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LNG蒸发气中氦气提取技术及应用
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作者 陈兵 任金平 +3 位作者 孟国亮 芦娅妮 于春柳 韩泽 《石油化工设计》 CAS 2023年第1期6-9,I0001,共5页
近年来,发现鄂尔多斯盆地气田天然气液化生成的LNG蒸发气中氦含量高达3.3%,具有较大的开发利用价值。文章在阐述氦气资源和介绍市场前景基础上,分析目前国内外各类氦气生产工艺,重点对鄂尔多斯盆地气田某年产20万t的LNG工厂每日约1.56&#... 近年来,发现鄂尔多斯盆地气田天然气液化生成的LNG蒸发气中氦含量高达3.3%,具有较大的开发利用价值。文章在阐述氦气资源和介绍市场前景基础上,分析目前国内外各类氦气生产工艺,重点对鄂尔多斯盆地气田某年产20万t的LNG工厂每日约1.56×10^(4) m^(3)的含氦蒸发气处理过程中氦气提取进行工艺设计,选择采用膜分离+PSA联合的提氦工艺,提取LNG蒸发气中的氦气,该工艺不仅有效降低了设备的能耗,提高了LNG工厂生产效率,而且提取的氦气纯度高。 展开更多
关键词 天然 lng蒸发气 提取
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Low Steam Condition Heat Generator Combined with Advanced Oxy-Fuel Combustion LNG Gas Turbine for Power Generation
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作者 Kanji Oshima Yohji Uchiyama 《Journal of Energy and Power Engineering》 2012年第8期1226-1232,共7页
We propose a novel concept for power generation that involves the combination of a LSCHG (low-steam-condition heat generator), such as a light water nuclear reactor or a biomass combustion boiler, with an advanced c... We propose a novel concept for power generation that involves the combination of a LSCHG (low-steam-condition heat generator), such as a light water nuclear reactor or a biomass combustion boiler, with an advanced closed-cycle oxy-fuel combustion gas turbine-a type of complex and efficient oxy-fuel gas turbine. In this study, a LSCHG is designed to heat water to saturated steam of a few MPa, to assist in the generation of the main working fluids, instead of a compressor used in the advanced oxy-fuel gas turbine. This saturated steam can have a lower pressure and temperature than those of an existing nuclear power plant or biomass-fired power plant. We estimated plant performances in LHV (lower heating value) basis from a heat balance model based on a conceptual design of a plant for different gas turbine inlet pressures and temperatures of 1,300 ℃ and 1,500 ℃, taking into account the work to produce O2 and capture CO2. While the net power generating efficiencies of a reference plant are estimated to be about 52.0% and 56.0% at 1,300 ℃ and 1,500 ℃, respectively, and conventional LSCHG power plant is assumed to have an efficiency of about 35% or less for pressures of 2.5-6.5 MPa, the proposed hybrid plant achieved 42.8%-44.7% at 1,300 ℃ and 47.8%-49.2% at 1,500 ℃. In the proposed plant, even supposing that the generating efficiency of the LNG system in the proposed plant remains equal to that of the reference plant, the efficiency of LSCHG system can be estimated 37.4% for 6.5 MPa and 33.2% for 2.5 MPa, even though the LSHCG system may be regarded as consisting of fewer plant facilities than a conventional LSCHG power plant. 展开更多
关键词 Gas turbine oxy-fuel combustion hybrid power plant generating efficiency conceptual design.
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