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利用粘粒矿物修复重金属污染农业土壤研究进展
引用本文:XU Yi,LIANG Xuefeng,XU Yingming,QIN Xu,HUANG Qingqing,WANG Lin,SUN Yuebing. 利用粘粒矿物修复重金属污染农业土壤研究进展[J]. 土壤圈, 2017, 27(2): 193-204. DOI: 10.1016/S1002-0160(17)60310-2
作者姓名:XU Yi  LIANG Xuefeng  XU Yingming  QIN Xu  HUANG Qingqing  WANG Lin  SUN Yuebing
基金项目:China(2016-szjj-wrxf-lxf),the National Natural Science Foundation of China(414-01362),the Funds for Science and Technology Innovation Project from the Chinese Academy of Agricultural Sciences(CAAS-XTCX-2016018)
摘    要:Heavy metal contamination of agricultural soils poses risks and hazards to humans.The remediation of heavy metal-polluted soils has become a hot topic in environmental science and engineering.In this review,the application of clay minerals for the remediation of heavy metal-polluted agricultural soils is summarized,in terms of their remediation effects and mechanisms,influencing factors,and future focus.Typical clay minerals,natural sepiolite,palygorskite,and bentonite,have been widely utilized for the in-situ immobilization of heavy metals in soils,especially Cd-polluted paddy soils and wastewater-irrigated farmland soils.Clay minerals are able to increase soil pH,decrease the chemical-extractable fractions and bioavailability of heavy metals in soils,and reduce the heavy metal contents in edible parts of plants.The immobilization effects have been confirmed in field-scale demonstrations and pot trials.Clay minerals can improve the environmental quality of soils and alleviate the hazards of heavy metals to plants.As main factors affecting the immobilization effects,the pH and water condition of soils have drawn academic attention.The remediation mechanisms mainly include liming,precipitation,and sorption effects.However,the molecular mechanisms of microscopic immobilization are unclear.Future studies should focus on the long-term stability and improvement of clay minerals in order to obtain a better remediation effect.

关 键 词:bentonite  bioavailability  immobilization  liming effect  palygorskite  sepiolite  soil pH
收稿时间:2016-07-27
修稿时间:2017-01-23

Remediation of heavy metal-polluted agricultural soils using clay minerals: A review
XU Yi,LIANG Xuefeng,XU Yingming,QIN Xu,HUANG Qingqing,WANG Lin and SUN Yuebing. Remediation of heavy metal-polluted agricultural soils using clay minerals: A review[J]. Pedosphere, 2017, 27(2): 193-204. DOI: 10.1016/S1002-0160(17)60310-2
Authors:XU Yi  LIANG Xuefeng  XU Yingming  QIN Xu  HUANG Qingqing  WANG Lin  SUN Yuebing
Affiliation:College of Resources and Environment,Hunan Agricultural University,Changsha 410128(China)
Abstract:Heavy metal contamination of agricultural soils poses risks and hazards to humans.The remediation of heavy metal-polluted soils has become a hot topic in environmental science and engineering.In this review, the application of clay minerals for the remediation of heavy metal-polluted agricultural soils is summarized, in terms of their remediation effects and mechanisms, influencing factors, and future focus.Typical clay minerals, natural sepiolite, palygorskite, and bentonite, have been widely utilized for the in-situ immobilization of heavy metals in soils, especially Cd-polluted paddy soils and wastewater-irrigated farmland soils.Clay minerals are able to increase soil pH, decrease the chemical-extractable fractions and bioavailability of heavy metals in soils, and reduce the heavy metal contents in edible parts of plants.The immobilization effects have been confirmed in field-scale demonstrations and pot trials.Clay minerals can improve the environmental quality of soils and alleviate the hazards of heavy metals to plants. As main factors affecting the immobilization effects, the pH and water condition of soils have drawn academic attention.The remediation mechanisms mainly include liming, precipitation, and sorption effects. However, the molecular mechanisms of microscopic immobilization are unclear.Future studies should focus on the long-term stability and improvement of clay minerals in order to obtain a better remediation effect.
Keywords:bentonite   bioavailability   immobilization   liming effect   palygorskite   sepiolite   soil pH
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