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The Concept of an Energy-Technological Complex for Using Natural Gas in the Production of Electric Power, Heat, and Synthetic Liquid Fuel with Partial Sequestering of Carbon Dioxide Emissions into the Atmosphere

机译:用于在生产电力,热量和合成液体燃料生产中使用天然气的能源技术复合物的概念,其中分别依赖于大气中的二氧化碳排放量

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The article provides a description and comparative analysis of the original integrated technology for using natural gas with the simultaneous production of energy and synthetic liquid motor fuel and the partial sequestration of carbon dioxide. The installation operates in two main modes: it generates electricity, heat, and methanol during daylight hours. During night hours of the electric load, CO_(2)is partially extracted from the flue gases using the mastered industrial technology, which is converted in a plasmatron with the addition of natural gas and water vapor into synthesis gas, which is significantly richer in hydrogen and carbon monoxide than daytime gas. The resulting additional synthesis gas is sent to a methanol synthesis catalytic reactor, in which, thanks to the use of richer synthesis gas, the methanol synthesis process is accelerated on existing equipment. At the same time, the energy-generating part of the plant’s equipment operates in almost the same mode, although the supply of useful electricity in accordance with the requirements of the power system is reduced several times. The use of a single-pass methanol synthesis reactor drastically reduces the size and cost of synthesis unit equipment. At the same time, a significant content of unreacted useful gases (H_(2)and CO) at the outlet of the synthesis reactor is not a drawback of the scheme since the exhaust gases are used as fuel for an energy gas turbine plant. A feature of the proposed technology is the beneficial use of CO_(2)during the night period, which, in addition to a significant reduction in its emissions into the atmosphere at this time, simultaneously and without additional costs, also solves the problems associated with its disposal since carbon dioxide is used inside the technological scheme as a raw material for obtaining additional amounts of synthesis gas. Compared with existing plants for the separate production of electricity, heat, and methanol, the proposed technological scheme will allow achieving natural gas savings of approximately 20% and reduce atmospheric CO_(2)emissions by up to 30%.
机译:本文提供了利用天然气的原始综合技术的描述和比较分析,具有同时生产能量和合成液体电机燃料以及二氧化碳的部分隔离。该安装以两种主要模式运行:它在白天产生电力,热量和甲醇。在夜间的电负载期间,CO_(2)使用掌握的工业技术部分地从烟道气部分中提取,该工业技术通过将天然气和水蒸气添加到合成气中,在纤维素中转化为合成气,这在氢气中显着富裕和一氧化碳多于白天气体。所得另外的合成气体被送至甲醇合成催化反应器,因为由于使用更丰富的合成气,在现有设备上加速了甲醇合成过程。同时,工厂的设备的能量产生部分以几乎相同的模式运行,尽管根据电力系统的要求供应有用的电量几次。使用单遍甲醇合成反应器的使用大大降低了合成单元设备的尺寸和成本。同时,合成反应器的出口处的未反应有用的气体(H_(2)和CO)的显着含量不是方案的缺点,因为废气用作能量燃气轮机厂的燃料。拟议技术的一个特征是夜间期间有益使用的CO_(2),除了目前其排放到大气中的显着降低,同时且不额外成本,还解决了与之相关的问题它的处理由于二氧化碳在技术方案中使用,作为获得额外的合成气量的原料。与现有工厂相比,用于单独生产电力,热量和甲醇,所提出的技术方案将允许实现约20%的天然气节省约20%,并将大气CO_(2)排放量降低至多30%。

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