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Arsenic Removal from a Highly Contaminated Groundwater by a Combined Coagulation-Filtration-Adsorption Process

机译:混凝-过滤-吸附联合去除高污染地下水中的砷

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摘要

The aim of the present experimental study was to perform a technical-economic evaluation of a combined treatment system, consisting of coagulation-flocculation or rapid sand filtration as pre-treatment followed by column adsorption, for reducing the arsenic concentration from approximately 1mg/L to below the limit set for groundwater remediation and drinking water, i.e., 0.01mg/L, according to the legislation in force. A wide number of operating conditions were experimentally evaluated in the different tests. In the coagulation-flocculation study, it was initially investigated if the iron contained in a mining drainage co-mixed with the groundwater would be able to achieve a better As content reduction by adsorption/precipitation, thus avoiding fresh coagulant addition. Then, different polyelectrolyte dosages were tested varying the mixing ratio. None of the tested conditions allowed to improve the arsenic removal so significantly to warrant the consequent incremental costs. Therefore, the optimal condition was considered any mixing with a different liquid stream and any polyelectrolyte dosage. The iron content naturally present in the groundwater and contact with air was capable alone of reducing As concentration of about 80%. Sand filtration reached approximately the same removal efficiency (about 80%) at the lower surface loading rate among the values tested. Between coagulation and sand filtration, in terms of costs, the latter showed to be more convenient than coagulation-flocculation, at the same removal efficiency: therefore, it was considered the optimal pre-treatment. The following adsorption column plant was capable of further reducing As concentration up to the required value of 0.01mg/L. Among the two iron-based commercial adsorbents applied in the adsorption column tests, the hybrid media consisting of an exchange resin with iron oxides showed to be preferable under the selected operating conditions: it offered higher adsorption capacity at breakthrough and, after exhaustion, could be regenerated for a number of cycles. The influent pH showed to have a great influence on the duration of the adsorbent media, and values around neutrality were considered preferable. The estimated cost of the full treatment was computed to be about 0.50Euro/m(3) of purified water. Therefore, the capacity of achieving the required remediation goal, the limited cost, and simplicity of operation make the proposed combined treatment being potentially suitable for real application.
机译:本实验研究的目的是对组合处理系统进行技术经济评估,该系统包括混凝-絮凝或快速砂滤作为预处理,然后进行柱吸附,以将砷浓度从约1mg / L降低至低于现行的法律规定的地下水修复和饮用水限值,即0.01mg / L。在不同的测试中通过实验评估了多种操作条件。在混凝絮凝研究中,最初研究了采矿排水中所含的铁与地下水共混是否能够通过吸附/沉淀实现更好的砷含量降低,从而避免添加新鲜的混凝剂。然后,通过改变混合比例来测试不同的聚电解质剂量。任何测试条件都不能显着提高砷的去除率,以保证随之而来的增量成本。因此,最佳条件被认为是与不同液流混合以及任何聚电解质的用量。自然存在于地下水中并与空气接触的铁含量仅能将As浓度降低约80%。在较低的表面负载率下,沙滤达到了大约相同的去除效率(约80%)。在凝结和砂滤之间,就成本而言,后者显示比凝结-絮凝更方便,去除效率相同:因此,它被认为是最佳的预处理方法。随后的吸附塔设备能够进一步将As浓度降低至0.01mg / L的所需值。在吸附塔测试中使用的两种铁基商业吸附剂中,由交换树脂和氧化铁组成的杂化介质在选定的操作条件下表现出更好的性能:它在突破时具有更高的吸附能力,用尽后可以吸附。再生了多个周期。进水的pH值显示对吸附剂介质的持续时间有很大的影响,中性附近的值被认为是可取的。完全处理的估计成本计算为约0.50Euro / m(3)的纯净水。因此,实现所需补救目标的能力,有限的成本以及操作的简便性使得所提出的联合治疗有可能适合实际应用。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2019年第4期|87.1-87.12|共12页
  • 作者单位

    Sapienza Univ Rome, Fac Civil & Ind Engn, Dept Civil Construct & Environm Engn, Via Eudossiana 18, I-00184 Rome, Italy;

    Sapienza Univ Rome, Fac Civil & Ind Engn, Dept Civil Construct & Environm Engn, Via Eudossiana 18, I-00184 Rome, Italy;

    Univ Florence, Fac Engn, Dept Civil & Environm Engn, Via S Marta 3, I-50139 Florence, Italy;

    Univ Florence, Fac Engn, Dept Civil & Environm Engn, Via S Marta 3, I-50139 Florence, Italy;

    Univ Florence, Fac Engn, Dept Civil & Environm Engn, Via S Marta 3, I-50139 Florence, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Arsenic; Coagulation-flocculation; Filtration; Groundwater; Iron;

    机译:吸附;砷;混凝-絮凝;过滤;地下水;铁;
  • 入库时间 2022-08-18 04:15:52

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