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Effect of heavy metals on pH buffering capacity and solubility of Ca, Mg, K, and P in non-spiked and heavy metal-spiked soils

机译:重金属对非加标和加标土壤中pH缓冲能力和Ca,Mg,K和P溶解度的影响

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In many parts of the world, soil acidification and heavy metal contamination has become a serious concern due to the adverse effects on chemical properties of soil and crop yield. The aim of this study was to investigate the effect of pH (in the range of 1 to 3 units above and below the native pH of soils) on calcium (Ca), magnesium (Mg), potassium (K), and phosphorus (P) solubility in non-spiked and heavy metal-spiked soil samples. Spiked samples were prepared by cadmium (Cd), copper (Cu), nickel (Ni), and zinc (Zn) as chloride salts and incubating soils for 40 days. The pH buffering capacity (pHBC) of each sample was determined by plotting the amount of H+ or OH- added (mmol kg(-1)) versus the related pH value. The pHBC of soils ranged from 47.1 to 1302.5 mmol kg(-1) for non-spiked samples and from 45.0 to 1187.4 mmol kg(-1) for spiked soil samples. The pHBC values were higher in soil 2 (non-spiked and spiked) which had higher calcium carbonate content. The results indicated the presence of heavy metals in soils generally decreased the solution pH and pHBC values in spiked samples. In general, solubility of Ca, Mg, and K decreased with increasing equilibrium pH of non-spiked and spiked soil samples. In the case of P, increasing the pH to about 7, decreased the solubility in all soils but further increase of pH from 7, enhanced P solubility. The solubility trends and values for Ca, Mg, and K did not differed significantly in non-spiked and spiked samples. But in the case of P, a reduction in solubility was observed in heavy metal-spiked soils. The information obtained in this study can be useful to make better estimation of the effects of soil pollutants on anion and cation solubility from agricultural and environmental viewpoints.
机译:在世界许多地方,由于对土壤化学性质和农作物产量的不利影响,土壤酸化和重金属污染已成为严重问题。这项研究的目的是研究pH(在土壤天然pH值上下1到3个单位的范围内)对钙(Ca),镁(Mg),钾(K)和磷(P )在非加标和重金属加标土壤样品中的溶解度。加标样品由镉(Cd),铜(Cu),镍(Ni)和锌(Zn)制成氯化物盐,并在土壤中孵育40天。通过将H +或OH-的添加量(mmol kg(-1))对相关的pH值作图来确定每个样品的pH缓冲能力(pHBC)。非加标样品的土壤pHBC范围为47.1至1302.5 mmol kg(-1),加标土壤样品的pHBC范围为45.0至1187.4 mmol kg(-1)。在碳酸钙含量较高的土壤2(未加标和加标)中,pHBC值较高。结果表明,土壤中重金属的存在通常会降低加标样品中溶液的pH和pHBC值。通常,Ca,Mg和K的溶解度随未加标和加标土壤样品的平衡pH值增加而降低。对于P而言,将pH值提高到大约7会降低在所有土壤中的溶解度,但将pH从7进一步提高会提高P的溶解度。在未加标和加标样品中,Ca,Mg和K的溶解度趋势和值没有显着差异。但在P的情况下,在重金属掺入的土壤中发现溶解度降低。从农业和环境的角度来看,本研究中获得的信息可用于更好地估算土壤污染物对阴离子和阳离子溶解度的影响。

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