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采用 Mn-Cu 氧化物改性的磁性凹凸棒土去除烟气中的元素汞。

Removal of elemental mercury from flue gas using the magnetic attapulgite by Mn-Cu oxides modification.

机构信息

School of Resource and Environmental Sciences, Wuhan University, Wuhan, Hubei, 430079, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Feb;29(10):14058-14069. doi: 10.1007/s11356-021-16777-z. Epub 2021 Oct 2.

DOI:10.1007/s11356-021-16777-z
PMID:34601680
Abstract

Mercury pollution has become one of the most concerned environmental issues in the world because of its high toxicity, non-degradability, and bioaccumulation. Attapulgite adsorbents modified by magnetic manganese-copper (MnCu-MATP) were fabricated by co-precipitation and ultrasonic impregnation method, aiming at removing Hg from coal-fired flue gas. BET, SEM, XRD, VSM, and XPS were used to systematically explore the physical and chemical properties of the adsorbents, the effects of manganese and copper additions, reaction temperature, and various components in the flue gas on the efficiency of Hg removal were investigated. MnCu-MATP exhibited the optimal properties, and excessive copper loadings led to the aggregation of the active components. The efficiency of mercury removal can be effectively improved by NO and HCl regardless of the absence and presence of O, because the NO, NO, NO, and Cl* produced during the reaction can promote the adsorption and oxidation of Hg. SO and HO inhibited the oxidation of Hg because of the competitive adsorption at the active sites, while a large amount of sulfite and sulfate were formed to block the pores. However, the introduction of copper caused the sample to obtain SO resistance, which resulted in a mercury removal efficiency of 84.3% even under 1500 ppm SO. In addition, after 5 cycles of adsorption and regeneration, MnCu-MATP can still maintain excellent Hg removal ability. The fabricated adsorbent can save the actual production cost and effectively improve the mercury removal efficiency in sulfur-containing flue gas.

摘要

汞污染因其高毒性、不可降解性和生物累积性已成为世界上最受关注的环境问题之一。本文采用共沉淀和超声浸渍法制备了磁性锰铜(MnCu-MATP)修饰凹凸棒石吸附剂,旨在去除燃煤烟气中的 Hg。通过 BET、SEM、XRD、VSM 和 XPS 系统地研究了吸附剂的物理化学性质,考察了锰和铜的添加量、反应温度以及烟气中的各种成分对 Hg 去除效率的影响。MnCu-MATP 表现出最佳的性能,过多的铜负载会导致活性成分的聚集。无论 O 是否存在,NO 和 HCl 都可以有效地提高汞去除效率,因为反应过程中产生的 NO、NO、NO 和 Cl*可以促进 Hg 的吸附和氧化。SO 和 HO 由于在活性位上的竞争吸附而抑制了 Hg 的氧化,而大量的亚硫酸盐和硫酸盐形成会堵塞孔道。然而,铜的引入使样品具有 SO 抗性,即使在 1500 ppm SO 下,汞去除效率仍达到 84.3%。此外,在 5 次吸附-再生循环后,MnCu-MATP 仍能保持优异的 Hg 去除能力。该制备的吸附剂可以节省实际生产成本,并有效提高含硫烟气中的汞去除效率。

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