Chromium Speciation and Agricultural Soil Contamination in the Surrounding Tannery Regions of Walajaphet, Vellore District, Southern India

S. M., S. V., M. M, S. U, Dhevagi P, C. T, Dinesh G K, K. P
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引用次数: 3

Abstract

The emerging environmental problem in the tanning industry is the disposal of chromium-contaminated sludge in the soil. In the Walajapet Taluk of the Vellore District, the distribution and mobility of chromium in the soils and sludge surrounding the tannery waste disposal region were explored. This paper presents soil contamination of agricultural lands located in the SIPCOT Industrial complex near Walajapet in Vellore District, India. 64 soil samples were collected from 15 different villages, and the soil samples were analyzed for pH, EC, total chromium, hexavalent, and trivalent chromium. Studies were carried out to find the chromium contamination of the agricultural lands due to industrial effluents. It is found that 75 % of the agricultural soil samples were highly contaminated, posing a risk to agricultural lands, based on the comparison of chromium in the soil with WHO standards. The majority of the soil samples (>80%) from the locations exhibited high Cr (>200 mg kg-1) concentrations that exceeded the maximum permissible limit. Furthermore, soil samples taken near tanneries revealed that tannery effluent has a significant impact. The facts strongly demonstrate the existence of hazardous chromium, resulting in severe deterioration of agricultural land. As a result, developing an effective plan and implementing a suitable remediation technique to address the heavy metals contamination problem is critical.
铬的形态和农业土壤污染在周围的制革厂地区的瓦拉贾菲特,韦洛区,印度南部
制革工业中新出现的环境问题是土壤中铬污染污泥的处理。在Vellore地区的Walajapet Taluk,研究了铬在制革厂废物处置区周围土壤和污泥中的分布和流动性。本文介绍了印度Vellore区Walajapet附近SIPCOT工业园区的土壤污染情况,从15个不同的村庄收集了64个土壤样品,并对土壤样品的pH、EC、总铬、六价铬和三价铬进行了分析。对工业废水对农田铬污染进行了研究。根据将土壤中的铬含量与世卫组织标准进行比较,发现75%的农业土壤样本受到高度污染,对农业用地构成风险。绝大多数土壤样品(>80%)的Cr含量均超过最大允许限量(>200 mg kg-1)。此外,在制革厂附近采集的土壤样本显示,制革厂的废水有重大影响。事实有力地证明了有害铬的存在,导致了农业用地的严重退化。因此,制定有效的计划和实施合适的修复技术来解决重金属污染问题至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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