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新型矿物硫化物吸附剂用于从燃煤烟气中高效脱除汞的汞稳定性研究。

Stability of mercury on a novel mineral sulfide sorbent used for efficient mercury removal from coal combustion flue gas.

机构信息

School of Energy Science and Engineering, Central South University, Changsha, 410083, China.

出版信息

Environ Sci Pollut Res Int. 2018 Oct;25(28):28583-28593. doi: 10.1007/s11356-018-2896-z. Epub 2018 Aug 9.

Abstract

Nano-structured zinc sulfide (Nano-ZnS) has been demonstrated to be a promising alternative to activated carbon (AC) for controlling mercury emission from coal combustion flue gas. The ultimate fate of the mercury-laden Nano-ZnS after mercury capture is mostly disposed in landfill with fly ashes. Thus, the stability of mercury adsorbed on the Nano-ZnS is of considerable significance in the secured disposal of fly ash after mercury removal and in the commercial application of the Nano-ZnS sorbent for removal of mercury from coal combustion flue gas. In this work, a modified toxicity characteristic leaching procedure (TCLP) was conducted to evaluate the leachability of mercury on the Nano-ZnS. The effects of leachate pH value, leaching time, liquid-to-solid ratio, and acid rain types on mercury leaching from the mercury-laden Nano-ZnS were systematically investigated. The TCLP results show that the concentration of mercury in leachate was far below the safe limit (200 μg/L) as imposed by the US Environmental Protection Agency (EPA) for classifying a material as a hazardous waste. All the key parameters that generally affected metal leaching rate exhibited slight effect on mercury leaching from the mercury-laden Nano-ZnS. Leaching tests at various highly severe conditions resulted in less than 0.01% mercury leaching from the mercury-laden Nano-ZnS. Sequential selective extraction tests demonstrated that mercury sulfide (HgS) was the dominant adsorption product on the Nano-ZnS, which guaranteed the excellent stability of mercury adsorbed on the Nano-ZnS. Graphic abstract ᅟ.

摘要

纳米结构硫化锌 (Nano-ZnS) 已被证明是一种有前途的活性炭 (AC) 替代品,可用于控制燃煤烟气中汞的排放。含汞 Nano-ZnS 捕获汞后的最终归宿大多是与粉煤灰一起填埋。因此,在脱汞粉煤灰安全处置和纳米结构硫化锌吸附剂从燃煤烟气中去除汞的商业应用中,吸附在 Nano-ZnS 上的汞的稳定性具有重要意义。在这项工作中,采用改良毒性特征浸出程序 (TCLP) 评估了 Nano-ZnS 上汞的浸出率。系统研究了浸出液 pH 值、浸出时间、液固比和酸雨类型对载汞 Nano-ZnS 中汞浸出的影响。TCLP 结果表明,浸出液中汞的浓度远低于美国环境保护署 (EPA) 规定的危险废物分类安全限值(200μg/L)。通常影响金属浸出率的所有关键参数对载汞 Nano-ZnS 中汞的浸出影响甚微。在各种苛刻条件下进行的浸出试验表明,载汞 Nano-ZnS 中汞的浸出率低于 0.01%。顺序选择性提取试验表明,硫化汞 (HgS) 是 Nano-ZnS 上的主要吸附产物,这保证了吸附在 Nano-ZnS 上的汞具有优异的稳定性。

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