首页> 外文期刊>Environmental Science & Technology >Leaching of Arsenic from Granular Ferric Hydroxide Residuals under Mature Landfill Conditions
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Leaching of Arsenic from Granular Ferric Hydroxide Residuals under Mature Landfill Conditions

机译:在成熟填埋场条件下从颗粒状氢氧化铁残留物中浸出砷

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摘要

Most arsenic bearing solid residuals (ABSR)from water treatment will be disposed in nonhazardous landfills.The lack of an appropriate leaching test to predict arsenic mobilization from ABSR creates a need to evaluate the magnitude and mechanisms of arsenic release under landfill conditions.This work studies the leaching of arsenic and iron from a common ABSR,granular ferric hydroxide,in a laboratory-scale column that simulates the biological and physicochemical conditions of a mature,mixed solid waste landfill.The column operated for approximately 900 days and the mode of transport as well as chemical speciation of iron and arsenic changed with column age.Both iron and arsenic were readily mobilized under the anaerobic,reducing conditions.During the early stages of operation,most arsenic and iron leaching (80% and 65%,respectively)was associated with suspended particulate matter,and iron was lost proportionately faster than arsenic.In later stages,while the rate of iron leaching declined,the arsenic leaching rate increased greaterthan 7-fold.The final phase was characterized by dissolved species leaching.Future work on the development of standard batch leaching tests should take into account the dominant mobilization mechanisms identified in this work:solid associated transport,reductive sorbent dissolution,and microbially mediated arsenic reduction.
机译:大部分来自水处理的含砷固体残留物(ABSR)将被处置在无害的垃圾填埋场中,由于缺乏适当的浸出测试来预测ABSR的砷迁移量,因此有必要评估垃圾填埋场条件下砷释放的程度和机理。在实验室规模的色谱柱中模拟常见的ABSR颗粒状氢氧化铁中的砷和铁的浸出,该色谱柱模拟成熟的混合固体垃圾填埋场的生物学和物理化学条件。该色谱柱运行约900天,运输方式为铁和砷的化学形态随柱龄的变化而变化。在厌氧,还原的条件下,铁和砷都易于转移。在操作的早期,大多数砷和铁的浸出(分别为80%和65%)相关悬浮颗粒物,铁的损失比砷的损失成比例地增加。在后期,铁的浸出速度下降ed,砷的浸出速率增加了7倍以上。最后阶段的特征是溶解的物质浸出。在进行标准批量浸出测试的未来工作中,应考虑到这项工作中确定的主要动员机制:固体相关运输,还原吸附剂溶解和微生物介导的砷还原。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第19期|p.6070-6075|共6页
  • 作者单位

    Department of Chemical and Environmental Engineering,University of Arizona,Tucson,Arizona 85721;

  • 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

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