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Speciation of adsorbed arsenic(V) on red mud using a sequential extraction procedure

机译:使用顺序萃取程序对赤泥上吸附的砷(V)进行形态分析

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摘要

The distribution of sorbed arsenic(V) among different geochemical fractions for arsenic(V)-loaded red mud, an oxide-rich residue from bauxite refining that has been proposed as an adsorbent for arsenic, was studied as a function of sorbed arsenic(V) concentration using a sequential extraction procedure. The release of previously sorbed arsenic(V) was also studied as a function of pH and arsenic(V) concentration. Most sorbed arsenic(V) (0.39–7.86 mmol kg–1) was associated with amorphous and crystalline Al and Fe oxides (24.1–43.8% and 24.7–59.0% of total sorbed arsenic, respectively). Exchangeable arsenic was the smallest fraction (0.4–5.2% of total sorbed arsenic). The distribution of sorbed arsenic(V) was related to the arsenic surface coverage. For arsenic surface coverages >~30% the percentage of arsenic(V) associated with the amorphous Al oxide fraction increased and that associated with the crystalline oxide fraction decreased. The arsenic(V) exchangeable fraction increased from 1.4 to 756 µmol kg–1 as surface coverage increased from 388 to 7855 µmol kg–1. The release of sorbed arsenic(V) from red mud was greater at alkaline pH values (maximum release of ~33% of previously sorbed arsenic at pH = 12), but for high arsenic(V) initial concentration (0.2 mM arsenic) considerable amounts of arsenic (6.5% of previously sorbed arsenic) were released at pH 4, in accordance with the dissolution of amorphous Al oxides in the red mud. The results obtained suggest a greater mobility of sorbed arsenic(V) as its surface concentration approaches saturation.
机译:负载砷(V)的赤泥(富含铝氧化物精炼过程中富含氧化物的残留物 )在不同地球化学馏分中的吸附砷(V)分布已被提议作为一种使用顺序萃取程序研究了砷的吸附剂 与所吸附的砷(V) 浓度的关系。还研究了先前吸附的砷(V)的释放 作为pH和砷(V)浓度的函数。大多数吸附的砷(V)(0.39–7.86 mmol kg –1 )与非晶态和晶体 Al和Fe氧化物有关(24.1–43.8 %和24.7–59.0%分别吸附了 砷。交换性砷是 中最小的部分(占总吸附砷的0.4-5.2%)。 吸附砷的分布(V)与砷 表面覆盖。对于砷表面覆盖率>〜30%的情况,与无定形氧化铝 相关的砷(V)的 百分比增加,而与晶体 相关的砷(V)百分比增加氧化物分数降低。砷(V)交换分数 从1.4增加到756 µmol kg –1 ,因为表面覆盖率 从388增加到7855 µmol kg –1 。在碱性pH 值下,赤泥中吸附的砷(V)的释放 更大(以前吸附的砷 的最大释放量为〜33%)。 pH = 12),但是对于高砷(V)初始浓度(0.2 mM砷),在pH 4时会释放出相当数量的砷(先前吸附的6.5%的砷)。 ,根据 非晶铝氧化物在赤泥中的溶解情况。获得的结果 表明,随着表面浓度接近饱和的 ,吸附的砷(V)的迁移率更高。

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  • 来源
    《Mineralogical Magazine》 |2005年第5期|00000591-00000600|共10页
  • 作者单位

    Departamento de Edafoloxía e Química Agrícola, Facultade de Farmacia, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Spain;

    área de Edafoloxía e Química Agrícola, Facultade de Ciencias de Ourense, Universidade de Vigo, 32004 Ourense, Spain;

    Departamento de Edafoloxía e Química Agrícola, Facultade de Farmacia, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Spain;

    Departamento de Edafoloxía e Química Agrícola, Facultade de Farmacia, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    red mud; arsenic; sorption; speciation; sequential extraction;

    机译:红泥砷;吸附物种顺序提取;

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