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Hydrous Ferric Oxide Incorporated Diatomite for Remediation of Arsenic Contaminated Groundwater

机译:含水三氧化二铁结合硅藻土用于修复砷污染的地下水

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摘要

Two reactive media [zerovalent iron (ZVI, Fisher Fe~0) and amorphous hydrous ferric oxide (HFO)-incorporated porous, naturally occurring aluminum silicate diatomite [designated as Fe (25%)-diatomite]], were tested for batch kinetic, pH-controlled differential column batch reactors (DCBRs), in small- and large-scale column tests (about 50 and 900 mL of bed volume) with groundwater from a hazardous waste site containing high concentrations of arsenic (both organic and inorganic species), as well as other toxic or carcinogenic volatile and semivolatile organic compounds (VOC/SVOCs). Granular activated carbon (GAC) was also included as a reactive media since a permeable reactive barrier (PRB) at the subject site would need to address the hazardous VOC/SVOC contamination as well as arsenic. The groundwater contained an extremely high arsenic concentration (341 mg L~(-1)) and the results of ion chromatography and inductively coupled plasma mass spectrometry (IC-ICP-MS) analysis showed that the dominant arsenic species were arsenite (45.1%) and monomethyl arsenic acid (MMAA, 22.7%), while dimethyl arsenic acid (DMAA) and arsenate were only 2.4 and 1.3%, respectively. Based on these proportions of arsenic species and the initial As-to-Fe molar ratio (0.15 mol_(As) mol_(Fe)~(-1)), batch kinetic tests revealed that the sorption density (0.076 mol_(As) mol_(Fe)~(-1)) for Fe (25%)-diatomite seems to be less than the expected value (0.086 mol_(As) mol_(Fe)~(-1)) calculated from the sorption density data reported by Lafferty and Loeppert (Environ. Sci. Technol. 2005, 39, 2120-2127), implying that natural organic matters (NOMs) might play a significant role in reducing arsenic removal efficiency. The results of pH-controlled DCBR tests using different synthetic species of arsenic solution showed that the humic acid inhibited the MMAA removal of Fe (25%)-diatomite more than arsenite. The mixed system of GAC and Fe (25%)-diatomite increased the arsenic sorption speed to more than that of either individual media alone. This increase might be deduced by the fact that the addition of GAC could enhance arsenic removal performance of Fe (25%)-diatomite through removing comparably high portions of NOMs. Small- and large-scale column studies demonstrated that the empty bed contact time (EBCT) significantly affected sorpton capacities at breakthrough (C = 0.5 C_0) forthe Fe~0/sand (50/50, w/w) mixture, but not for GAC preloaded Fe (25%)-diatomite. In the large-scale column tests with actual groundwater conditions, the GAC preloaded Fe (25%)-diatomite effectively reduced arsenic to below 50 μg L~(-1) for 44 days; additionally, most species of VOC/SVOCs were also simultaneously attenuated to levels below detection.
机译:测试了两种反应介质[零价铁(ZVI,Fisher Fe〜0)和掺入无定形含水三氧化二铁(HFO)的多孔天然硅酸铝硅藻土[指定为铁(25%)-硅藻土]的批处理动力学, pH控制的差分柱间歇式反应器(DCBR),在小规模和大规模的柱测试(床体积约为50和900 mL)中,使用来自高浓度砷(有机物和无机物)的危险废物场中的地下水,以及其他有毒或致癌的挥发性和半挥发性有机化合物(VOC / SVOC)。颗粒状活性炭(GAC)也作为反应性介质包括在内,因为目标现场的渗透性反应性屏障(PRB)需要解决有害的VOC / SVOC污染以及砷。地下水中砷的含量极高(341 mg L〜(-1)),离子色谱和电感耦合等离子体质谱法(IC-ICP-MS)的分析结果表明,主要的砷是砷(45.1%)。砷和单甲基砷酸(MMAA,22.7%),而二甲基砷酸(DMAA)和砷酸盐分别仅为2.4%和1.3%。基于这些砷物种的比例和初始As-Fe摩尔比(0.15 mol_(As)mol_(Fe)〜(-1)),分批动力学测试表明吸附密度(0.076 mol_(As)mol_( Fe(25%)-硅藻土的Fe)〜(-1))似乎小于根据拉弗蒂(Lafferty)报告的吸附密度数据计算得出的预期值(0.086 mol_(As)mol_(Fe)〜(-1))。 Loeppert(Environ。Sci。Technol。2005,39,2120-2127),暗示天然有机物(NOM)可能在降低砷去除效率中起重要作用。使用不同种类的砷溶液进行pH受控的DCBR试验的结果表明,腐殖酸比砷更能抑制MMAA对Fe(25%)-硅藻土的去除。 GAC和Fe(25%)-硅藻土的混合体系将砷的吸附速度提高到比任何一种单独的介质都要高。可以通过添加GAC可以通过去除相对较高的NOM来增强Fe(25%)-硅藻土的除砷性能这一事实来推断这种增加。小型和大型色谱柱研究表明,对于Fe〜0 /砂(50/50,w / w)混合物,空床接触时间(EBCT)显着影响突破(C = 0.5 C_0)时的sorpton能力,但对于GAC预装了Fe(25%)-硅藻土。在具有实际地下水条件的大规模柱试验中,GAC预载了Fe(25%)-硅藻土有效地将砷还原至50μgL〜(-1)以下达44天。此外,大多数VOC / SVOC种类也同时衰减至检测不到的水平。

著录项

  • 来源
    《Environmental Science & Technology》 |2007年第9期|p.3322-3328|共7页
  • 作者单位

    Soil Remediation Team, Korea Mine Reclamation Corporation, Coal Center, 80-6 Susong-dong, Jongno-gu, Seoul, 110-727, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:00

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