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Interrelationships of pollution load index, transfer factor, and concentration factor under the effect of sludge

机译:污泥作用下污染负荷指数,转移因子和浓度因子的相互关系

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A greenhouse experiment was conducted during 2010-2011. A complete randomized blocks design was used including seven treatment levels of sludge (tons per hectare), i.e., 0, 6, 12, 18, 24, 30, and "30+ treated wastewater", in four replications. Lettuce (Lactuca sativa L var longifolia) was chosen as a test plant. The purpose of the experiment was to study the relationships between soil Pollution Load Index, heavy metal transfer factor, and concentration factor and to determine optimum concentration factor values. The following were found: several mathematical relationships were established between the above parameters that could be used for the study of heavy metal accumulation in soils and plants under the effect of the applied sludge. They can be also used for the calculation of one of the above parameters as a function of the others. Based on the experimental data, the optimum concentration factor for several heavy metals were determined by multiple linear regression analysis, expressing the concentration factor as a function of the maximum dry lettuce matter yield, and of optimum/ minimum heavy metal content of plant dry matter. The mean value of the calculated concentration factor obtained for each separate metal was: Zn, 2.93; Cd, 0.39; Co, 1.47; and Ni, 0.52.
机译:在2010年至2011年期间进行了温室实验。使用完整的随机区组设计,包括七个处理水平的污泥(吨/公顷),即0、6、12、18、24、30和“ 30+处理的废水”,一式四份。选择莴苣(Lactuca sativa L var longifolia)作为试验植物。实验的目的是研究土壤污染负荷指数,重金属转移因子和浓度因子之间的关系,并确定最佳浓度因子值。发现以下结果:在上述参数之间建立了几种数学关系,这些关系可用于研究在施加污泥的作用下土壤和植物中重金属的积累。它们还可以根据其他参数用于计算以上参数之一。根据实验数据,通过多元线性回归分析确定了几种重金属的最佳浓度因子,该浓度因子表示为最大干生菜产量和植物干物质最佳/最小重金属含量的函数。对于每种单独的金属,计算得出的浓度因子的平均值为:Zn,2.93;镉0.39; Co 1.47; Ni为0.52。

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