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Development of regional standards for pollutants in the soil using biological parameters

机译:利用生物参数制定土壤污染物区域标准

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The development of regional or local maximum permissible concentration (MPC) for a pollutant in the soil requires the field or laboratory simulation of pollution. The experimental design should include the control (uncontaminated soil with the background concentration of the pollutant) and at least three treatments with different pollutant concentrations in the range between 2 and 10 background values. Experiments are performed in at least three replicates. Soil samples are taken 30 days after contamination. In each soil sample, six biological parameters are determined: total bacterial abundance, Azotobacter abundance, catalase activity, dehydrogenase activity, cellulolytic activity, and radish root length. Analyses are made in at least six replicates. From these biological parameters, the integrated biological index (IBI) of soil is calculated. For this purpose, the value of each parameter in the uncontaminated soil is taken as 100%, and its values in the contaminated soils are expressed as percentages. The mean values of six parameters for the contaminated treatments are determined. The obtained IBI values are expressed in percentages of the background. Then, a regression equation describing the decrease in IBI values as a function of pollutant concentration in the soil is derived. The pollutant concentration corresponding to the IBI decrease by 10% of the control, which indicates a disturbance of the holistic biogeocenotic functions of soil, is calculated from this equation.
机译:要确定土壤中污染物的区域或局部最大允许浓度(MPC),需要对污染进行现场或实验室模拟。实验设计应包括对照(污染背景浓度未污染的土壤)和至少三种处理方法,其污染物浓度应在2至10个背景值之间。实验至少进行三次重复。污染后30天采集土壤样品。在每个土壤样品中,确定了六个生物学参数:总细菌丰度,固氮细菌丰度,过氧化氢酶活性,脱氢酶活性,纤维素分解活性和萝卜根长。至少进行六次重复分析。根据这些生物学参数,计算土壤的综合生物学指数(IBI)。为此,将未污染土壤中每个参数的值视为100%,并将其在污染土壤中的值表示为百分比。确定受污染处理的六个参数的平均值。获得的IBI值以背景的百分比表示。然后,得出一个回归方程,该方程描述了IBI值的减少与土壤中污染物浓度的函数关系。由该方程计算出与IBI相对应的污染物浓度降低了对照的10%,这表明土壤的整体生物大地生物功能受到干扰。

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