首页> 外文期刊>Fresenius environmental bulletin >EFFECTS OF COAL GANGUE HILL ON HEAVY METAL POLLUTION CHARACTERISTICS AND SOIL ENZYME ACTIVITIES IN FARMLAND SOILS
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EFFECTS OF COAL GANGUE HILL ON HEAVY METAL POLLUTION CHARACTERISTICS AND SOIL ENZYME ACTIVITIES IN FARMLAND SOILS

机译:煤矸石山对农田土壤重金属污染特征及土壤酶活性的影响

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In order to understand the heavy metal pollution of a coal gangue hill in Qufu city on the surrounding farmland soil and its effect on soil enzyme activity,the contents of seven heavy metal elements Cr,Pb,Hg,Zn,Cu,Ni and Cd,as well as the activities of catalase,dehydrogenase,sucrase,invertase and urease were determined by sampling points around the coal gangue hill.The pollution characteristics and ecological risks of heavy metals in this area as well as their effects on enzyme activities were evaluated.The results show that the average contents of Cr,Pb,Hg,Zn,Cu,Ni and Cd are 85.951,57.714,17.847,111.986,51.699,50.197 and 1.748 mg/kg respectively.A variety of evaluation methods show that Hg exceeds the standard seriously,which is the main pollutant in the region,Cd is the secondary pollutant,and other heavy metals have not reached the pollution level,thus causing little ecological impact.LSD multiple comparison results show that with the increase of distance around the coal gangue pile,the enzyme activity difference is significantly different,which shows that the existence of the coal gangue pile has an impact on the soil enzyme activity,and this impact is different for different enzymes.Through correlation analysis,the enzyme activity has a significant correlation with Hg and Cd,but not with Cr,Zn,Cu and Ni,indicating that Hg and Cd are the main heavy metal elements that affect the enzyme activity of the soil in this region.
机译:为了了解Qufu City在周围农田土壤中煤矸石山的重金属污染及其对土壤酶活性的影响,七种重金属元素Cr,Pb,Hg,Zn,Cu,Ni和Cd的含量。除了煤矸石山周围的取样点,确定了过氧化氢酶,脱氢酶,蔗糖酶,转化酶和脲酶的活性,评估了该地区重金属的污染特征和生态风险以及它们对酶活性的影响。结果表明,Cr,Pb,Hg,Zn,Cu,Ni和Cd的平均含量分别为85.951,57.714,17.847,111.986,51.699,50.197和1.748 mg / kg。各种评价方法表明,Hg超出了标准严重的是,这是该地区的主要污染物,CD是继发污染物,而其他重金属尚未达到污染水平,从而导致少量的生态影响结果表明,随着煤矸石PIL周围的距离增加,略有距离e,酶活性差异显着不同,这表明煤矸石桩的存在对土壤酶活性产生影响,并且这种影响对于不同的酶而言是不同的。关联分析,酶活性与酶活性具有显着的相关性与Hg和Cd,但不具有Cr,Zn,Cu和Ni,表明Hg和Cd是影响该区域中土壤酶活性的主要重金属元素。

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