中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2013年
23期
99-106
,共8页
张平平%陈惠超%段钰锋%桑圣欢%冒咏秋
張平平%陳惠超%段鈺鋒%桑聖歡%冒詠鞦
장평평%진혜초%단옥봉%상골환%모영추
溶胶凝胶合成法%钙基吸收剂%煅烧/碳酸化%CO2减排
溶膠凝膠閤成法%鈣基吸收劑%煅燒/碳痠化%CO2減排
용효응효합성법%개기흡수제%단소/탄산화%CO2감배
sol-gel synthesis%calcium-based sorbent%calcination/carbonation%CO2 sequestration
钙基吸收剂循环煅烧/碳酸化反应是燃煤电站捕获CO2的最有效方法之一。为了解决吸收剂在吸收 CO2过程中随着反应次数增加碳酸化能力迅速衰减的问题,采用溶胶凝胶燃烧合成法分别制备了2种复合钙基吸收剂:CaO/MgO (摩尔比=10:1)和 CaO/MnO2(摩尔比=100:2)。研究不同反应条件对吸收剂循环碳酸化特性的影响,获得了最佳反应条件。研究表明,该方法制备的吸收剂微观结构蓬松,碳酸化性能大幅度提高,2种吸收剂随循环次数的增加转化率衰减缓慢,经过50次反应转化率仍高达0.792和0.758,约为石灰石的2.26和2.17倍。
鈣基吸收劑循環煅燒/碳痠化反應是燃煤電站捕穫CO2的最有效方法之一。為瞭解決吸收劑在吸收 CO2過程中隨著反應次數增加碳痠化能力迅速衰減的問題,採用溶膠凝膠燃燒閤成法分彆製備瞭2種複閤鈣基吸收劑:CaO/MgO (摩爾比=10:1)和 CaO/MnO2(摩爾比=100:2)。研究不同反應條件對吸收劑循環碳痠化特性的影響,穫得瞭最佳反應條件。研究錶明,該方法製備的吸收劑微觀結構蓬鬆,碳痠化性能大幅度提高,2種吸收劑隨循環次數的增加轉化率衰減緩慢,經過50次反應轉化率仍高達0.792和0.758,約為石灰石的2.26和2.17倍。
개기흡수제순배단소/탄산화반응시연매전참포획CO2적최유효방법지일。위료해결흡수제재흡수 CO2과정중수착반응차수증가탄산화능력신속쇠감적문제,채용용효응효연소합성법분별제비료2충복합개기흡수제:CaO/MgO (마이비=10:1)화 CaO/MnO2(마이비=100:2)。연구불동반응조건대흡수제순배탄산화특성적영향,획득료최가반응조건。연구표명,해방법제비적흡수제미관결구봉송,탄산화성능대폭도제고,2충흡수제수순배차수적증가전화솔쇠감완만,경과50차반응전화솔잉고체0.792화0.758,약위석회석적2.26화2.17배。
The cyclic calcination/carbonation reaction of calcium-based sorbents is one of the most effective approaches for CO2 capture for coal-fired power plants. Two kinds of calcium-based sorbents with mole ratios of [CaO]/[MgO] =10 : 1 and [CaO]/[MnO2] = 100 : 2 were synthesized by sol-gel process to solve the problem of sharp decay in carbonation conversion efficiency after many calcination/carbonation cycles. The carbonation properties of the sorbents were investigated under different reaction conditions and the best reaction condition under which the highest carbonation rate achieved was found. The experimental results indicate that a hollow and abounding microstructure in the calcium-based sorbents synthesized by sol-gel process is the reason for the improved carbonation performance. The carbonation conversion rates of the synthesized sorbents are up to 0.792 and 0.758, 2.26 and 2.17 times of the raw CaCO3 sorbent, respectively, after 50 calcination/carbonation cycles.