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蚯蚓对不同厚度复垦土壤中重金属生物有效性的影响
引用本文:鲁福庆,王兴明,储昭霞,王运敏,范廷玉,董众兵,徐晓平,柏鑫. 蚯蚓对不同厚度复垦土壤中重金属生物有效性的影响[J]. 生态学杂志, 2022, 0(1): 124-131
作者姓名:鲁福庆  王兴明  储昭霞  王运敏  范廷玉  董众兵  徐晓平  柏鑫
作者单位:安徽理工大学地球与环境学院;金属矿山安全与健康国家重点实验室;皖江流域退化生态系统的恢复与重建省部共建协同创新中心;安徽省高潜水位矿区水土资源综合利用和生态保护工程实验室;安徽工程大学建筑工程学院;淮南师范学院生物工程学院
基金项目:国家重点研发计划“固废资源化”重点专项(2020YFC1908601);国家自然科学基金项目(51878004、51978001);中国工程院战略研究与咨询项目(2021-XZ-17);安徽省高校优秀青年骨干人才国内外访学研修项目(gxgwfx2019011);金属矿山安全与健康国家重点实验室开放基金项目(2020-JSKSSYS-02);安徽高校协同创新项目(GXXT-2020-075);安徽省高校优秀人才支持计划项目(gxyqZD2021129);安徽理工大学芜湖研究院研发专项(ALW2020YF08)资助。
摘    要:煤矸石充填复垦土壤理化状态和重金属水平能显著影响后续生态利用.为查明蚯蚓对矸石上不同厚度覆土中重金属(Cr、Cu、Pb和Zn)总量和有效态的影响,采用土柱实验,将蚯蚓接种到矸石上覆土,设置10、20、30、50、70 cm五种覆土厚度,通过测定不同厚度覆土pH、有机质(OM)、总氮(TN)、总磷(TP)、总钾(TK)和...

关 键 词:蚯蚓  复垦土壤  煤矸石  生态改良

Effects of earthworm on bioavailability of heavy metals in reclaimed soils with different thickness
LU Fu-qing,WANG Xing-ming,CHU Zhao-xia,WANG Yun-min,FAN Ting-yu,DONG Zhong-bing,XU Xiao-ping,BAI Xin. Effects of earthworm on bioavailability of heavy metals in reclaimed soils with different thickness[J]. Chinese Journal of Ecology, 2022, 0(1): 124-131
Authors:LU Fu-qing  WANG Xing-ming  CHU Zhao-xia  WANG Yun-min  FAN Ting-yu  DONG Zhong-bing  XU Xiao-ping  BAI Xin
Affiliation:(School of Earth and Environment,Anhui University of Science and Technology,Huainan 232001,Anhui,China;State Key Laboratory of Safety and Heafth for Metal Mines,Sinosteel Maanshan General Institute of Mining Research Company Limited,Maanshan 243071,Anhui,China;Collaborative Innovation Center of Recovery and Reconstruction of Degraded Ecosystem in Wanjiang Basin Cofounded by Anhui Province and Ministry of Education,Anhui Normal University,Wuhu 241000,Anhui,China;Engineering Laboratory of Comprehensive Utilization and Ecological Protection of Soil and Water Resources in High Diving Level Mining Area of Anhui Province,Huainan 232001,Anhui,China;College of Architecture and Urban Planning,Anhui Jianzhu University,Wuhu 241000,Anhui,China;School of Biological Engineering,Huainan Normal University,Huainan 232038,Anhui,China)
Abstract:The physicochemical properties and heavy metal level of the reclaimed soil filled with topsoil on coal gangue can significantly affect the subsequent ecological utilization.The purpose of this study was to explore the effects of earthworm on the total amount and available state of heavy metals(Cr,Cu,Pb,and Zn) in reclaimed soil with different topsoil thickness on gangue.Five thicknesses(10,20,30,50,and 70 cm) were adopted for soil column experiment.Earthworms were inoculated into reclaimed soil to investigate the ecological function of earthworms on the reclaimed soil.We measured pH,organic matter(OM),total nitrogen(TN),total phosphorus(TP),total potassium(TK),and heavy metals(Cr,Cu,Pb and Zn) contents in reclaimed soil.Within the overlying thickness of 10-70 cm,earthworm inoculation significantly reduced the pH of reclaimed soil to neutral.Compared with the control,soil OM was increased by 7.0%-13.5%,soil TN was increased by 7.5%-13.4%,TP was increased by less than 6.0%,and TK was increased by less than 2.0%.Therefore,earthworm had a good ecological improvement effect on OM and TN of the reclaimed soil.Furthermore,earthworm inoculation reduced the total amount of heavy metals and the contents of available heavy metals in reclaimed soil.The synergistic effect of earthworm and soil thickness significantly reduced the contents of total Pb and available Zn in the reclaimed soil.After inoculation of earthworms,the concentrations of total Cr,Pb and Zn,available Cr and Pb in reclaimed soil were mainly affected by TP,while the concentrations of total Cu and available Cu and Zn were mainly affected by TN.Thus,the behavior of heavy metals in reclaimed soil under earthworm inoculation was mainly influenced by TP and TN.As a result,inoculation of earthworm can improve the physical and chemical properties of reclaimed soil and reduce the concentration of heavy metals in reclaimed soil,thus producing positive ecological effects.Our results provide new ideas and methods for the reclamation of coal gangues.
Keywords:earthworm  reclamation soil  coal gangue  ecological improvement
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