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Characteristics and Stability of Mercury Vapor Adsorption over Two Kinds of Modified Semicoke

机译:两种改性半焦对汞蒸气的吸附特性和稳定性

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摘要

In an attempt to produce effective and lower price gaseous Hg0 adsorbents, two methods of HCl and KMnO4/heat treatment were used respectively for the surface modification of liginite semicoke from inner Mongolia. The different effects of modification process on the surface physical and chemical properties were analyzed. The characteristics and stability of mercury vapor adsorption over two kinds of modified semicoke were investigated. The results indicated that modification process caused lower micropore quantity and volume capacity of semicoke; the C-Cl functional groups, C=O bond and delocalized electron π on the surface of Cl-SC, the amorphous higher valency Mnx+, and O=C–OH functional groups on the surface of Mn-H-SC were the active sites for oxidation and adsorption of gaseous Hg0. Modification process led to higher mercury removal efficiency of semicoke at 140°C and reduced the stability of adsorbed mercury of semicoke in simulated water circumstance simultaneously.
机译:为了生产有效且价格较低的气态Hg 0 吸附剂,分别采用HCl和KMnO4 /热处理的两种方法对内蒙古的褐煤半焦进行了表面改性。分析了改性工艺对表面物理化学性能的不同影响。研究了两种改性半焦对汞蒸气的吸附特性和稳定性。结果表明,改性过程降低了半焦的微孔数量和体积容量。 Cl-SC表面的C-Cl官能团,C = O键和离域电子π,Mn表面的无定形高价Mn x + 和O = C-OH官能团-H-SC是气态Hg 0 的氧化和吸附活性位点。改性过程导致在140℃下较高的半焦除汞效率,同时降低了模拟水环境下半焦吸附汞的稳定性。

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