首页> 外文会议>International conference on energy sustainability;ES2010 >A SYSTEM-LEVEL SIMULATION MODEL OF POLY-GENERATION PLANT BASED ON GASIFICATION TECHNOLOGY WITH METHANOL AND POWER GENERATION
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A SYSTEM-LEVEL SIMULATION MODEL OF POLY-GENERATION PLANT BASED ON GASIFICATION TECHNOLOGY WITH METHANOL AND POWER GENERATION

机译:基于甲醇气化发电的多联产厂系统级仿真模型

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This study presents a system-level simulation model with the commercial chemical process simulator, Pro/II~® V8.1.1, for poly-generation applications, based on gasification technology. The feedstock is coal and the products are electricity and methanol. There are five major blocks in the simulated poly-generation plant, i.e. air separation unit (ASU), gasification unit, gas clean-up unit, combined cycle, and methanol synthetic unit. The first four blocks can be combined for electricity generation, i.e. integrated gasification combined cycle (IGCC).The study performs two analyses of basic case and poly-generation. The basic case is the benchmark case which is verified with the reference data from United States Environment Protection Agency. The poly-generation case is based on the basic case model, and to simulate a feasible case with actual parameters in Taiwan. The simulated outcome shows that the power output is 262.35 MW and the methanol production is 1,768.8 ton per day. The gross and net efficiency (HHV) of the integrated gasification poly-generation case are 52.75% and 46.42%, respectively. The latter is higher than the counterpart of traditional IGCC plants by over 4% points. In conclusion, integrated gasification poly-generation process provides an alternative choice to reduce the dependence on fossil fuels, especially crude oil, in Taiwan.
机译:本研究基于商业化的化学过程仿真器Pro / II〜®V8.1.1,基于气化技术,为多联产应用提供了系统级仿真模型。原料是煤炭,产品是电和甲醇。模拟的多联产电厂有五个主要模块,即空气分离装置(ASU),气化装置,气体净化装置,联合循环和甲醇合成装置。前四个区块可以合并发电,即集成气化联合循环(IGCC)。 该研究对基本案例和多重生成进行了两种分析。基本案例是基准案例,已通过美国环境保护局的参考数据进行了验证。多代案例基于基本案例模型,并使用台湾的实际参数模拟可行案例。模拟结果表明,发电量为262.35 MW,甲醇产量为每天1,768.8吨。整体气化多联产案例的总效率和净效率(HHV)分别为52.75%和46.42%。后者比传统IGCC工厂高出4%以上。总之,综合气化多联产工艺为减少台湾对化石燃料(尤其是原油)的依赖提供了另一种选择。

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