COVACI A, VOORSPOELS S, ABDALLAH M A, et al. Analytical and environmental aspects of the flame retardant tetrabromobisphenol A and its derivatives[J]. Journal of Chromatography A, 2009, 1216(3):346-363.
HARRAD S, ABDALLAH M A, ROSE N L, et al. Current-use brominated flame retardants in water, sediment, and fish from English lakes[J]. Environmental Science & Technology, 2009, 43(24):9077-9083.
SHI T, CHEN S J, LUO X J, et al. Occurrence of brominated flame retardants other than polybrominated diphenyl ethers in environmental and biota samples from southern China[J]. Chemosphere, 2009, 74(7):910-916.
MCCORMICK J M, PAIVA M S, HÄGGBLOM M M, et al. Embryonic exposure to tetrabromobisphenol A and its metabolites, bisphenol A and tetrabromobisphenol A dimethyl ether disrupts normal zebrafish (Danio rerio) development and matrix metalloproteinase expression[J]. Aquatic Toxicology, 2010, 100(3):255-262.
MORF L S, TREMP J, GLOOR R, et al. Brominated flame retardants in waste electrical and electronic equipment:Substance flows in a recycling plant[J]. Environmental Science & Technology, 2005, 39(22):8691-8699.
ÖBERG T, ÖBERG K, WARMAN K, et al. Distribution and levels of brominated flame retardants in sewage sludge[J]. Chemosphere, 2002, 48(8):805-809.
王俊霞, 刘莉莉, 郭杰, 等. 溴代阻燃剂在中国川藏地区的污染和分布特征[J]. 环境科学学报, 2014, 34(11):2823-2831. WANG J X, LIU L L, GUO J, et al. Levels and distribution of brominated flame retardants in Sichuan-Tibet region, China[J]. Acta Scientiae Circumstantiae, 2014,34(11):2823-2831(in Chinese).
KÄSTNER M, NOWAK K M, MILTNER A, et al. Classification and modelling of nonextractable residue (NER) formation of xenobiotics in soil-a synthesis[J]. Critical Reviews in Environmental Science & Technology, 2014, 44(19):2107-2171.
ANDREU V, PICÓ Y. Determination of pesticides and their degradation products in soil:Critical review and comparison of methods[J]. TrAC Trends in Analytical Chemistry, 2004, 23(10/11):772-789.
TONG F, GU X Y, GU C, et al. Insights into tetrabromobisphenol A adsorption onto soils:Effects of soil components and environmental factors[J]. Science of the Total Environment, 2015, 536:582-588.
CHEN X, GU J Q, WANG Y F, et al. Fate and O-methylating detoxification of tetrabromobisphenol A (TBBPA) in two earthworms (Metaphire guillelmi and Eisenia fetida)[J]. Environmental Pollution, 2017, 227:526-533.
GU J Q, JING Y Y, MA Y N, et al. Effects of the earthworm Metaphire guillelmi on the mineralization, metabolism, and bound-residue formation of tetrabromobisphenol A (TBBPA) in soil[J]. Science of the Total Environment, 2017, 595:528-536.
LI Y N, ZHOU Q X, WANG Y Y, et al. Fate of tetrabromobisphenol A and hexabromocyclododecane brominated flame retardants in soil and uptake by plants[J]. Chemosphere, 2011, 82(2):204-209.
LI H W, HU Y X, SUN Y X, et al. Bioaccumulation and translocation of tetrabromobisphenol A and hexabromocyclododecanes in mangrove plants from a national nature reserve of Shenzhen City, South China[J]. Environment International, 2019, 129:239-246.
SUN F F, KOLVENBACH B A, NASTOLD P, et al. Degradation and metabolism of tetrabromobisphenol A (TBBPA) in submerged soil and soil-plant systems[J]. Environmental Science & Technology, 2014, 48(24):14291-14299.
WANG S F, CAO S Q, WANG Y F, et al. Fate and metabolism of the brominated flame retardant tetrabromobisphenol A (TBBPA) in rice cell suspension culture[J]. Environmental Pollution, 2016, 214:299-306.
LIU A F, ZHAO Z S, QU G B, et al. Transformation/degradation of tetrabromobisphenol A and its derivatives:A review of the metabolism and metabolites[J]. Environmental Pollution, 2018, 243:1141-1153.
YU Y J, YU Z L, CHEN H B, et al. Tetrabromobisphenol A:Disposition, kinetics and toxicity in animals and humans[J]. Environmental Pollution, 2019, 253:909-917.
KURAMOCHI H, KAWAMOTO K, MIYAZAKI K, et al. Determination of physicochemical properties of tetrabromobisphenol A[J]. Environmental Toxicology and Chemistry, 2008, 27(12):2413-2418.
PENG X X, ZHANG Z L, LUO W S, et al. Biodegradation of tetrabromobisphenol A by a novel Comamonas sp. strain, JXS-2-02, isolated from anaerobic sludge[J]. Bioresource Technology, 2013, 128:173-179.
谢慧,王军,王彦红,等. 四溴双酚A在土壤中的降解动态及其对土壤微生物数量和酶活性的影响[J]. 环境化学, 2017, 36(7):1614-1621. XIE H, WANG J, WANG Y H, et al. Degradation dynamics of tetrabromobisphenol A in soil and in effects on soil microorganisms and enzymatic activity[J]. Environmental Chemistry, 2017,36(7):1614-1621(in Chinese).
LIU J, WANG Y F, JIANG B Q, et al. Degradation, metabolism, and bound-residue formation and release of tetrabromobisphenol A in soil during sequential anoxic-oxic incubation[J]. Environmental Science & Technology, 2013, 47(15):8348-8354.
LI F J, WANG J J, JIANG B Q, et al. Fate of tetrabromobisphenol A (TBBPA) and formation of ester- and ether-linked bound residues in an oxic sandy soil[J]. Environmental Science & Technology, 2015, 49(21):12758-12765.
ARMENANTE P M, KAFKEWITZ D, LEWANDOWSKI G A, et al. Anaerobic-aerobic treatment of halogenated phenolic compounds[J]. Water Research, 1999, 33(3):681-692.
LI M T, HAO L L, SHENG L X, et al. Identification and degradation characterization of hexachlorobutadiene degrading strain Serratia marcescens HL1[J]. Bioresource Technology, 2008, 99(15):6878-6884.
UNGER I M, KENNEDY A C, MUZIKA R. Flooding effects on soil microbial communities[J]. Applied Soil Ecology, 2009, 42(1):1-8.
NYHOLM J R, LUNDBERG C, ANDERSSON P L. Biodegradation kinetics of selected brominated flame retardants in aerobic and anaerobic soil[J]. Environmental Pollution, 2010, 158(6):2235-2240.
MCAVOY D C, PITTINGER C A, WILLIS A M. Biotransformation of tetrabromobisphenol A (TBBPA) in anaerobic digester sludge, soils, and freshwater sediments[J]. Ecotoxicology and Environmental Safety, 2016, 131:143-150.
ARBELI Z, RONEN Z. Enrichment of a microbial culture capable of reductive debromination of the flame retardant tetrabromobisphenol A, and identification of the intermediate metabolites produced in the process[J]. Biodegradation, 2003, 14(6):385-395.
RAVIT B, EHRENFELD J G, HÄGGBLOM M M. Salt marsh rhizosphere affects microbial biotransformation of the widespread halogenated contaminant tetrabromobisphenol A (TBBPA)[J]. Soil Biology and Biochemistry, 2005, 37(6):1049-1057.
VOORDECKERS J W, FENNELL D E, JONES K, et al. Anaerobic biotransformation of tetrabromobisphenol A, tetrachlorobisphenol A, and bisphenol A in estuarine sediments[J]. Environmental Science & Technology, 2002, 36(4):696-701.
CHANG B V, YUAN S Y, REN Y L. Anaerobic degradation of tetrabromobisphenol A in river sediment[J]. Ecological Engineering, 2012, 4973-4976.
PENG X X, ZHANG Z L, ZHAO Z L, et al. 16S ribosomal DNA clone libraries to reveal bacterial diversity in anaerobic reactor-degraded tetrabromobisphenol A[J]. Bioresource Technology, 2012, 112:75-82.
RONEN Z, ABELIOVICH A. Anaerobic-aerobic process for microbial degradation of tetrabromobisphenol A[J]. Applied and Environmental Microbiology, 2000, 66(6):2372-2377.
LI F J, JIANG B Q, NASTOLD P, et al. Enhanced transformation of tetrabromobisphenol A by nitrifiers in nitrifying activated sludge[J]. Environmental Science & Technology, 2015, 49(7):4283-4292.
CHANG B V, YUAN S Y, REN Y L. Aerobic degradation of tetrabromobisphenol A by microbes in river sediment[J]. Chemosphere, 2012, 87(5):535-541.
GEORGE K W, HAGGBLOM M M. Microbial O-methylation of the flame retardant tetrabromobisphenol A[J]. Environmental Science & Technology, 2008, 42(15):5555-5561.
WANG S F, SUN F F, WANG Y F, et al. Formation, characterization, and mineralization of bound residues of tetrabromobisphenol A (TBBPA) in silty clay soil under oxic conditions[J]. Science of the Total Environment, 2017, 599/600:332-339.
MICHAŁOWICZ J. Bisphenol A-Sources, toxicity and biotransformation[J]. Environmental Toxicology and Pharmacology, 2014, 37(2):738-758.
张静,严静娜,郭悦宁,等. 阻燃剂四溴双酚A的厌氧-好氧生物降解[J]. 环境化学, 2016, 35(9):1776-1784. ZHANG J, YAN J N, GUO Y N, et al. Anaerobic and aerobic biodegradation of flame retardant tetrabromobisphenol A[J]. Environmental Chemistry, 2016, 35(9):1776-1784(in Chinese).
GABRIEL F L P, CYRIS M, GIGER W, et al. ipso-Substitution:A general biochemical and biodegradation mechanism to cleave α-quaternary alkylphenols and bisphenol A[J]. Chemistry & Biodiversity, 2007, 4(9):2123-2137.
KOLVENBACH B, SCHLAICH N, RAOUI Z, et al. Degradation pathway of bisphenol A:Does ipso substitution apply to phenols containing a quaternary α-carbon structure in the para position?[J]. Applied and Environmental Microbiology, 2007, 73(15):4776-4784.
LIU A F, ZHAO Z S, QU G B, et al. Identification of transformation/degradation products of tetrabromobisphenol A and its derivatives[J]. TrAC Trends in Analytical Chemistry, 2019, 111:85-99.
AN T C, ZU L, LI G Y, et al. One-step process for debromination and aerobic mineralization of tetrabromobisphenol A by a novel Ochrobactrum sp. T isolated from an e-waste recycling site[J]. Bioresource Technology, 2011, 102(19):9148-9154.
HOU X W, YU M, LIU A F, et al. Biotransformation of tetrabromobisphenol A dimethyl ether back to tetrabromobisphenol A in whole pumpkin plants[J]. Environmental Pollution, 2018, 241:331-338.
LEIGH M B, FLETCHER J S, FU X, et al. Root turnover:An important source of microbial substrates in rhizosphere remediation of recalcitrant contaminants[J]. Environmental Science & Technology, 2002, 36(7):1579-1583.
XIAO X M, BOLES S, FROLKING S, et al. Mapping paddy rice agriculture in South and Southeast Asia using multi-temporal MODIS images[J]. Remote Sensing of Environment, 2006, 100(1):95-113.
JOUANNEAU Y, WILLISON J C, MEYER C, et al. Stimulation of pyrene mineralization in freshwater sediments by bacterial and plant bioaugmentation[J]. Environmental Science & Technology, 2005, 39(15):5729-5735.
LI F J, WANG J J, NASTOLD P, et al. Fate and metabolism of tetrabromobisphenol A in soil slurries without and with the amendment with the alkylphenol degrading bacterium Sphingomonas sp. strain TTNP3[J]. Environmental Pollution, 2014, 193:181-188.
侯兴旺, 刘稷燕, 江桂斌. 典型卤代有机污染物在植物体内的代谢过程[J]. 中国科学:化学, 2018, 48(10):1236-1246. HOU X W, LIU J Y, JIANG G B. Metabolism of typical halogenated organic pollutants in plant[J]. Sci Sin Chim, 2018, 48(10):1236-1246(in Chinese).
REA P A. Plant ATP-binding cassette transporter[J]. Annual Review of Plant Biology, 2007, 58:347-375.
VAN GROENIGEN J W, LUBBERS I M, VOS H M J, et al. Earthworms increase plant production:A meta-analysis[J]. Scientific Reports, 2015, 4:6365. DOI:10.1038/srep06365.
HICKMAN Z A, REID B J. Earthworm assisted bioremediation of organic contaminants[J]. Environment International, 2008, 34(7):1072-1081.
GU J Q, CHEN X, WANG Y F, et al. Bioaccumulation, physiological distribution, and biotransformation of tetrabromobisphenol A (TBBPA) in the geophagous earthworm Metaphire guillelmi-hint for detoxification strategy[J]. Journal of Hazardous Materials, 2020, 388:122027. DOI:/10.1016/j.jhazmat.2020.122027
CHEN X, GU X Y, ZHAO X P, et al. Species-dependent effects of earthworms on the fates and bioavailability of tetrabromobisphenol A and cadmium coexisted in soils[J]. Science of the Total Environment, 2019, 658:1416-1422.
WANG F, JI R, JIANG Z, et al. Species-dependent effects of biochar amendment on bioaccumulation of atrazine in earthworms[J]. Environmental Pollution, 2014, 186:241-247.
FVHR F, OPHOFF H, BURAUEL P, et al. Modification of definition of bound residues//FUHR F, OPHOFF H (eds). Pesticide bound residues in soil[M]. Weinheim:Wiley, 1998:175-176.
SEN GUPTA S, BHATTACHARYYA K G. Kinetics of adsorption of metal ions on inorganic materials:A review[J]. Advances in Colloid and Interface Science, 2011, 162(1/2):39-58.
GEVAO B, SEMPLE K T, JONES K C. Bound pesticide residues in soils:A review[J]. Environmental Pollution, 2000, 108(1):3-14.
BARRACLOUGH D, KEARNEY T, CROXFORD A. Bound residues:Environmental solution or future problem?[J]. Environmental Pollution, 2005, 133(1):85-90.
TONG F, GU X Y, GU C, et al. Stimulation of tetrabromobisphenol A binding to soil humic substances by birnessite and the chemical structure of the bound residues[J]. Environmental Science & Technology, 2016, 50(12):6257-6266.
王松凤,吴玄,王麒麟,等. 土壤中四溴双酚A不可提取态残留的降解转化[J]. 科学通报, 2019, 64(33):3458-3466. WANG S F, WU X, WANG Q L, et al. The degradation and transformation of TBBPA-derived NER in soil[J]. Chinese Science Bulletin,2019, 64(33):3458-3466(in Chinese).
WANG S F, LING X H, WU X, et al. Release of tetrabromobisphenol A (TBBPA)-derived non-extractable residues in oxic soil and the effects of the TBBPA-degrading bacterium Ochrobactrum sp. strain T[J]. Journal of Hazardous Materials, 2019, 378:120666. DOI:10.1016/j.jhazmat.2019.05.059.