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Efficient removal of lead and arsenic using macromolecule-carbonized rice husks

机译:使用大分子碳化稻壳有效地除去铅和砷

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摘要

The adsorption process using inexpensive adsorbents is one of the methods to remove contaminants from aqueous solutions. Biomass porous carbon based materials are among the most widely used adsorbents in this field. Rice husk is a bio-based adsorbent material for pollutant removal. In this study, the porous carbon material obtained from the rice husk was used for the adsorptive removal of lead (Pb) and arsenic (As) from aqueous solutions. Silica was removed from rice husk structure through the one-step reaction using PTFE. The morphological and crystallographic characteristics of the adsorbent surface were determined by scanning electron microscopy (SEM) and X-ray diffraction (XRD) techniques. The removal efficiency was investigated under different conditions of pH (3–9), contact time (3–90min), adsorbent amount (0.5–6 g/l) and initially adsorbed concentration (10–100 μg/l) by changing the parameters in the adsorption reactions. The Response Surface Method (RSM), a Box-Behnken design (BBD), was used to optimize adsorption of Lead and Arsenic by Rice husk. The removal efficiency was finally calculated using analysis of variance. According to the adsorption analysis results, the removal efficiency of Pb and As in aqueous solutions increased (up to 97%, 85% for Lead and Arsenic) under optimum conditions.
机译:使用廉价吸附剂的吸附过程是从水溶液中去除污染物的方法之一。生物质多孔碳基材料是该领域最广泛使用的吸附剂之一。稻壳是一种基于生物的吸附材料,用于污染物去除。在这项研究中,从稻壳中获得的多孔碳材料用于从水溶液中吸附的铅(Pb)和砷(AS)的吸附除去。通过使用PTFE的一步反应从稻壳结构中除去二氧化硅。通过扫描电子显微镜(SEM)和X射线衍射(XRD)技术来测定吸附表面的形态学和晶体特性。通过改变参数,在不同的pH(3-9),接触时间(3-90min),吸附量(0.5-6g / L),吸附量(0.5-6g / L)和最初吸附浓度(10-100μg/ L)的不同条件下进行去除效率在吸附反应中。响应面法(RSM),一个Box-Behnken设计(BBD),用于优化稻壳的引线和砷的吸附。最终使用方差分析来计算去除效率。根据吸附分析结果,在最佳条件下,Pb的去除效率和含水溶液中的含量高达(铅和砷的97%,85%)。

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