参考文献/References:
[1]靳琪,高红,岳波,等. 村镇生活垃圾重金属含量及其来源分析[J]. 环境科学,2018,39(9):4385-4392.
[2]李玲,王颋军,唐跃刚,等. 封场垃圾填埋场的治理与城市土地可持续利用[J]. 环境卫生工程,2013,21(3):20-22,25.
[3]SONG Q B, LI J H. Environmental effects of heavy metals derived from the e-waste recycling activities in China: a systematic review[J]. Waste Management, 2014, 34(12): 2587-2594.
[4]王振中,张友梅,邓继福,等. 重金属在土壤生态系统中的富集及毒性效应[J]. 应用生态学报,2006,17(10):1948-1952.
[5]NORINI M P,THOUIN H,MIARD F,et al. Mobility of Pb, Zn, Ba, As and Cd toward soil pore water and plants (willow and ryegrass) from a mine soil amended with biochar[J]. Journal of Environmental Management,2019,232:117-130.
[6]白珊,倪幸,杨瑗羽,等. 不同原材料生物炭对土壤重金属Cd、Zn的钝化作用[J]. 江苏农业学报,2021,37(5):1199-1205.
[7]解晓露,袁毳,朱晓龙,等. 中碱性镉污染农田原位钝化修复材料研究进展[J]. 土壤通报,2018,49(5):1254-1260.
[8]LIANG X F,XU Y,XU Y M,et al. Two-year stability of immobilization effect of sepiolite on Cd contaminants in paddy soil[J]. Environmental Science and Pollution Research,2016,23(13):12922-12931.
[9]韩君,梁学峰,徐应明,等. 黏土矿物原位修复镉污染稻田及其对土壤氮磷和酶活性的影响[J]. 环境科学学报,2014,34(11):2853-2860.
[10]纪艺凝,徐应明,王农,等. 贝壳粉对农田土壤镉污染钝化修复效应[J]. 农业资源与环境学报,2020,37(2):233-240.
[11]宋功宝,万朴,彭同江,等. 海泡石的化学成分研究[J]. 西南工学院学报,1997(3):40-44.
[12]干方群,杭小帅,刘云,等. 苏南地区膨润土物理化学和矿物学特性研究[J]. 土壤学报,2018,55(4):945-954.
[13]张莉,赵保卫,李瑞瑞. 沸石改良土壤的研究进展[J]. 环境科学与管理,2012,37(1):39-43.
[14]吴玉俊,周航,杨文弢,等. 组配改良剂对污染稻田中Pb、Cd、Cu和Zn钝化效果持续性比较[J]. 环境科学,2016,37(7):2791-2798.
[15]郭炜辰,杜立宇,梁成华,等. 天然与改性沸石对土壤Cd污染赋存形态的影响研究[J]. 土壤通报,2019,50(3):719-724.
[16]林海,靳晓娜,董颖博,等. 膨润土对不同类型农田土壤重金属形态及生物有效性的影响[J]. 环境科学,2019,40(2):945-952.
[17]张金秀,何永美,李博,等. 三种黏土矿物对蚕豆生长和重金属含量的影响[J]. 农业环境科学学报,2019,38(4):845-854.
[18]朱维,刘代欢,陈建清,等. 黏土矿物在土壤重金属污染中的应用研究进展[J]. 土壤通报,2018,49(2):499-504.
[19]YU M,ZHANG J,TIAN Y. Change of heavy metal speciation, mobility, bioavailability, and ecological risk during potassium ferrate treatment of waste-activated sludge[J]. Environmental Science and Pollution Research,2018,25(14):13569-13578.
[20]GUSIATIN Z M,KLIMIUK E. Metal (Cu, Cd and Zn) removal and stabilization during multiple soil washing by saponin[J]. Chemosphere,2012,86(4):383-391.
[21]鲁如坤. 土壤农业化学分析方法[M]. 北京:中国农业科技出版社,1999:156-157.
[22]KIM H T,LEE T G. A simultaneous stabilization and solidification of the top five most toxic heavy metals (Hg, Pb, As, Cr, and Cd)[J]. Chemosphere,2017,178:479-485.
[23]NEMATI K,BAKAR N K A,ABAS M R,et al. Speciation of heavy metals by modified BCR sequential extraction procedure in different depths of sediments from Sungai Buloh, Selangor, Malaysia[J]. Journal of Hazardous Materials,2011,192:402-410.
[24]龙加洪,谭菊,吴银菊,等. 土壤重金属含量测定不同消解方法比较研究[J]. 中国环境监测,2013,29(1):123-126.
[25]关松荫. 土壤酶及其研究法[M]. 北京:农业出版社,1986.
[26]SEO B H,KIM H S,KWON S,et al. Heavy metal accumulation and mobility in a soil profile depend on the organic waste type applied[J]. Journal of Soils and Sediments,2019,19(2):822-829.
[27]朱奇宏,黄道友,刘国胜,等. 石灰和海泡石对镉污染土壤的修复效应与机理研究[J]. 水土保持学报,2009,23(1):111-116.
[28]杨秀敏,任广萌,潘宇. 海泡石修复重金属Pb、Zn、Cd复合污染的土壤[J]. 黑龙江科技学院学报,2011,21(4):268-272.
[29]王林,徐应明,孙扬,等. 海泡石及其复配材料钝化修复镉污染土壤[J]. 环境工程学报,2010,4(9):2093-2098.
[30]GEORGIEV D,BOGDANOV B,HRISTOV Y,et al. The removal of Cu (Ⅱ) ions from aqueous solutions on synthetic zeolite NaA[J]. World Academy of Science, Engineering and Technology,2012,64(4):751-755.
[31]LI H,SHI W Y,SHAO H B,et al. The remediation of the lead-polluted garden soil by natural zeolite[J]. Journal of Hazardous Materials,2009,169(1/2/3):1106-1111.
[32]SUN Y B,LI Y,XU Y M,et al. In situ stabilization remediation of cadmium (Cd) and lead (Pb) co-contaminated paddy soil using bentonite[J]. Applied Clay Science,2015,105/106:200-206.
[33]谢飞, 梁成华, 孟庆欢, 等. 添加天然沸石和石灰对土壤镉形态转化的影响[J].环境工程学报, 2014, 8(8): 3505-3510.
[34]徐奕,赵丹,徐应明,等. 膨润土对轻度镉污染土壤钝化修复效应研究[J].农业资源与环境学报,2017, 34(1): 38-46.
[35]孙约兵,王朋超,徐应明,等. 海泡石对镉-铅复合污染钝化修复效应及其土壤环境质量影响研究[J].环境科学, 2014, 35(12): 4720-4726.
[36]万红友,王俊凯,张伟. 土壤微塑料与重金属、持久性有机污染物和抗生素作用影响因素综述[J].农业资源与环境学报,2022,39(4):643-650.
[37]胡婷婷,陈家玮.土壤中微塑料的吸附迁移及老化作用对污染物环境行为的影响研究进展[J].岩矿测试, 2022, 41(3): 353-363.
[38]LI Y Q, ZHAO C X, YAN C R, et al. Effects of agricultural plastic film residues on transportation and distribution of water and nitrate in soil[J]. Chemosphere, 2020, 242: 125131.
[39]陈琪,朱润良,葛飞,等. 两种典型粘土矿物对狐尾藻镉毒害效应的缓解作用[J]. 环境化学,2017,36(7):1596-1601.