首页> 外文期刊>Computers & Chemical Engineering >Process synthesis of hybrid coal, biomass, and natural gas to liquids via Fischer-Tropsch synthesis, ZSM-5 catalytic conversion, methanol synthesis, methanol-to-gasoline, and methanol-to-olefins/distillate technologies
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Process synthesis of hybrid coal, biomass, and natural gas to liquids via Fischer-Tropsch synthesis, ZSM-5 catalytic conversion, methanol synthesis, methanol-to-gasoline, and methanol-to-olefins/distillate technologies

机译:通过费-托合成,ZSM-5催化转化,甲醇合成,甲醇制汽油和甲醇制烯烃/馏出液技术将混合煤,生物质和天然气转化为液体

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摘要

Several technologies for synthesis gas (syngas) refining are introduced into a thermochemical based superstructure that will convert biomass, coal, and natural gas to liquid transportation fuels using Fischer-Tropsch (FT) synthesis or methanol synthesis. The FT effluent can be (i) refined into gasoline, diesel, and kerosene or (ii) catalytically converted to gasoline and distillate over a ZSM-5 zeolite. Methanol can be converted using ZSM-5 (i) directly to gasoline or to (ii) distillate via olefin intermediates. A mixed-integer nonlinear optimization model that includes simultaneous heat, power, and water integration is solved to global optimality to determine the process topologies that will produce the liquid fuels at the lowest cost. Twenty-four case studies consisting of different (a) liquid fuel combinations, (b) refinery capacities, and (c) superstructure possibilities are analyzed to identify important process topological differences and their effect on the overall system cost, the process material/energy balances, and the well-to-wheel greenhouse gas emissions.
机译:几种合成气(合成气)精炼技术被引入到基于热化学的上部结构中,该结构将使用费托(FT)合成或甲醇合成将生物质,煤炭和天然气转化为液体运输燃料。 FT废水可以(i)精炼成汽油,柴油和煤油,或(ii)在ZSM-5沸石上催化转化为汽油和馏出物。可以使用ZSM-5将甲醇直接(i)转化为汽油或通过烯烃中间体转化为(ii)馏出物。将同时进行热,功率和水集成的混合整数非线性优化模型求解为全局最优,以确定将以最低成本生产液体燃料的过程拓扑。对由不同(a)液体燃料组合,(b)炼油厂容量和(c)上层建筑可能性组成的二十四个案例研究进行了分析,以确定重要的过程拓扑差异及其对整体系统成本,过程材料/能量平衡的影响,以及温室气体排放。

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