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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >H2S adsorption/oxidation on unmodified activated carbons: importance of prehumidification
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H2S adsorption/oxidation on unmodified activated carbons: importance of prehumidification

机译:未改性活性炭上的H2S吸附/氧化:预加湿的重要性

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Three microporous activated carbons supplied by Norit(R) (of peat and bituminous coal origin) were used in this study as hydrogen sulfide adsorbents. Their surface properties were evaluated by means of nitrogen adsorption, Boehm titration, potentiometric titration, and thermal analysis. The results show that the carbons significantly differ in their pore structure and surface chemistry. This is reflected in their hydrogen sulfide breakthrough capacity. The breakthrough capacity is underestimated when not enough water is adsorbed on the carbon surface. The performance follows the expectations after extensive humidification of the sorbents' surfaces. Moderately low pH in the acidic range of coal-based carbon, Vapure 612, promotes the oxidation of H2S to sulfur oxides which is important from the point of view of water regeneration. The high pH of peat-based carbon, RB 4, results in H2S oxidation to elemental sulfur. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 42]
机译:由Norit(泥炭和烟煤来源)提供的三种微孔活性炭被用作硫化氢吸附剂。通过氮吸附,Boehm滴定,电位滴定和热分析评估其表面性能。结果表明,碳的孔结构和表面化学性质明显不同。这反映在它们的硫化氢突破能力上。当没有足够的水吸附在碳表面上时,穿透能力会被低估。在对吸附剂表面进行大量加湿后,性能符合预期。在煤基碳的酸性范围内适度的低pH值Vapure 612促进H2S氧化为硫氧化物,这从水再生的角度来看很重要。泥炭基碳的高pH值RB 4导致H2S氧化为元素硫。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:42]

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