Evaluation of Nanotechniques and Conventional Techniques for the Removal of Dioxins

Vaishali V. Shahare, R. Grover, S. Meena
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Abstract

The persistent dioxins/furans has caused a worldwide concern as they influence the human health. Recent research indicates that nonmaterial may prove effective in the degradation of Dioxins/furans. The nanomaterials are very reactive owing to their large surface area to volume ratio and large number of reactive sites. However, nanotechnology applications face both the challenges and the opportunities to influence the area of environmental protection. i) To study the impact of oil mediated UV-irradiations on the removal of 2,3,7,8-TCDD, 2,3,7,8-TCDF, OCDD and OCDF in simulated soil samples. ii) To compare the conventional treatment methods with the modern available nanotechniques for the removal of selected Dioxins/furans from soil samples. The present work has investigated an opportunity of the degradation of tetra and octachlorinated dioxins and furans by using oil mediated UV radiations with subsequent extraction of respective dioxins/furans from soils. The results have been compared with the available nanotechniques. The dioxin congeners in the simulated soil sample showed decrease in concentration with the increase in the exposure time and intensity of UV radiations. The dechlorination of PCDD/Fs using palladized iron has been found to be effective. Both the conventional methods and nanotechnology have a dramatic impact on the removal of Dioxins/furans in contaminated soil. However, the nanotechniques are comparatively costlier and despite the relatively high rates of PCDDs dechlorination by Pd/nFe, small fraction of the dioxins are recalcitrant to degradation over considerable exposure times.
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纳米技术与传统技术对二恶英的去除效果评价
持久性二恶英/呋喃因影响人类健康而引起了全世界的关注。最近的研究表明,非物质在二恶英/呋喃的降解中可能是有效的。由于纳米材料具有较大的表面积体积比和大量的活性位点,因此具有很强的活性。然而,纳米技术的应用面临着影响环境保护领域的挑战和机遇。i)研究油介导紫外线照射对模拟土壤样品中2,3,7,8- tcdd、2,3,7,8- tcdf、OCDD和OCDF去除的影响。ii)比较传统处理方法与现代可用的纳米技术对土壤样品中所选二恶英/呋喃的去除效果。本工作研究了利用油介导的紫外线辐射降解四氯和八氯二恶英和呋喃的可能性,并随后从土壤中分别提取二恶英/呋喃。结果与现有的纳米技术进行了比较。模拟土壤样品中二恶英同系物的浓度随紫外线照射时间和强度的增加而降低。钯化铁对PCDD/Fs的脱氯效果较好。传统方法和纳米技术对污染土壤中二恶英/呋喃的去除效果显著。然而,纳米技术相对昂贵,尽管Pd/nFe对pcdd的脱氯率相对较高,但一小部分二恶英在相当长的暴露时间内难以降解。
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