. The Science of the Total Environment, 2019, 670: 1019-1027. doi: 10.1016/j.scitotenv.2019.03.280
|
[59] |
ANDRZEJEWSKI P, KASPRZYK-HORDERN B, NAWROCKI J. N-nitrosodimethylamine (NDMA) formation during ozonation of dimethylamine-containing waters[J]. Water Research, 2008, 42(4/5): 863-870.
|
[60] |
LEE C H, YOON J. UV-a induced photochemical formation of N-nitrosodimethylamine (NDMA) in the presence of nitrite and dimethylamine[J]. Journal of Photochemistry and Photobiology A:Chemistry, 2007, 189(1): 128-134. doi: 10.1016/j.jphotochem.2007.01.022
|
[61] |
MIKHAYLENKO V M, SHEVCHENKO T F, GLAVIN A A. Influence of N-nitrosamines on the development of phytoplankton[J]. Hydrobiological Journal, 2002, 38(3): 9.
|
[62] |
CHOI J, VALENTINE R L. N-nitrosodimethylamine formation by free-chlorine-enhanced nitrosation of dimethylamine[J]. Environmental Science & Technology, 2003, 37(21): 4871-4876.
|
[63] |
MOISEENKO T I. Evolution of biogeochemical cycles under anthropogenic loads: Limits impacts[J]. Geochemistry International, 2017, 55(10): 841-860. doi: 10.1134/S0016702917100081
|
[64] |
CHOI J, VALENTINE R L. Formation of N-nitrosodimethylamine (NDMA) from reaction of monochloramine: A new disinfection by-product[J]. Water Research, 2002, 36(4): 817-824. doi: 10.1016/S0043-1354(01)00303-7
|
[65] |
MITCH W A, GERECKE A C, SEDLAK D L. A N-nitrosodimethylamine (NDMA) precursor analysis for chlorination of water and wastewater[J]. Water Research, 2003, 37(15): 3733-3741. doi: 10.1016/S0043-1354(03)00289-6
|
[66] |
DAI N, MITCH W A. Relative importance of N-nitrosodimethylamine compared to total N-nitrosamines in drinking waters[J]. Environmental Science & Technology, 2013, 47(8): 3648-3656.
|
[67] |
KRISTIANA I, LIEW D, HENDERSON R K, et al. Formation and control of nitrogenous DBPs from Western Australian source waters: Investigating the impacts of high nitrogen and bromide concentrations[J]. Journal of Environmental Sciences, 2017, 58: 102-115. doi: 10.1016/j.jes.2017.06.028
|
[68] |
KITIS M, KILDUFF J E, KARANFIL T. Isolation of dissolved organic matter (DOM) from surface waters using reverse osmosis and its impact on the reactivity of DOM to formation and speciation of disinfection by-products[J]. Water Research, 2001, 35(9): 2225-2234. doi: 10.1016/S0043-1354(00)00509-1
|
[69] |
IKE I A, KARANFIL T, CHO J, et al. Oxidation byproducts from the degradation of dissolved organic matter by advanced oxidation processes–A critical review[J]. Water Research, 2019, 164: 114929. doi: 10.1016/j.watres.2019.114929
|
[70] |
GAN W H, HUANG S R, GE Y X, et al. Chlorite formation during ClO2 oxidation of model compounds having various functional groups and humic substances[J]. Water Research, 2019, 159: 348-357. doi: 10.1016/j.watres.2019.05.020
|
[71] |
YANG L Y, HAN D H, LEE B M, et al. Characterizing treated wastewaters of different industries using clustered fluorescence EEM–PARAFAC and FT-IR spectroscopy: Implications for downstream impact and source identification[J]. Chemosphere, 2015, 127: 222-228. doi: 10.1016/j.chemosphere.2015.02.028
|
[72] |
WANG C K, ZHANG X J, WANG J, et al. Effects of organic fractions on the formation and control of N-nitrosamine precursors during conventional drinking water treatment processes[J]. Science of the Total Environment, 2013, 449: 295-301. doi: 10.1016/j.scitotenv.2013.01.080
|
[73] |
WANG C K, ZHANG X J, CHEN C, et al. Factors controlling N-nitrosodimethylamine (NDMA) formation from dissolved organic matter[J]. Frontiers of Environmental Science & Engineering, 2013, 7(2): 151-157.
|
[74] |
FARRÉ M J, INSA S, LAMB A, et al. Occurrence of N-nitrosamines and their precursors in Spanish drinking water treatment plants and distribution systems[J]. Environmental Science:Water Research & Technology, 2020, 6(1): 210-220.
|
[75] |
D'ANDRILLI J, COOPER W T, FOREMAN C M, et al. An ultrahigh-resolution mass spectrometry index to estimate natural organic matter lability[J]. Rapid Communications in Mass Spectrometry:RCM, 2015, 29(24): 2385-2401. doi: 10.1002/rcm.7400
|
[76] |
RADJENOVIC J, FARRÉ M J, GERNJAK W. Effect of UV and UV/H2O2 in the presence of chloramines on NDMA formation potential of tramadol[J]. Environmental Science & Technology, 2012, 46(15): 8356-8364.
|
[77] |
KEMPER J M, WALSE S S, MITCH W A. Quaternary amines as nitrosamine precursors: A role for consumer products?[J]. Environmental Science & Technology, 2010, 44(4): 1224-1231.
|
[78] |
PADHYE L, LUZINOVA Y, CHO M, et al. PolyDADMAC and dimethylamine as precursors of N-nitrosodimethylamine during ozonation: Reaction kinetics and mechanisms[J]. Environmental Science & Technology, 2011, 45(10): 4353-4359.
|
[79] |
MITCH W A, SEDLAK D L. Formation of N-nitrosodimethylamine (NDMA) from dimethylamine during chlorination[J]. Environmental Science & Technology, 2002, 36(4): 588-595.
|
[80] |
FIDDLER W, PENSABENE J W, DOERR R C, et al. Formation of N-nitrosodimethylamine from naturally occurring quaternary ammonium compounds and tertiary amines[J]. Nature, 1972, 236(5345): 307.
|
[81] |
MITCH W A, SCHREIBER I M. Degradation of tertiary alkylamines during chlorination/chloramination: Implications for formation of aldehydes, nitriles, halonitroalkanes, and nitrosamines[J]. Environmental Science & Technology, 2008, 42(13): 4811-4817.
|
[82] |
MITCH W A, SEDLAK D L. Characterization and fate of N-nitrosodimethylamine precursors in municipal wastewater treatment plants[J]. Environmental Science & Technology, 2004, 38(5): 1445-1454.
|
[83] |
PARK S H, PIYACHATURAWAT P, TAYLOR A E, et al. Potential N-nitrosodimethylamine (NDMA) formation from amine-based water treatment polymers in the reactions with chlorine-based oxidants and nitrosifying agents[J]. Water Supply, 2009, 9(3): 279-288. doi: 10.2166/ws.2009.452
|
[84] |
PIYACHATURAWAT P. Potential N-nitrosodimethylamine (NDMA) formation from water treatment polymers[D]. Georgia Institute of Technology, 2005.
|
[85] |
PARK S H, WEI S T, MIZAIKOFF B, et al. Degradation of amine-based water treatment polymers during chloramination as N-nitrosodimethylamine (NDMA) precursors[J]. Environmental Science & Technology, 2009, 43(5): 1360-1366.
|
[86] |
ZENG T, LI R J, MITCH W A. Structural modifications to quaternary ammonium polymer coagulants to inhibit N-nitrosamine formation[J]. Environmental Science & Technology, 2016, 50(9): 4778-4787.
|
[87] |
KRASNER S W, MITCH W A, MCCURRY D L, et al. Formation, precursors, control, and occurrence of nitrosamines in drinking water: A review[J]. Water Research, 2013, 47(13): 4433-4450. doi: 10.1016/j.watres.2013.04.050
|
[88] |
DING S K, DENG Y, BOND T, et al. Disinfection byproduct formation during drinking water treatment and distribution: A review of unintended effects of engineering agents and materials[J]. Water Research, 2019, 160: 313-329. doi: 10.1016/j.watres.2019.05.024
|
[89] |
KUMAR R, SARMAH A K, PADHYE L P. Fate of pharmaceuticals and personal care products in a wastewater treatment plant with parallel secondary wastewater treatment train[J]. Journal of Environmental Management, 2019, 233: 649-659.
|
[90] |
WILKINSON J, HOODA P S, BARKER J, et al. Occurrence, fate and transformation of emerging contaminants in water: An overarching review of the field[J]. Environmental Pollution, 2017, 231: 954-970. doi: 10.1016/j.envpol.2017.08.032
|
[91] |
CHEN W H, YOUNG T M. Influence of nitrogen source on NDMA formation during chlorination of diuron[J]. Water Research, 2009, 43(12): 3047-3056. doi: 10.1016/j.watres.2009.04.020
|
[92] |
JASEMIZAD T, BROMBERG L, HATTON T A, et al. Oxidation of betrixaban to yield N-nitrosodimethylamine by water disinfectants[J]. Water Research, 2020, 186: 116309. doi: 10.1016/j.watres.2020.116309
|
[93] |
HANIGAN D, THURMAN E M, FERRER I, et al. Methadone contributes to N-nitrosodimethylamine formation in surface waters and wastewaters during chloramination[J]. Environmental Science & Technology Letters, 2015, 2(6): 151-157.
|
[94] |
ZHANG A, LI Y M, SONG Y, et al. Characterization of pharmaceuticals and personal care products as N-nitrosodimethylamine precursors during disinfection processes using free chlorine and chlorine dioxide[J]. Journal of Hazardous Materials, 2014, 276: 499-509. doi: 10.1016/j.jhazmat.2014.05.069
|
[95] |
PADHYE L P, KIM J H, HUANG C H. Oxidation of dithiocarbamates to yield N-nitrosamines by water disinfection oxidants[J]. Water Research, 2013, 47(2): 725-736. doi: 10.1016/j.watres.2012.10.043
|
[96] |
ALABA P A, SANI Y M, OLUPINLA S F, et al. Toward N-nitrosamines free water: Formation, prevention, and removal[J]. Critical Reviews in Environmental Science and Technology, 2017, 47(24): 2448-2489. doi: 10.1080/10643389.2018.1430438
|
[97] |
LE ROUX J, GALLARD H, CROUÉ J P. Chloramination of nitrogenous contaminants (pharmaceuticals and pesticides): NDMA and halogenated DBPs formation[J]. Water Research, 2011, 45(10): 3164-3174. doi: 10.1016/j.watres.2011.03.035
|
[98] |
SHEN R Q, ANDREWS S A. Demonstration of 20 pharmaceuticals and personal care products (PPCPs) as nitrosamine precursors during chloramine disinfection[J]. Water Research, 2011, 45(2): 944-952. doi: 10.1016/j.watres.2010.09.036
|
[99] |
SILLA SANTOS M H. Biogenic amines: Their importance in foods[J]. International Journal of Food Microbiology, 1996, 29(2/3): 213-231.
|
[100] |
FACCHINI M C, DECESARI S, RINALDI M, et al. Important source of marine secondary organic aerosol from biogenic amines[J]. Environmental Science & Technology, 2008, 42(24): 9116-9121.
|
[101] |
MÜLLER C, IINUMA Y, KARSTENSEN J, et al. Seasonal variation of aliphatic amines in marine sub-micrometer particles at the Cape Verde Islands[J]. Atmospheric Chemistry and Physics, 2009, 9(24): 9587-9597. doi: 10.5194/acp-9-9587-2009
|
[102] |
WANG X C, LEE C. Sources and distribution of aliphatic amines in salt marsh sediment[J]. Organic Geochemistry, 1994, 22(6): 1005-1021. doi: 10.1016/0146-6380(94)90034-5
|
[103] |
GARSIN D A. Ethanolamine utilization in bacterial pathogens: Roles and regulation[J]. Nature Reviews Microbiology, 2010, 8(4): 290-295. doi: 10.1038/nrmicro2334
|
[104] |
SHIMIZU M, KOZONO M, MURAYAMA N, et al. Bonitos with low content of malodorous trimethylamine as palliative care for self-reported Japanese trimethylaminuria subjects[J]. Drug Metabolism and Pharmacokinetics, 2009, 24(6): 549-552. doi: 10.2133/dmpk.24.549
|
[105] |
YU Z, ZHANG Q, KRAUS T E C, et al. Contribution of amino compounds to dissolved organic nitrogen in forest soils[J]. Biogeochemistry, 2002, 61(2): 173-198. doi: 10.1023/A:1020221528515
|
[106] |
BUSHAW-NEWTON K L, MA M R. Photochemical formation of biologically available nitrogen from dissolved humic substances in coastal marine systems[J]. Aquatic Microbial Ecology, 1999, 18: 285-292. doi: 10.3354/ame018285
|
[107] |
ZENG T, GLOVER C M, MARTI E J, et al. Relative importance of different water categories as sources of N-nitrosamine precursors[J]. Environmental Science & Technology, 2016, 50(24): 13239-13248.
|
[108] |
VAL DEL RÍO Á, CAMPOS GÓMEZ J L, MOSQUERA CORRAL A. Technologies for the Treatment and Recovery of Nutrients from Industrial Wastewater[M]. IGI Global, 2017.
|
[109] |
KARADAS F, ATILHAN M, APARICIO S. Review on the use of ionic liquids (ILs) as alternative fluids for CO2Capture and natural gas sweetening[J]. Energy & Fuels, 2010, 24(11): 5817-5828.
|
[110] |
ALI MAZARI S, ALABA P, SAEED I M. Formation and elimination of nitrosamines and nitramines in freshwaters involved in post-combustion carbon capture process[J]. Journal of Environmental Chemical Engineering, 2019, 7(3): 103111. doi: 10.1016/j.jece.2019.103111
|
[111] |
OYA M, KOSAKA K, ASAMI M, et al. Formation of N-nitrosodimethylamine (NDMA) by ozonation of dyes and related compounds[J]. Chemosphere, 2008, 73(11): 1724-1730. doi: 10.1016/j.chemosphere.2008.09.026
|
[112] |
KOSAKA K, ASAMI M, KONNO Y, et al. Identification of antiyellowing agents as precursors of N-nitrosodimethylamine production on ozonation from sewage treatment plant influent[J]. Environmental Science & Technology, 2009, 43(14): 5236-5241.
|
[113] |
CHEN W H, HUANG T H, WANG C Y. Impact of pre-oxidation on nitrosamine formation from a source to drinking water: A perspective on cancer risk assessment[J]. Process Safety and Environmental Protection, 2018, 113: 424-434. doi: 10.1016/j.psep.2017.11.016
|
[114] |
MITCH W A, SEDLAK D L. Factors controlling nitrosamine formation during wastewater chlorination[J]. Water Supply, 2002, 2(3): 191-198. doi: 10.2166/ws.2002.0102
|
[115] |
KRISTIANA I, TAN J, JOLL C A, et al. Formation of N-nitrosamines from chlorination and chloramination of molecular weight fractions of natural organic matter[J]. Water Research, 2013, 47(2): 535-546. doi: 10.1016/j.watres.2012.10.014
|
[116] |
ZHAO Y Y, BOYD J M, WOODBECK M, et al. Formation of N-nitrosamines from eleven disinfection treatments of seven different surface waters[J]. Environmental Science & Technology, 2008, 42(13): 4857-4862.
|
[117] |
YANG L, CHEN Z L, SHEN J M, et al. Reinvestigation of the nitrosamine-formation mechanism during ozonation[J]. Environmental Science & Technology, 2009, 43(14): 5481-5487.
|
[118] |
ANDRZEJEWSKI P, KASPRZYK-HORDERN B, NAWROCKI J. The hazard of N-nitrosodimethylamine (NDMA) formation during water disinfection with strong oxidants[J]. Desalination, 2005, 176(1/2/3): 37-45.
|
[119] |
ANDRZEJEWSKI P, NAWROCKI J. N-nitrosodimethylamine (NDMA) as a product of potassium permanganate reaction with aqueous solutions of dimethylamine (DMA)[J]. Water Research, 2009, 43(5): 1219-1228. doi: 10.1016/j.watres.2008.12.005
|
[120] |
SCHREIBER I M, MITCH W A. Nitrosamine formation pathway revisited: The importance of chloramine speciation and dissolved oxygen[J]. Environmental Science & Technology, 2006, 40(19): 6007-6014.
|
[121] |
SHAH A D, MITCH W A. Halonitroalkanes, halonitriles, haloamides, and N-nitrosamines: A critical review of nitrogenous disinfection byproduct formation pathways[J]. Environmental Science & Technology, 2012, 46(1): 119-131.
|
[122] |
XU B, QIN C, HU C Y, et al. Degradation kinetics and N-nitrosodimethylamine formation during monochloramination of chlortoluron[J]. Science of the Total Environment, 2012, 417/418: 241-247. doi: 10.1016/j.scitotenv.2011.12.056
|
[123] |
SOLTERMANN F, LEE M J, CANONICA S, et al. Enhanced N-nitrosamine formation in pool water by UV irradiation of chlorinated secondary amines in the presence of monochloramine[J]. Water Research, 2013, 47(1): 79-90. doi: 10.1016/j.watres.2012.09.034
|
[124] |
U. S. EPA. Risk assessment guidance for Superfund. Volume 1. Human Health Evaluation Manual. Part A. Interim report (Final)[R]. Washington, DC: Office of Emergency and Remedial Response, 1989
|
[125] |
U. S. EPA. Risk Assessment Guidance for Superfund: Human Health Evaluation Manual (Part E, Supplemental Guidance for Dermal Risk Assessment)[R]. Washington, DC: Office of Superfund Remediation and Technology Innovation, 2004: Volume 1.
|
[126] |
U. S. EPA. Risk Assessment Guidance for Superfund: Human Health Evaluation Manual (Part F, Supplemental Guidance for Inhalation Risk Assessment)[R]. Washington, DC: Office of Superfund Remediation and Technology Innovation, 2009: Volume 1.
|
[127] |
U. S. EPA. Supplementary Guidance for Conducting Health Risk Assessment of Chemical Mixtures. [R]. Washington, DC: Risk Assessment Forum, 2000.
|
[128] |
YIN Y Y, LI T, KUANG D Y, et al. Probabilistic health risk assessment of nitrosamines in drinking water of Shaoxing, Zhejiang, China[J]. Environmental Science and Pollution Research, 2019, 26(6): 5485-5499. doi: 10.1007/s11356-018-4026-3
|
[129] |
U. S. EPA. Monitoring the Occurrence of Unregulated Drinking Water Contaminants[R]. U. S. EPA, 2013.
|
[130] |
BIENIARZ K, EPLER P, KIME D, et al. Effects of N, N-dimethylnitrosamine (DMNA) on in vitro oocyte maturation and embryonic development of fertilized eggs of carp (Cyprinus carpio L. ) kept in eutrophied ponds[J]. Journal of Applied Toxicology, 1996, 16(2): 153-156. doi: 10.1002/(SICI)1099-1263(199603)16:2<153::AID-JAT323>3.0.CO;2-Z
|
[131] |
GOODALL C M, KENNEDY T H. Carcinogenicity of dimethylnitramine in NZR rats and NZO mice[J]. Cancer Letters, 1975, 1: 295-298. doi: 10.1016/S0304-3835(75)97975-6
|
[132] |
雷炳莉, 黄圣彪, 王子健. 生态风险评价理论和方法[J]. 化学进展, 2009, 21(增刊1): 350-358.
LEI B L, HUANG S B, WANG Z J. Theories and methods of ecological risk assessment[J]. Progress in Chemistry, 2009, 21(Sup 1): 350-358 (in Chinese).
|
[133] |
GODOY A A, DOMINGUES I, ARSÉNIA NOGUEIRA A J, et al. Ecotoxicological effects, water quality standards and risk assessment for the anti-diabetic metformin[J]. Environmental Pollution, 2018, 243: 534-542. doi: 10.1016/j.envpol.2018.09.031
|
[134] |
AYDIN S, AYDIN M E, ULVI A, et al. Antibiotics in hospital effluents: Occurrence, contribution to urban wastewater, removal in a wastewater treatment plant, and environmental risk assessment[J]. Environmental Science and Pollution Research, 2019, 26(1): 544-558. doi: 10.1007/s11356-018-3563-0
|
[135] |
HELA D G, LAMBROPOULOU D A, KONSTANTINOU I K, et al. Environmental monitoring and ecological risk assessment for pesticide contamination and effects in Lake Pamvotis, northwestern Greece[J]. Environmental Toxicology and Chemistry, 2005, 24(6): 1548-1556. doi: 10.1897/04-455R.1
|
[136] |
LI Z G, LIU X Y, HUANG Z J, et al. Occurrence and ecological risk assessment of disinfection byproducts from chlorination of wastewater effluents in East China[J]. Water Research, 2019, 157: 247-257. doi: 10.1016/j.watres.2019.03.072
|