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NGCC post-combustion CO2 capture with Ca/carbonate looping: Efficiency dependency on sorbent properties, capture unit performance and process configuration

机译:NGCC燃烧后通过Ca /碳酸盐回路进行CO2捕集:效率对吸附剂特性,捕集单元性能和工艺配置的依赖性

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This paper evaluates the potential of post-combustion CO2 capture from a natural gas combined cycle (NGCC) through the use of solid sorbents at high temperatures. Experimental deactivation and residual sorption capacity parameters for various sorbents reported in the literature, as well as from own lab, are reviewed and the performance of three different Ca-based sorbents is studied in more detail: natural CaCO3, natural dolomite and synthetic CaO. Results from steady-state simulations of the Ca/carbonate looping unit show how the energy requirement for sorbent regeneration varies with sorbent properties, sorbent make-up ratio, internal heat recuperation and CO2 recirculation temperature. Net electric efficiency for a reference NGCC power plant without CO2 capture is 58.1% on a lower heating value basis and 49.5% for 90% CO2 capture rate with MEA. In comparison, an NGCC combined with looping of synthetic CaO sorbent and an advanced secondary steam cycle reaches a net electric efficiency of 53.1% for a capture rate above 90%. It is concluded that in addition to improved sorbent capacity and stability, heat recuperation in the solid streams between the carbonator and calciner as well as high CO2 recycle temperature are important for obtaining the high overall power plant efficiency
机译:本文通过在高温下使用固体吸附剂评估了天然气联合循环(NGCC)燃烧后捕集CO2的潜力。回顾了文献中以及来自自己实验室的各种吸附剂的实验失活和残余吸附容量参数,并更详细地研究了三种不同的基于钙的吸附剂的性能:天然CaCO3,天然白云石和合成CaO。 Ca /碳酸盐回路单元的稳态模拟结果表明,吸附剂再生的能量需求如何随吸附剂性能,吸附剂补充比,内部换热和CO2再循环温度而变化。在较低热值的基础上,未捕获CO2的参考NGCC电厂的净电效率为58.1%,对于采用MEA的90%CO2捕获率,其净电效率为49.5%。相比之下,NGCC与合成CaO吸附剂的循环和先进的二次蒸汽循环相结合,对于90%以上的捕获率,净电效率达到53.1%。结论是,除了提高吸附剂的容量和稳定性外,碳酸化炉和煅烧炉之间的固体流中的热回收以及较高的CO2循环温度对于获得较高的整体电厂效率也很重要。

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