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Molecular and ionic-scale chemical mechanisms behind the role of nitrocyl group in the electrochemical removal of heavy metals from sludge

机译:硝酰基在电化学去除污泥中重金属的作用背后的分子和离子级化学机理

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The chemical basis for improved removal rates of toxic heavy metals such as Zn and Cu from wastewater secondary sludge has been demonstrated in this study. Instead of using excess corrosive chemicals as the source of free nitrous acid (FNA) for improved solubility of heavy metals in the sludge (in order to enhance electrokinetics), an optimized use of aqua regia has been proposed as an alternative. Fragments of nitrocyl group originated from aqua regia are responsible for the disruption of biogenic mixed liquor volatile suspended solids (MLVSS) and this disruption resulted in enhanced removal of exposed and oxidized metal ions. A diversity of nitric oxide (NO), peroxy nitrous acid, and peroxy nitroso group are expected to be introduced in the mixed liquor by the aqua regia for enhanced electrochemical treatment. The effects of pectin as a post treatment on the Zn removal from sludge were also presented for the first time. Results revealed 63.6% Cu and 93.7% Zn removal efficiencies, as compared to 49% Cu and 74% Zn removal efficiencies reported in a recent study. Also, 93.3% reduction of time-to-filter (TTF), and 95?mL/g of sludge volume index (SVI) were reported. The total operating cost obtained was USD 1.972/wet ton.
机译:这项研究证明了改善废水二次污泥中有毒重金属如Zn和Cu去除率的化学基础。代替使用过量的腐蚀性化学物质作为游离亚硝酸(FNA)的来源以提高重金属在污泥中的溶解度(以增强电动动力学),已提出了王水的优化使用作为替代方案。源自王水的硝酰基基团的片段是造成生物混合液挥发性悬浮固体(MLVSS)破坏的原因,这种破坏导致暴露的和氧化的金属离子的去除增强。预计王水会在混合液中引入多种一氧化氮(NO),过氧亚硝酸和过氧亚硝基,以增强电化学处理效果。还首次提出了果胶作为后处理对污泥中锌去除的影响。结果显示,Cu的去除效率为63.6%,Zn的去除率为93.7%,而最近的一项研究表明,Cu的去除率为49%,Zn的去除率为74%。另外,据报道,过滤时间(TTF)减少了93.3%,污泥体积指数(SVI)降低了95?mL / g。获得的总运营成本为1.972美元/湿吨。

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