CARBALLA M, OMIL F, LEMA J M, et al. Behavior of pharmaceuticals, cosmetics and hormones in a sewage treatment plant.[J]. Water Research, 2004, 38(12):2918-2926.
KUMMERER K. Antibiotics in the aquatic environment:A review——part II[J].Chemosphere:2009, 75:435-441.
YANG J F, YING G G, ZHAO J L, et al. Spatial and seasonal distribution of selected antibiotics in surface waters of the Pearl Rivers, China[J]. Journal of Environmental Science and Health Part B Pesticides Food Contaminants and Agricultural Wastes, 2011, 46(3):272-280.
郑佳伦,刘超翔,刘琳,黄栩.畜禽养殖业主要废弃物处理工艺消除抗生素研究进展[J].环境化学,2017,36(1):37-47. ZHENG J L,LIU C X,HUANG X. Removal of antibiotics in waste and wastewater treatment facilities of animal breeding industry:A review[J].Environment chemistry,2017,36(1):37-47(in Chinese).
MATAMORO V, GARCIA J, BAVONA J M. Organic micropollutant removal in a full-scale surface flow constructed wetland fed with secondary effluent[J]. Water Research. 2008, 42:653-660.
MATAMORO V, BAVONA J M. Behavior of emerging pollutants constructed wetlands[J].The Handbook of Environment Chemistry. 2008,5:199-217.
MATAMORO V, ARIAS C, BRIX H, et al. Preliminary screening of small-scale domestic wastewater systems for removal of pharmaceutical and treatment personal care products[J]. Water Research.2009, 43:55-62.
ZHANG D Q, TAN S K, GERSBERG R M. Removal of pharmaceutical compounds in tropical constructed wetlands[J]. Ecological Engineering, 2011, 37(3):460-464.
HIJOSA-VALSERO M, FINK G, SCHLUSENER M P, et al. Removal of antibiotics from urban wastewater by constructed wetland optimization[J]. Chemosphere, 2011, 83(5):713-719.
MATAMORO V, CASELLES-OSORIO A, GARCIA J, et al. Behaviour of pharmaceutical products and biodegradation intermediates in horizontal subsurface flow constructed wetland. A microcosm experiment[J]. Science of the Total Environment, 2008, 394(1):171-176.
AVILA C, PEDESCOLL A, MATAMORO V, et al. Capacity of a horizontal subsurface flow constructed wetland system for the removal of emerging pollutants:An injection experiment[J]. Chemosphere, 2010, 81(9):1137-1142.
阿丹. 人工湿地对14种常用抗生素的去除效果及影响因素研究[D]. 广州:暨南大学, 2012. A D. The removal efficiency and impact factors of 14 antibiotics in constructed wetlands[D].Guangzhou:Jinan University,2012(in Chinese).
SIMONICH S L, HITES R A. Organic pollutant accumulation in vegetation[J]. Environmental Science & Technology, 1995, 29(12):2905-2914.
凌婉婷, 朱利中, 高彦征,等. 植物根对土壤中PAHs的吸收及预测[J]. 生态学报, 2005, 25(9):2320-2325. LING W T, ZHU L Z, GAO Y Z, et al. Root uptake and its prediction model of PAHs from soils[J].Acta Ecologica Sinica,2005, 25(9):2320-2325(in Chinese).
陈军. 生活污水中抗生素和耐药基因的人工湿地去除机制与系统优化[D].北京:中国科学院大学,2017. CHEN J. Removal of antibiotics and ARGs from dometic sewage by constructed wetlands:removal mechanism and system optimization.[D]. Beijing:University of Chinese Academy of Sciences,2017(in Chinese).
鄢璐, 王世和, 钟秋爽,等. 强化供氧条件下潜流型人工湿地运行特性[J]. 环境科学, 2007, 28(4):736-741. YAN L,WANG S H,ZHONG Q S, et al. Study on running characteristics of aerating subsurface flow wetlands[J]. Environment Science,2007, 28(4):736-741(in Chinese)