1 |
丁宁,徐贝妮,彭灿,等.表面活性剂淋洗去除高岭土中镉和铅的研究[J].环境科学与技术,2017,40(8):184-188.
|
|
Ding Ning, Xu Bei‑ni, Peng Can,et al.Research on washing of kaolinite to remove cadmium and lead by surfactants[J].Environmental Science & Technology,2017,40(8):184-188.
|
2 |
平安,魏忠义,李培军,等.有机酸与表面活性剂联合作用对土壤重金属的浸提效果研究[J].生态环境学报,2011,20(6):266-273.
|
|
Ping An, Wei Zhong‑yi, Li Pei‑jun,et al.Study on the extractive effect of soil heavy metals with organic acids and surfactants[J].Ecology and Environmental Sciences,2011,20(6):266-273.
|
3 |
Feng W J, Zhang S R, Zhong Q M,et al.Soil washing remediation of heavy metal from contaminated soil with EDTMP and PAA:properties,optimization,and risk assessment[J].Journal of Hazardous Materials,2020,381(2):120-127.
|
4 |
Wang G Y, Zhang S R, Xu X X,et al.Efficiency of nanoscale zero‑valent iron on the enhanced low molecular weight organic acid removal Pb from contaminated soil[J].Chemosphere,2014,117(8):617-624.
|
5 |
Guo X F, Wei Z B, Wu Q T,et al.Effect of soil washing with only chelators or combining with ferric chloride on soil heavy metal removal and phyto availability:field experiments[J].Chemosphere,2016,147(4):412-419.
|
6 |
Hong K J, Tokunaga S, Kajiuchi T.Evaluation of remediation process with plant‑derived biosurfactant for recovery of heavy metals from contaminated soils[J].Chemosphere,2002,49(4):379-387.
|
7 |
Wei M, Chen J J, Wang X W.Removal of arsenic and cadmium with sequential soil washing techniques using Na2EDTA,oxalic and phosphoric acid:optimization conditions,removal effectiveness and ecological risks[J].Chemosphere,2016,156(3):252-261.
|
8 |
方译晨.无患子皂苷水提液与螯合剂联合作用修复镉污染土壤的研究[D].南宁:广西大学,2019.
|
|
Fang Yi‑chen.Joint effect of sapindus saponins water extract and chelating agent in remediation of cadmium contaminated soil[D].Nanning:Guangxi University,2019.
|
9 |
Xia Z H, Zhang S R, Cao Y R,et al.Remediation of cadmium,lead and zinc in contaminated soil with CETSA and MA/AA[J].Journal of Hazardous Materials,2019,366(15):177-183.
|
10 |
Saeedi M, Li L Y, Grace J R,et al.Desorption and mobility mechanisms of co‑existing polycyclic aromatic hydrocarbons and heavy metals in clays and clay minerals[J].Journal of Environmental Management,2018,65(4):123-131.
|
11 |
Han Y, Zhang C X, Zhu L,et al.Effect of alternating electromagnetic field and ultrasonic on CaCO3 scale inhibitive performance of EDTMPS[J].Journal of the Taiwan Institute of Chemical Engineers,2019,153(7):152-159.
|
12 |
张曙光.有机阻垢缓蚀剂作用机理的理论研究[D].南京:南京理工大学,2006.
|
|
Zhang Shu‑guang.Theoretical study on the operation mechanism of scale and corrosion inhibitors[D].Nanjing:Nanjing University of Science & Technology,2006.
|
13 |
Zhang C X, Qiao Q Q, Piper J,et al.Assessment of heavy metal pollution from a Fe‑smelting plant in urban river sediments using environmental magnetic and geochemical methods[J].Environmental Pollution,2011,159(10):3057-3070.
|
14 |
Hu B F, Shao S, Ni H,et al.Current status,spatial features,health risks,and potential driving factors of soil heavy metal pollution in China at province level[J].Environmental Pollution,2020,266(3):114-126.
|
15 |
张泽志,韩春亮,李成未.响应面法在试验设计与优化中的应用[J].河南教育学院学报(自然科学版),2011,20(4):49-56.
|
|
Zhang Ze‑zhi, Han Chun‑liang, Li Cheng‑wei.Application of response surface method in experimental design and optimization[J].Journal of Henan Institute of Education (Natural Science Edition),2011,20(4):49-56.
|
16 |
Mukhopadhyay S, Mukherjee S, Adnan N F,et al.Ammonium‑based deep eutectic solvents as novel soil washing agent for lead removal[J].Chemical Engineering Journal,2016,294(3):316-322.
|
17 |
Guan Q Y, Zhao R, Pan N H,et al.Source apportionment of heavy metals in farmland soil,China:comparison of three receptor models[J].Journal of Cleaner Production,2019,237(10):177-192.
|
18 |
Deng M H, Zhu Y W, Shao K,et al.Metals source apportionment in farmland soil and the prediction of metal transfer in the soil‑rice‑human chain[J].Journal of Environmental Management,2020,260:92-101.
|
19 |
Toth G, Hermann T, Da Silva M R,et al.Heavy metals in agricultural soils of the European Union with implications for food safety[J].Environment International,2016,88(5):299-309.
|
20 |
Shahid M, Xiong T, Castrec‑rouelle M,et al.Water extraction kinetics of metals,arsenic and dissolved organic carbon from industrial contaminated poplar leaves[J].Journal of Environmental Sciences,2013,12:9-27.
|
21 |
王玉军,刘存,周东美.客观地看待我国耕地土壤环境质量的现状——关于《全国土壤污染状况调查公报》中有关问题的讨论和建议[J].农业环境科学学报,2014,33(8):95-103.
|
|
Wang Yu‑jun, Liu Cun, Zhou Dong‑mei.A critical view on the status quo of the farmland soil environmental quality in China:discussion and suggestion of relevant issues on Report on the national general survey of soil contamination [J].Journal of Agro‑Environment Science,2014,33(8):95-103.
|
22 |
North A E, Sarpong‑Kumankomah S, Bellavie A R,et al.Environmentally relevant concentrations of aminopolycarboxylate chelating agents mobilize Cd from humic acid[J].Journal of Environmental Sciences,2017,57(1):249-257.
|
23 |
Schmidt C K, Brauch H J.Occurrence,fate and relevance of aminopolycarboxylate chelating agents in the Rhine Basin,Germany[J].The Rhine,2005,59(2):685-691.
|
24 |
Tsang D, Yip T, Lo I.Kinetic interactions of EDDS with soils.2.Metal‑EDDS complexes in uncontaminated and metal contaminated soils[J].Environmental Science & Technology,2009,43(3):837-842.
|
25 |
Zhang W H, Tsang D, Lo I.Removal of Pb and MDF from contaminated soils by EDTA‑ and SDS‑enhanced washing[J].Chemosphere,2007,66(11):2025-2034.
|