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作 者:杨爱江[1] 吴维[1] 袁旭 莫开燕[1] 吴永贵[1]
机构地区:[1]贵州大学资源与环境工程学院,贵州贵阳550003 [2]贵州省农产品检测中心,贵州贵阳550001
出 处:《贵州农业科学》2012年第3期190-193,共4页Guizhou Agricultural Sciences
基 金:国家自然科学基金"高氟高砷煤矿区水环境复合污染生态毒性效应及其机理研究"(20977020);贵州省自然科学基金"喀斯特地区矿山典型固废有毒污染物的化学特征及生态毒理效应研究"[黔科合J字(2009)2034];贵州大学211重点学科建设项目"喀斯特矿山环境污染的生态效应研究"[KST2009-02]
摘 要:为综合评估电解锰废渣堆场在酸雨作用下溶出的重金属对周边农田造成的环境污染程度,采用定点取样和实验室分析相结合的方法对废渣堆场周边不同范围土壤进行了现场污染调查和采样分析,用不同pH溶液模拟酸雨对电解锰废渣进行浸出和淋溶试验。结果表明:渣场周边5m处土壤中Se、Cr、Zn、Ni、Pb含量均高于电解锰废渣与底泥;在渣场50m处农田土壤中Mn含量为287mg/kg,超过《土壤环境质量标准》中规定阈值250mg/kg;Cr浓度为233.7mg/kg,已接近标准规定的阈值250mg/kg。Mn、Se、Zn、Cr、Ni、Pb等重金属的浸出浓度随pH的升高而降低,pH为4.5时,浸出液中Mn、Se浓度达到729mg/kg和14.05mg/kg,分别超过《污水综合排放标准》中规定的阈值552倍和10.13倍;在酸雨淋溶前期约100min内,电解锰废渣中重金属随淋溶液溶出明显,酸雨pH值的降低会加剧电解锰废渣对周边环境的影响。To comprehensively assess the heavy metal pollution on the farmland around Electrolytic Manganese Residue(EMR)in the role of acid rain,the hazards of these heavy metals on the environment were investigated,the effects of simulation acid rain on the heavy metal leaching and eluviations were also analyzed.The results showed that the concentrations of heavy metals around EMR(less than 5 meters)were higher than manganese waste and sediment.Compared with the Soil Environmental Quality Standards,the concentrations of Mn and Cr was highly up to 287 mg/kg and 233.7 mg/kg on the farmland 50 m away from EMR,the former exceeded its threshold and the latter close to the threshold too.The results showed that the released concentration of the heavy metals(Mn、Se、Zn、Cr、Ni、Pb) in EMR increased with the decrease of rainfall pH.The concentrations of Mn and Se both exceeded their thresholds in the Integrated Wastewater Discharge Standard when pH was 4.5,the concentrations of Mn and Se exceeded 552(729 mg/kg) and 10.13(14.05 mg/kg) times of their standard.About 100 min in the early leaching of acid rain,the leaching of the heavy metals in EMR were obvious.Contamination of the heavy metal around EMR increased along with pH reduction.
分 类 号:S19[农业科学—农业基础科学]
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