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氮氧化物对纳米矿物硫化物去除元素汞的影响。

Effect of Nitrogen Oxides on Elemental Mercury Removal by Nanosized Mineral Sulfide.

机构信息

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

Department of Civil Engineering, The University of Hong Kong , Hong Kong SAR, China.

出版信息

Environ Sci Technol. 2017 Aug 1;51(15):8530-8536. doi: 10.1021/acs.est.7b00224. Epub 2017 Jul 14.

Abstract

Because of its large surface area, nanosized zinc sulfide (Nano-ZnS) has been demonstrated in a previous study to be efficient for removal of elemental mercury (Hg) from coal combustion flue gas. The excellent mercury adsorption performance of Nano-ZnS was found to be insusceptible to water vapor, sulfur dioxide, and hydrogen chloride. However, nitrogen oxides (NO) apparently inhibited mercury removal by Nano-ZnS; this finding was unlike those of many studies on the promotional effect of NO on Hg removal by other sorbents. The negative effect of NO on Hg adsorption over Nano-ZnS was systematically investigated in this study. Two mechanisms were identified as primarily responsible for the inhibitive effect of NO on Hg adsorption over Nano-ZnS: (1) active sulfur sites on Nano-ZnS were oxidized to inactive sulfate by NO; and (2) the chemisorbed mercury, i.e., HgS, was reduced to Hg by NO. This new insight into the role of NO in Hg adsorption over Nano-ZnS can help to optimize operating conditions, maximize Hg adsorption, and facilitate the application of Nano-ZnS as a superior alternative to activated carbon for Hg removal using existing particulate matter control devices in power plants.

摘要

由于其较大的表面积,纳米硫化锌(Nano-ZnS)在之前的研究中已被证明能够有效地从煤燃烧烟气中去除元素汞(Hg)。研究发现,Nano-ZnS 具有优异的汞吸附性能,不受水蒸气、二氧化硫和氯化氢的影响。然而,氮氧化物(NO)显然抑制了 Nano-ZnS 对汞的去除;这一发现与许多关于 NO 对其他吸附剂去除 Hg 的促进作用的研究不同。本研究系统地考察了 NO 对 Nano-ZnS 上 Hg 吸附的抑制作用。确定了两种机制是导致 NO 对 Nano-ZnS 上 Hg 吸附抑制作用的主要原因:(1)NO 将 Nano-ZnS 上的活性硫位点氧化为不活泼的硫酸盐;(2)化学吸附的汞,即 HgS,被 NO 还原为 Hg。这一新的认识有助于优化操作条件,最大限度地提高 Hg 吸附,并促进 Nano-ZnS 作为优于活性炭的替代品,用于利用现有电厂颗粒物控制装置去除 Hg。

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