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Influence of the coal-derived synthesis gas composition on the thermal stability of ZnO sorbents in the desulfurization process

机译:煤衍生合成气组成对脱硫过程中ZnO吸附剂热稳定性的影响

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The priority direction of thermal energy on solid fuels is to increase efficiency and environmental safety, approaching zero emissions of harmful substances. To achieve these goals, they are currently creating new schemes for combined cycle gas turbine units with intracycle gasification (IGCC). To improve the efficiency of the IGCC cycle, hot dry desulfurization (HGC) technologies are being developed. HGC uses regenerable sorbents that allow the repeated adsorption of hydrogen sulfide from synthesis gas, among which the most acceptable thermodynamic and operational characteristics are based on ZnO sorbents. The article uses the method of thermogravimetric analysis (TGA) to investigate the development of target reaction capture hydrogen sulfide ZnO-containing sorbent and sorbent reactions with components of synthesis gas in the temperature range up to 1000°C. The sorbent calcined at 900°C shows thermal stability in an inert atmosphere over the entire temperature range studied. Uncalcined sorbents at temperatures of 200 and 600°C emit carbon dioxide in an amount of 1.5-4.5% by weight of the sorbent. At temperatures up to 550°C, the target reaction is basic, and side reactions practically do not develop. The maximum rate of absorption of hydrogen sulfide by the sorbent is observed at a temperature of 600°C. At 500-550°C reactions of a sorbent begin with H_2 and CO, at 750-800°C - with carbon, at 850°C - with CH_4. The intensity of effect of reagents is defined on degradation of a sorbent by reactionary ability of gases more than temperature.
机译:固体燃料上热能的优先级方向是提高效率和环境安全,接近有害物质的零排放。为实现这些目标,他们目前正在为具有肠道气化(IGCC)的组合循环燃气轮机单元创造新方案。为了提高IGCC循环的效率,正在开发热干燥脱硫(HGC)技术。 HGC使用可再生吸附剂,允许重复吸附来自合成气的硫化氢,其中最可接受的热力学和操作特性是基于ZnO吸附剂。本文使用热重分析(TGA)的方法来研究靶反应捕获的含氢硫化氢ZnO的吸附剂和吸附剂反应,在温度范围内的合成气中的组分高达1000℃。在900℃下煅烧的吸附剂在研究的整个温度范围内显示出惰性气氛中的热稳定性。温度为200和600℃的温度下未煅烧的吸附剂,其二氧化碳的量为1.5-4.5%重量的吸附剂。在温度高达550℃的温度下,目标反应是碱性的,并且实际上反应实际上不会产生。在600℃的温度下观察到吸附剂的硫化氢吸收的最大速率。在500-550℃下,吸附剂的反应以750-800℃ - 用碳在850℃ - 用CH_4的碳,从H_2和CO的反应开始。试剂的效果强度在于气体的反应能力比温度的反应能力定义为吸附剂的降解。

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