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首页> 外文期刊>Environmental Science: Water Research & Technology >Stabilization and solidification of brine water containing selenium, chromium, copper, and mercury utilizing a microwave enabled sol-gel process
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Stabilization and solidification of brine water containing selenium, chromium, copper, and mercury utilizing a microwave enabled sol-gel process

机译:利用微波炉溶胶加工溶液含硒,铬,铜和汞的盐水稳定和凝固

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摘要

To comply with the new regulations on coal-fired power plants, many treatment scenarios are inclining towards zero-liquid discharge (ZLD) technologies. Therefore, there has been a dramatic shift in the treatment approaches for managing effluents at coal-fired plants within the past decade. Traditionally, stabilization/solidification (S/S) ZLD technologies fall into two categories: cementitious and vitrification. However, neither approach offers the ideal solution for coal-fired power plants needing ZLD by S/S methods. Here, we report a novel proof-of-concept of a sol-gel encapsulation - chemical and physical - method using only one chemical: tetramethyl orthosilicate and the resulting materials are evaluated as an alternative S/S effluent treatment. We demonstrate that the concept of sol-gel encapsulation is an efficient method to solidify and chemically stabilize various brine waters and wastewater effluents from a midwestern coal-fired power plant that burns both bituminous and sub-bituminous coals. The encapsulated solids successfully retained positively charged contaminants during leaching analyses, while struggling to retain negatively charged contaminants. Based on the results shown, it is proposed that the negatively charged silicon dioxide network chemically fixates positively charged contaminants, leading to the retention of those contaminants. These results demonstrate that sol-gel encapsulation has the potential to be developed as an alternative S/S technique to meet the challenges of ZLD technologies. It is anticipated that the work presented will be a starting point for further development of S/S treatment with sol-gels derived from fly ash.
机译:为了遵守燃煤发电厂的新规定,许多治疗情景都倾向于零液体放电(ZLD)技术。因此,在过去十年内,在燃煤植物中管理污水的治疗方法具有显着的转变。传统上,稳定/凝固(S / S)ZLD Technologies分为两类:水泥和玻璃化。然而,两种方法都没有通过S / S方法为需要ZLD的燃煤发电厂提供理想的解决方案。在这里,我们报告了一种新颖的溶胶 - 凝胶封装 - 化学和物理 - 使用一种化学方法:使用一种化学物质:四甲基外硅酸盐,并将所得材料评价为替代的S / S流出处理。我们证明溶胶 - 凝胶封装的概念是一种有效的方法,可以从中西部燃煤发电厂凝固和化学稳定各种盐水水域和废水流出物的有效方法。在浸出分析期间,封装的固体成功保留带正电荷的污染物,同时努力保留带负电荷的污染物。基于所示结果,提出了带负电荷的二氧化硅网络化学固定带正电荷的污染物,导致这些污染物的保留。这些结果表明,溶胶 - 凝胶封装具有作为替代S / S技术的潜力,以满足ZLD技术的挑战。预计所提出的工作将是进一步发展S / S治疗的起点,溶胶 - 凝胶衍生自粉煤灰。

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    Univ Louisville Dept Chem Engn Louisville KY 40292 USA;

    Thomas More Univ Chem Dept Crestview Hills KY 41017 USA;

    Univ Louisville Dept Chem Engn Louisville KY 40292 USA;

    Thomas More Univ Chem Dept Crestview Hills KY 41017 USA;

    Elect Power Res Inst 1300 W. WT Harris Blvd Charlotte NC 28262 USA;

    Univ Louisville Dept BioEngn Louisville KY 40292 USA;

    Univ Louisville Dept Chem Engn Louisville KY 40292 USA|LG&E & KU Energy Louisville Gas & Elect & Kentucky Util Energy 820 W. Broadway Louisville KY 40202 USA;

    Univ Louisville Dept Chem Engn Louisville KY 40292 USA;

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