[1] YIN T R, TE S H, REINHARD M, et al. Biotransformation of Sulfluramid (N-ethyl perfluorooctane sulfonamide) and dynamics of associated rhizospheric microbial community in microcosms of wetland plants [J]. Chemosphere, 2018, 211: 379-389. doi: 10.1016/j.chemosphere.2018.07.157
[2] CHEN Y C, LO S L, LEE Y C. Distribution and fate of perfluorinated compounds (PFCs) in a pilot constructed wetland [J]. Desalination and Water Treatment, 2012, 37(1/2/3): 178-184.
[3] LI R, TANG T H, QIAO W C, et al. Toxic effect of perfluorooctane sulfonate on plants in vertical-flow constructed wetlands [J]. Journal of Environmental Sciences, 2020, 92: 176-186. doi: 10.1016/j.jes.2020.02.018
[4] WANG P, ZHANG M, LU Y L, et al. Removal of perfluoalkyl acids (PFAAs) through fluorochemical industrial and domestic wastewater treatment plants and bioaccumulation in aquatic plants in river and artificial wetland [J]. Environment International, 2019, 129: 76-85. doi: 10.1016/j.envint.2019.04.072
[5] LI X Q, HUA Z L, WU J Y, et al. Removal of perfluoroalkyl acids (PFAAs) in constructed wetlands: Considerable contributions of submerged macrophytes and the microbial community [J]. Water Research, 2021, 197: 117080. doi: 10.1016/j.watres.2021.117080
[6] HOUTZ E F, SUTTON R, PARK J S, et al. Poly- and perfluoroalkyl substances in wastewater: Significance of unknown precursors, manufacturing shifts, and likely AFFF impacts [J]. Water Research, 2016, 95: 142-149. doi: 10.1016/j.watres.2016.02.055
[7] WANG Y W, FU J J, WANG T, et al. Distribution of perfluorooctane sulfonate and other perfluorochemicals in the ambient environment around a manufacturing facility in China [J]. Environmental Science & Technology, 2010, 44(21): 8062-8067.
[8] ZHANG D Q, LI X, WANG M, et al. Occurrence and distribution of poly-and perfluoroalkyl substances (PFASs) in a surface flow constructed wetland [J]. Ecological Engineering, 2021, 169: 106291. doi: 10.1016/j.ecoleng.2021.106291
[9] YIN T R, CHEN H T, REINHARD M, et al. Perfluoroalkyl and polyfluoroalkyl substances removal in a full-scale tropical constructed wetland system treating landfill leachate [J]. Water Research, 2017, 125: 418-426. doi: 10.1016/j.watres.2017.08.071
[10] CHEN Z A, REN G B, MA X D, et al. Perfluoroalkyl substances in the Lingang hybrid constructed wetland, Tianjin, China: Occurrence, distribution characteristics, and ecological risks [J]. Environmental Science and Pollution Research International, 2020, 27(31): 38580-38590. doi: 10.1007/s11356-020-09921-8
[11] 王皓, 钱琪卉, 丁瑞睿, 等. 电解强化人工湿地对农村生活污水中氮磷的去除性能 [J]. 环境工程学报, 2021, 15(3): 1006-1015. doi: 10.12030/j.cjee.202005147 WANG H, QIAN Q H, DING R R, et al. Performance of electrolysis enhanced constructed wetland system on nitrogen and phosphorus removal of rural domestic sewage [J]. Chinese Journal of Environmental Engineering, 2021, 15(3): 1006-1015(in Chinese). doi: 10.12030/j.cjee.202005147
[12] 郭鹤方, 甄志磊, 赵林婷, 等. 潮汐流-潜流人工湿地对城市污染水体中氮的去除 [J]. 环境化学, 2021, 40(12): 3887-3897. doi: 10.7524/j.issn.0254-6108.2021053002 GUO H F, ZHEN Z L, ZHAO L T, et al. Research on the removal effect of tidal flow–subsurface flow constructed wetland on nitrogen in urban polluted water [J]. Environmental Chemistry, 2021, 40(12): 3887-3897(in Chinese). doi: 10.7524/j.issn.0254-6108.2021053002
[13] 魏复盛主编. 国家环境保护总局, 水和废水监测分析方法编委会编. 水和废水监测分析方法[M]. 4版. 北京: 中国环境科学出版社, 2002. State Environmental Protection Administration. Monitoring and analysis methods of water and wastewater (Fourth Edition) [M]. Beijing: China Environment Science Press, 2002(in Chinese).
[14] FELIZETER S, MCLACHLAN M S, de VOOGT P. Uptake of perfluorinated alkyl acids by hydroponically grown lettuce (Lactuca sativa) [J]. Environmental Science & Technology, 2012, 46(21): 11735-11743.
[15] 范紫嫣. PFASs-Cd复合污染对土壤—植物系统的生态效应研究[D]. 大连: 大连理工大学, 2017. FAN Z Y. Interaction effects on uptake and toxicity of perfluoroalkyl substances and cadmium in wheat (Triticum aestivum L. )and rapeseed (Brassica campestris L. ) from co-contaminated soil[D]. Dalian: Dalian University of Technology, 2017(in Chinese).
[16] 李鹏扬. 水中全氟辛烷羧酸和全氟辛烷磺酸的植物毒性机制研究[D]. 北京: 北京交通大学, 2021. LI P Y. Characteristics of phytotoxicity induced by perfluorooctanoic acid and perfluorooctane sulfonate in water[D]. Beijing: Beijing Jiaotong University, 2021(in Chinese).
[17] 秦莉, 安毅, 韩建华, 等. PFOS对小油菜生长发育的毒性效应及机制 [J]. 农业环境科学学报, 2017, 36(12): 2401-2406. doi: 10.11654/jaes.2017-0705 QIN L, AN Y, HAN J H, et al. Toxic effects and mechanisms of PFOS on the growth of rape(Brassica campestris L. ) [J]. Journal of Agro-Environment Science, 2017, 36(12): 2401-2406(in Chinese). doi: 10.11654/jaes.2017-0705
[18] BAO Y X, LI B X, XIE S G, et al. Vertical profiles of microbial communities in perfluoroalkyl substance-contaminated soils [J]. Annals of Microbiology, 2018, 68(6): 399-408. doi: 10.1007/s13213-018-1346-y
[19] 唐琳钦, 宿程远, 黄娴, 等. PFOA与PFOS对厌氧氨氧化污泥特性和微生物群落的影响 [J]. 中国环境科学, 2022, 42(1): 194-202. doi: 10.3969/j.issn.1000-6923.2022.01.021 TANG L Q, SU C Y, HUANG X, et al. Evaluation of sludge characteristics and microbial community of anammox sludge during exposure to perfluorooctane acid and perfluorooctane sulfonate [J]. China Environmental Science, 2022, 42(1): 194-202(in Chinese). doi: 10.3969/j.issn.1000-6923.2022.01.021
[20] 梁欢欢, 吴明红, 徐刚, 等. PFCs在水和底泥中的分布、毒性和去除 [J]. 上海大学学报(自然科学版), 2017, 23(5): 752-761. LIANG H H, WU M H, XU G, et al. Distribution of PFCs in water and sediment, and toxicity and removal [J]. Journal of Shanghai University (Natural Science Edition), 2017, 23(5): 752-761(in Chinese).
[21] 张弘弢, 谌书, 王彬, 等. 组合式人工湿地对分散型生活污水净化效果及其微生物群落结构特征 [J]. 环境化学, 2019, 38(11): 2535-2545. doi: 10.1002/etc.4547 ZHANG H T, CHEN S, WANG B, et al. Purification effect of combined artificial wetlands on dispersed domestic sewage and analysis of microbial community structure [J]. Environmental Chemistry, 2019, 38(11): 2535-2545(in Chinese). doi: 10.1002/etc.4547
[22] 刘莹, 刘晓晖, 张亚茹, 等. 三种人工湿地填料对低浓度氨氮废水的吸附特性 [J]. 环境化学, 2018, 37(5): 1118-1127. LIU Y, LIU X H, ZHANG Y R, et al. Adsorption properties of low concentration ammonia nitrogen wastewater by three constructed wetland fillers [J]. Environmental Chemistry, 2018, 37(5): 1118-1127(in Chinese).
[23] 崔海, 杨珊珊, 余鑫磊, 等. AAO-人工湿地耦合模型的建立及优化调控研究[J]. 给水排水, 2020, 56(S2): 80-87. CUI H, YANG S S, YU X L, et al. Study on development and optimization of AAO wastewater treatment and constructed wetland coupling model[J]. Water & Wastewater Engineering, 2020, 56(Sup 2): 80-87(in Chinese).
[24] JOHNSON R L, ANSCHUTZ A J, SMOLEN J M, et al. The adsorption of perfluorooctane sulfonate onto sand, clay, and iron oxide surfaces [J]. Journal of Chemical & Engineering Data, 2007, 52(4): 1165-1170.
[25] ENEVOLDSEN R, JUHLER R K. Perfluorinated compounds (PFCs) in groundwater and aqueous soil extracts: Using inline SPE-LC-MS/MS for screening and sorption characterisation of perfluorooctane sulphonate and related compounds [J]. Analytical and Bioanalytical Chemistry, 2010, 398(3): 1161-1172. doi: 10.1007/s00216-010-4066-0
[26] QIAO W C, LI R, TANG T H, et al. Removal, distribution and plant uptake of perfluorooctane sulfonate (PFOS) in a simulated constructed wetland system [J]. Frontiers of Environmental Science & Engineering, 2020, 15(2): 1-11.
[27] WEN B, WU Y L, ZHANG H N, et al. The roles of protein and lipid in the accumulation and distribution of perfluorooctane sulfonate (PFOS) and perfluorooctanoate (PFOA) in plants grown in biosolids-amended soils [J]. Environmental Pollution, 2016, 216: 682-688. doi: 10.1016/j.envpol.2016.06.032
[28] FELIZETER S T, VOOGT P D. Uptake of perfluorinated alkyl acids by hydroponically grown lettuce (Latuca sativa) and tomato (Solanum lycopersicum) [J]. Environmental Science & Technology, 2011, 46(21): 11735-11743.