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Hg 0 capture over MoS2 nanosheets containing adsorbent: effects of temperature, space velocity, and other gas species

机译:在含有吸附剂的MoS2纳米片上捕获Hg 0:温度,空速和其他气体物种的影响

摘要

Fossil fuel burning is the largest anthropogenic source of mercury emission, which is expected to be the first industrial sector to be addressed under Minamata Convention. In this research, the preliminary investigation has been carried out to understand the effects of temperature, space velocity, and SO2 and O2 on Hg0 capture over MoS2 nanosheets containing elemental mercury adsorbent. The adsorbent exhibited excellent performance in the removal of Hg0 at a low temperature below 125°C (particularly at 50°C) with a space velocity below 9.0×104 ml/(h·g). It was found that the presence of O2 had positive effect on Hg0 removal whilst SO2 had slightly negative effect on mercury capture at low temperature, such as 50°C. However, such negative effect became negligible when O2 co-existed with SO2 in the simulated flue gas. The research provided fundamental information for further development of the 2D graphene-like MoS2 nanosheets containing adsorbent for mercury capture.
机译:化石燃料燃烧是最大的人为汞排放源,预计将成为《水am公约》第一个涉及的工业部门。在这项研究中,已经进行了初步研究以了解温度,空速以及SO2和O2对含有元素汞吸附剂的MoS2纳米片上Hg0捕获的影响。在低于125°C(尤其是在50°C)的低温下,空速低于9.0×104 ml /(h·g)的条件下,吸附剂表现出优异的Hg0去除性能。已发现,在低温(例如50°C)下,O2的存在对Hg0的去除具有积极作用,而SO2对汞的捕集具有轻微的负面影响。但是,当模拟烟气中O2与SO2共存时,这种负面影响可以忽略不计。该研究为进一步开发二维石墨烯样MoS2纳米片提供了基础信息,该片包含用于汞捕获的吸附剂。

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