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China's first pilot-scale demonstration of post-combustion CO2 capture from a natural-gas-fired power plant

机译:中国首个天然气发电厂燃烧后捕集二氧化碳的中试示范

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The CO2 concentration of flue gas from a natural-gas-fired power plant is only about 50% of that from a coal-fired plant. In contrast, the O-2 concentration is more than double, which makes it more difficult to capture CO2 from the former source. China Huaneng Group, which is the largest power generation company in the world, has demonstrated post-combustion CO2 capture (PCC) in two coal-fired plants at a scale of 3 kt/y and 120 kt/y, and has now developed the capture technology for gas-fired power plants for the first time in China. A 100 kg/h CO2 capture pilot plant from natural-gas-fired flue gas has been built and the technology verification program has been conducted continuously for 4000 h. In this work, a novel PCC system with mechanical vapor recompression (MVR) was introduced, and the secondary pollutants from the absorber, material corrosion, solvent loss, and energy penalty during the verification test were investigated. From the aspect of pollutants control of the tail gas from the absorber, the volatile solvent content is less than 0.17 ppm, and total nitrosamine is less than 3 g/Nm(3). Compared with the traditional regeneration mode of steam, the energy penalty can be reduced by 10%approximate to 15% by using the novel Steam-Flash-MVR system. This indicates that the system and process is technically feasible for CO2 capture from natural gas power plant, the solvent used is robust and reliable in long-time operation with a low corrosion and degradation rate. (c) 2015 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:天然气发电厂的烟道气CO2浓度仅为燃煤发电厂的烟道气CO2浓度的约50%。相反,O-2的浓度是原来的两倍以上,这使得从前一个来源捕获CO2更加困难。中国华能集团是世界上最大的发电公司,已在两家燃煤电厂分别以3 kt / y和120 kt / y的规模展示了燃烧后的CO2捕集(PCC),现已开发出首次在天然气发电厂捕获技术。已建立了一个以100千克/小时的天然气燃烧烟气捕集二氧化碳的中试装置,并持续进行了4000小时的技术验证计划。在这项工作中,介绍了一种具有机械蒸气再压缩(MVR)的新型PCC系统,并研究了吸收塔中的二次污染物,材料腐蚀,溶剂损失和验证试验过程中的能量损失。从控制吸收塔尾气的污染物来看,挥发性溶剂含量小于0.17 ppm,总亚硝胺小于3 g / Nm(3)。与传统的蒸汽再生模式相比,使用新型的Steam-Flash-MVR系统可以将能耗降低10%左右至15%。这表明该系统和方法在技术上是可行的,可用于天然气发电厂的二氧化碳捕集,所使用的溶剂在长期运行中稳定且可靠,腐蚀和降解率低。 (c)2015年化学工业协会和John Wiley&Sons,Ltd

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