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Chemical-free arsenic removal from potable water with a ZVI-amended biofilter.

机译:使用经过ZVI修正的生物滤池,可从饮用水中去除无化学物质的砷。

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摘要

With a reduction in the maximum allowable concentration (MAC) from 25mug/L to 10mug/L in Canada, arsenic in potable water is of growing concern. Many of the currently available arsenic removal technologies require considerable capital investment that is not feasible for small to medium-sized communities. These technologies also have associated operating costs and skill requirements that make them unsuitable for many small-scale utilities. As a result several small communities in Western Canada do not currently meet the new arsenic MAC and will require innovative potable water treatment solutions to do so.;Continuous column studies with nutrient-enhanced RO water showed no statistical difference in arsenic removal performance of various mixtures (v/v) of filtration sand and ZVI provided the mixture consisted of at least 300% ZVI filings. Column studies with Kannata Valley and Buena Vista raw water indicated that columns containing 50/50 and 40/60 ZVI/filtration sand (v/v) could effectively remove arsenic to well below 10mug/L. Arsenic removal efficiency of the ZVI/sand columns was greater than 95% and 88% for Buena Vista and Kannata Valley water, respectively, using both 50/50 and 40/60 media mixtures. Arsenic speciation tests of raw and treated water indicated that the ZVI filings were equally adept for removing As(III) and As(V). No significant amount of iron was leached from the ZVI/sand columns under the conditions tested.;This research project examined the use of a zero valent iron (ZVI)/sand column to remove arsenic from potable water. Batch studies were conducted using both arsenic-spiked reverse osmosis (RO) water and naturally arsenic-laden groundwater from two Saskatchewan communities (Kannata Valley and Buena Vista, Saskatchewan). The Langmuir isotherm best described the adsorption of arsenic onto ZVI for all samples. The maximum loading capacity (Langmuir constant qmax) was found to be 833,2000 and 5 000mg As/kg ZVI for arsenic-spiked RO, Buena Vista water and Kannata Valley water, respectively.
机译:随着加拿大最大允许浓度(MAC)从25杯/升降低到10杯/升,饮用水中的砷日益引起人们的关注。许多当前可用的除砷技术需要大量的资本投资,这对于中小型社区是不可行的。这些技术还具有相关的运营成本和技能要求,这使其不适用于许多小型公用事业公司。结果,加拿大西部的几个小社区目前尚未达到新的砷MAC标准,因此需要创新的饮用水处理解决方案。;使用营养增强的RO水进行的连续柱研究表明,各种混合物的除砷性能没有统计学差异(v / v)滤砂和ZVI,前提是混合物包含至少300%的ZVI碎屑。用Kannata谷和Buena Vista原水进行的色谱柱研究表明,含有50/50和40/60 ZVI /滤砂(v / v)的色谱柱可以有效地将砷去除至10mug / L以下。使用50/50和40/60的介质混合物,对于Buena Vista和Kannata Valley水,ZVI /砂柱的除砷效率分别大于95%和88%。原水和处理后水的砷形态测试表明,ZVI文件同样能去除As(III)和As(V)。在测试条件下,没有从ZVI /砂柱中浸出大量铁。该研究项目研究了使用零价铁(ZVI)/砂柱去除饮用水中的砷。使用砷掺加的反渗透(RO)水和来自萨斯喀彻温省两个社区(萨斯喀彻温省坎纳塔山谷和布埃纳维斯塔)的天然富含砷的地下水进行了批量研究。 Langmuir等温线最能描述所有样品在ZVI上的砷吸附。砷加标的RO,Buena Vista水和Kannata Valley水的最大负载量(Langmuir常数qmax)分别为833,2000和5,000 mg As / kg ZVI。

著录项

  • 作者

    Gottinger, Ann Marie.;

  • 作者单位

    The University of Regina (Canada).;

  • 授予单位 The University of Regina (Canada).;
  • 学科 Engineering Environmental.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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