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Preparation of walnut shell-based activated carbon and its properties for simultaneous removal of H2S, COS and CS2 from yellow phosphorus tail gas at low temperature

机译:基于核桃壳的活性炭的制备及其在低温下与黄色磷尾气同时除去H 2 S,COS和CS2的性质

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摘要

Walnut shell-based activated carbon (WSBAC) was prepared used to simultaneously remove H2S, COS and CS2 from yellow phosphorus tail gas and closed carbide furnace tail gas. The influences of different preparation conditions (carbonization temperature, activating agent species, activating agent content, activation temperature) on the simultaneous removal efficiency of H2S, COS and CS2 were investigated. The results showed that the WSBAC carbonizated at 600 A degrees C, then activated with 0.5 times KOH at 700 A degrees C had the highest sulfur capacity (52.67 mgS/g(WSBAC)). The structure and surface properties of the catalysts were characterized by Brunauer-Emmett-Teller (BET) method, and the results showed that the high BET surface area (484.26 m(2)/g), high micropore volume (0.261 cm(3)/g) and more pore sizes of 0.3-1.8 nm were conducive to the simultaneous removal of H2S, COS and CS2. X-ray photoelectron spectroscopy results showed that the most of products on the exhausted WSBAC were S/SO4 (2-) species which accumulated on the WSBAC's surface and had a negative effect on the adsorption activity.
机译:制备核桃壳的活性炭(WSBAC),用于同时从黄磷尾气和闭合碳化物炉尾气中除去H 2 S,COS和CS2。研究了不同制剂条件(碳化温度,活化剂物种,活化剂含量,活化温度)对H2S,COS和CS2同时去除效率的影响。结果表明,600℃下的WSBAC碳化,然后在700℃下用0.5倍的KOH活化,具有最高的硫容量(52.67mgs / g(WSBAC))。催化剂的结构和表面性质的特征在于Brunauer-Emmett-exers(Bet)方法,结果表明,高BET表面积(484.26m(2)/ g),高胚体体积(0.261厘米(3) / g)和0.3-1.8nm的更多孔径有利于同时除去H 2 S,COS和CS2。 X射线光电子能谱结果表明,耗尽的WSBAC上的大部分产品是累积在WSBAC表面上的S / SO4(2-)种,对吸附活性产生负面影响。

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