IGCC装置集成与可达多目标热经济优化

Z. Ye, H. Mohamadian, Yongmao Ye
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引用次数: 2

摘要

IGCC工厂的气化过程能够生产电力作为主要产品,并生产热量和一些化学品(例如硫、炉渣)作为副产品。为了证明其大规模生产的可行性,需要采用IGCC控制和优化方法,通过IGCC系统集成来提高其特性性能和环境可持续性。采用先进的控制技术对IGCC装置的多个部件(压缩机、空分装置、气化炉、气体净化系统、燃气轮机循环和蒸汽轮机循环)进行热经济优化。IGCC技术可以实现煤炭的环保使用。它将煤转化为合成气,并将其输送到燃气轮机系统。当燃气轮机在固体碳质材料气化后排放的气体燃料上燃烧时,这个循环成为一个整体循环。与此同时,面向控制的热经济优化在这一潜在的广泛商业技术中发挥着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of IGCC Plants and Reachable Multi-Objective ThermoEconomic Optimization
The gasification process of IGCC plants enables the production of electricity as main product and production of heat and some chemicals (e.g., sulfur, slag) as by-products. In order to testify its feasibility for large scale production, IGCC control and optimization methodologies are needed to enhance its characteristic performance and environmental sustainability via IGCC system integration. Thermoeconomic optimization has been proposed to coordinate multiple components of IGCC plants (compressor, air separation unit, gasifier, gas cleanup system, gas turbine cycle and steam turbine cycle) using advanced control technologies. IGCC technology allows the environment-friendly use of coal. It converts coal to synthesis gas and sends it to the gas turbine system. When gas turbine is fired on a gas fuel emitted from gasification of solid carbonaceous material, this cycle becomes an integrate cycle. In the mean while, control oriented thermoeconomic optimization takes an important role in this potentially widespread commercial technology.
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