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使用镁硅酸盐浸渍的棕榈壳废粉活性炭去除铅和双酚 A:单污染物和双污染物吸附的比较研究。

Removal of lead and bisphenol A using magnesium silicate impregnated palm-shell waste powdered activated carbon: Comparative studies on single and binary pollutant adsorption.

机构信息

Department of Civil Engineering, Faculty of Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia.

Department of Civil and Environmental Engineering, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Ecotoxicol Environ Saf. 2018 Feb;148:142-151. doi: 10.1016/j.ecoenv.2017.10.025. Epub 2017 Nov 6.

DOI:10.1016/j.ecoenv.2017.10.025
PMID:29040822
Abstract

In this work, palm shell waste powder activated carbon coated by magnesium silicate (PPAC-MS) were synthesized by the impregnation of magnesium silicate (MgSiO) using economical material (silicon dioxide powder) via mild hydrothermal approach for the first time. As an effective adsorbent, PPAC-MS simultaneously removes BPA and Pb(II) in single and binary mode. Surprisingly, PPAC-MS exhibited a homogeneous thin plate mesh-like structure, as well as meso- and macropores with a high surface area of 772.1mg. Due to its specific morphological characteristics, PPAC-MS had adsorption capacities of Pb(II) as high as 419.9mgg and 408.8mgg in single mode and binary mode based on Freudliuch isotherm model while those for BPA by PPAC-MS were 168.4mgg and 254.7mgg for single mode and binary modes corresponding to Langmuir isotherm model. Experiment results also indicated that the synergistic removal of BPA occurred because the precipitation process of Pb(II) leads to the co-precipitation of BPA with Pb(OH) compound. PPAC-MS showed a good reusability for 5 regeneration cycles using Mg(II) solution followed by thermal treatment. Overall, PPAC-MS has a high potential in the treatment process for wastewater containing both toxic heavy metals and emerging pollutants due to its high sorption capacities and reusability.

摘要

在这项工作中,首次通过温和水热法,使用经济的硅酸钠粉末浸渍法,用镁硅酸盐(MgSiO)对棕榈壳废粉活性炭(PPAC-MS)进行了涂层处理。作为一种有效的吸附剂,PPAC-MS 可以同时在单一和二元模式下去除 BPA 和 Pb(II)。令人惊讶的是,PPAC-MS 呈现出均匀的薄片状网格结构,以及具有高表面积 772.1mg 的中孔和大孔。由于其特殊的形态特征,根据 Freundlich 等温模型,PPAC-MS 在单一模式和二元模式下对 Pb(II)的吸附容量高达 419.9mgg 和 408.8mgg,而根据 Langmuir 等温模型,PPAC-MS 对 BPA 的吸附容量分别为 168.4mgg 和 254.7mgg。实验结果还表明,由于 Pb(II)的沉淀过程导致 BPA 与 Pb(OH)化合物共沉淀,因此发生了 BPA 的协同去除。使用 Mg(II)溶液进行 5 次再生循环后,再进行热处理,PPAC-MS 表现出良好的可重复使用性。总的来说,由于其高吸附能力和可重复使用性,PPAC-MS 在处理含有有毒重金属和新兴污染物的废水方面具有很高的潜力。

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