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Preparation and application of the SGCS-made CaO/ZrO2 sorbent for cyclic CO2 capture

机译:SGCS制CaO / ZrO2循环吸附剂的制备及应用

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Calcium looping method was considered as one of the efficient and cost-effective options to mitigate CO2 emssion from coal combustion and gasification processes. The decay of CO2 capture capacity for the CaO-based sorbent over multiple carbonation/calcination cycles is of a great concern and hinder its application in the realistic CO2 capture process.A CaO-ZrO2 sorbent was synghesized using the novel sol-gel combustion synthesis (SGCS) method and its reaction characteristics were further evaluated under the realistic coniditon,where the calcination temperatue was set as 950℃and the clacination atmosphere adopted was pure CO2. The experimental results over eighteen looping cycles for the synthetic CaO-ZrO2 sorbents indicated that the decay of CO2 capture and conversion under the realistic calicination condition was not avoided due to the severe sintering,and Ca8Zr2 should be preferred in the realistic CO2 capture process with regard to its reaction characteristics (including its CO2 capture capacity,conversion and deactivation constant) and economical factor.Finally,observation of the Ca8Zr2 sorbent over eighteen cycles by FSEM (field emission scanning electron microscopy) reavealed that the decaying of its CO2 capture capacity was mainly resulted from the closure of mesore pores present in the targeted sorbents.
机译:钙循环法被认为是减轻燃煤和气化过程中二氧化碳排放的有效且具有成本效益的选择之一。在多个碳酸化/煅烧循环中,CaO基吸附剂的CO2捕集能力下降是一个令人关注的问题,并阻碍了其在实际的CO2捕集过程中的应用。在煅烧温度为950℃,汽化气氛为纯CO2的条件下,进一步评价了SGCS法及其反应特性。合成CaO-ZrO2吸附剂在18个循环循环中的实验结果表明,由于严重的烧结,在实际煅烧条件下无法避免CO2捕获和转化的衰减,在实际的CO2捕获过程中应首选Ca8Zr2最后,通过FSEM(场发射扫描电子显微镜)观察Ca8Zr2吸附剂在十八个循环中的变化表明,其CO2捕集能力的下降主要是由于它的CO2捕集能力,转化率和失活常数。这是由于封闭了目标吸附剂中存在的介孔孔造成的。

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