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农业废弃物对汞去除的竞争影响:在合成和天然加标水中的应用。

Competitive effects on mercury removal by an agricultural waste: application to synthetic and natural spiked waters.

出版信息

Environ Technol. 2014 Mar-Apr;35(5-8):661-73. doi: 10.1080/09593330.2013.841267.

Abstract

In this work, the efficiency of a local and highly, available agricultural waste, the raw rice husk, was used to remove mercury (Hg) from synthetic and natural waters, spiked with concentrations that reflect the contamination problems found in the environment. Different operating conditions were tested, including initial pH, ionic strength, the presence of co-ions (cadmium) and organic matter. The sorption efficiency of rice husk was slightly affected by the presence H+ ions (pH range between 3 and 9), but in the presence of NaNO3 and NaCl electrolytes and in binary solutions containing Cd2+ and H2+, the sorption efficiency was dependent on the nature and levels of the interfering ion and on the initial concentration of Hg+ used. Nevertheless, in a situation of equilibrium the effect of those ions was negligible and the removal efficiency ranged between 82% and 94% and between 90% and 96% for an initial Hg2+ concentration of 0.05 mg L(-1) and 0.50 mg L(-1), respectively. In more complex matrices, i.e. in the presence ofhumic substances and in natural river waters, the speciation and dynamics of Hg was changed and a fraction of the metal becomes unavailable in solution. Even then, the values obtained for Hg removal were satisfactory, i.e. between 59% and 76% and 81% and 85% for an initial concentration of Hg2+ of 0.05 and 0.50 mg L(-1), respectively.

摘要

在这项工作中,利用当地丰富且易得的农业废弃物——稻壳,去除了合成水和天然水中的汞(Hg),这些水被人为添加了反映环境中污染问题的汞浓度。研究测试了不同的操作条件,包括初始 pH 值、离子强度、共存离子(镉)和有机物的存在。稻壳的吸附效率受 H+离子(pH 值在 3 到 9 之间)的轻微影响,但在存在 NaNO3 和 NaCl 电解质以及含有 Cd2+和 H2+的二元溶液中,吸附效率取决于干扰离子的性质和水平,以及使用的初始 Hg+浓度。然而,在平衡状态下,这些离子的影响可以忽略不计,去除效率在 0.05mg/L 和 0.50mg/L 的初始 Hg2+浓度下分别为 82%至 94%和 90%至 96%。在更复杂的基质中,即存在腐殖质和天然河水的情况下,Hg 的形态和动力学发生了变化,金属的一部分在溶液中变得不可用。即便如此,Hg 去除率的值仍然令人满意,在 0.05mg/L 和 0.50mg/L 的初始 Hg2+浓度下,分别为 59%至 76%和 81%至 85%。

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