城市生活垃圾填埋场污染土壤的健康评价

IF 5.4 Q2 ENGINEERING, ENVIRONMENTAL
Anna Kucherova, Tatiana Minnikova, Sergey Kolesnikov, Ekaterina Khrapai, Alina Nalivaychenko, Alexey Sherstnev
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引用次数: 0

摘要

城市固体废物填埋场的数量每年都在增加。本研究的目的是评价城市生活垃圾填埋场污染土壤的健康状况。考察了13个点:城市生活垃圾填埋场(第1-8位)、废弃田地(第9-11位)和耕地(第12-13位)。为评价土壤污染,计算了总污染指数(Zc)、污染负荷指数(PLE)、潜在生态风险(PERI)。研究了土壤物理、化学指标(pH、易溶盐含量、腐殖质含量、重金属总含量)和生物学指标(细菌总数、过氧化氢酶、转化酶和脱氢酶活性、萝卜根长和芽长)。采用土壤生物状态积分指标(IIBS)对不同生物指标进行组合。为了证实所得结果的可靠性和分析,采用了Tukey事后标准的单因素分析、Spearman标准的相关分析和主成分法的多因素分析的统计方法。按MPC/APC比值计算,土壤Cr污染超标18倍,Ni - 4倍,Cu - 45倍,Zn - 51倍,As - 5倍,Pb - 6倍。Zc和PLE数据显示,填埋区重金属污染程度高,PERI水平极高。过氧化氢酶和转化酶活性显著降低,细菌总数下降10 ~ 82%。过氧化氢酶活性是最具信息量和敏感性的生物学指标。研究结果表明,过氧化氢酶活性、根长、微生物总数等指标可用于固体垃圾填埋场及其周边土壤健康状况的监测和诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of the health of soils polluted by municipal solid waste landfill

Assessment of the health of soils polluted by municipal solid waste landfill
The number of landfills for municipal solid waste is growing every year. The aim of our study is to assess the health of soil polluted by municipal solid waste landfill. 13 points were examined: municipal solid waste landfill (No. 1–8), abandoned field (No. 9–11) and cropland (No. 12–13). To assess soil pollution, the following indicators were calculated: the total pollution index (Zc), pollution load index (PLE), potential ecological risk (PERI). Geobotanical description of the sites was investigated, physical, chemical (pH, the content of easily soluble salts, humus content, the gross content of heavy metals), and biological (the total number of bacteria, the activity of catalase, invertase, and dehydrogenases, the length of roots and shoots of radish) indicators were studied. The integral indicator of the biological state of the soil (IIBS) was used to combine different biological indicators. To confirm the reliability and analysis of the obtained results, statistical methods of univariate analysis of the Tukey's post-hoc criterion, correlation analysis using the Spearman's criterion and multivariate factor analysis using the principal components method were used. According to the MPC/APC ratio, soil pollution with Cr exceeded the control by 18 times, Ni — by 4 times, Cu — by 45 times, Zn — by 51 times, As — by 5 times, and Pb — by 6 times. The data of the Zc and PLE shows a high degree of pollution by heavy metals and an extremely high level of PERI the landfill area. There was a significant decrease in the activity of catalase and invertase and the total number of bacteria by 10–82%. The most informative and sensitive biological indicator was catalase activity. The data obtained by the study shows that the indicators of catalase activity, root length, and the total number of microorganisms can be used in monitoring and diagnosing the health of soils under solid waste landfills and the surrounding area.
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来源期刊
Journal of hazardous materials advances
Journal of hazardous materials advances Environmental Engineering
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