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Role of Different Leaching Methods to Arrest the Transport of Ni~(2+)in Soil and Soil Amended with Nano Calcium Silicate

机译:用纳米硅酸钙进行不同浸出方法捕获土壤和土壤中Ni〜(2+)运输的作用

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Soils are known to retain heavy metals through a number of processes. Human exposure to highly nickel polluted environments has the potential to produce a variety of pathological effects. Some of them are skin allergies, fibrosis of lungs and cancers of the respiratory tracts. In this study four different leaching methods viz. ASTM D3987, Toxicity characteristics leaching procedure(TCLP), extended TCLP, and caged TCLP have been used to study the leaching behavior of Ni~(2+) on red soil and red soil amended with nano calcium silicate(NCS). It was found that as per ASTM D3987, Ni~(2+) with red soil was retained well in the short term and over a long term period the metal ion was released back. Red soil was amended with NCS and it was found that over a period of time the retention was satisfactory which proved that NCS was responsible for encapsulation of Ni~(2+) in its matrix. Extensive leaching tests were further performed; it was found that as per TCLP, extended TCLP and caged TCLP tests the retention of Ni~(2+) with amended soil was 88%, 90% and 94% better than soil respectively Hence it can be concluded that NCS amended soil is a prospective material to attenuate Ni~(2+) taking into consideration the long term effect of heavy metals on soils.
机译:已知土壤通过许多过程保留重金属。人类暴露于高度镍污染的环境有可能产生各种病理效果。其中一些是皮肤过敏,肺部蠕虫和呼吸道的癌症。在这项研究中,四种不同的浸出方法viz。 ASTM D3987,毒性特征浸出程序(TCLP),延长TCLP和笼养的TCLP已被用于研究Ni〜(2+)对用纳米硅酸钙(NCS)进行红壤和红壤的浸出行为。结果发现,根据ASTM D3987,在短期内并在短期内并在短期内保持镍氢镍(2+),金属离子释放回来。用NCS修正红壤,发现在一段时间内,保留令人满意,证明NCS负责将Ni〜(2+)封装在其基质中。进一步进行广泛的浸出试验;发现,根据TCLP,延长的TCLP和笼养的TCLP测试镍氢镍(2+)与修正的土壤的保留为88%,90%和94%,因此可以得出结论,NCS修正的土壤是一个考虑到重金属对土壤的长期影响,衰减尼〜(2+)的前瞻性材料。

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