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Influence of the Feed Gas Composition on the Fischer-Tropsch Synthesis in Commercial Operations

机译:原料气组成对商业运行中费-托合成的影响

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摘要

Key technical challenges relating to the Fischer-Tropsch (F-T) synthesis applied in the commercialization of coal/gas-to-liquids (CTL/GTL) technologies have been reviewed. Based on the experiences accumulated from pilot plant, semi-work test and lab researches, the influences of the H_2/CO ratio and the CO_2 in the feed gas on the F-T process as well as on CTL/GTL complex in terms of product yields, energy efficiency and carbon utilization efficiency have been studied. Being contrary to the current design schemes for F-T process using the coal derived syngas and the iron-based catalyst, it is suggested to feed the F-T synthesis unit with a syngas having a H_2/CO ratio of 0.5 and then adjusting to 1.4 via the recycling process. As a result, the carbon efficiency of the whole plant could be reached to as high as 50%. For the issue of CO_2 addition to the feed gas, it is proved that only a diluting role is played under the current commercial slurry phase F-T process.
机译:审查了与费-托合成技术(F-T)应用于煤/气液化(CTL / GTL)技术商业化的关键技术挑战。根据中试工厂,半成品测试和实验室研究的经验,原料气中H_2 / CO比和原料气中的CO_2对FT工艺以及CTL / GTL复合物产量的影响,研究了能源效率和碳利用效率。与目前使用煤衍生的合成气和铁基催化剂进行FT工艺的设计方案相反,建议向FT合成装置中加入H_2 / CO比为0.5的合成气,然后通过循环调节至1.4处理。结果,整个工厂的碳效率可以达到高达50%。对于在原料气中添加CO_2的问题,已证明在目前的工业浆相F-T工艺中仅起到稀释作用。

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