期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Mg/Y改性Ca基吸附剂强化吸附CO_(2)试验 被引量:2
1
作者 匡盛铎 陈炜 +3 位作者 林文升 王傲 刘晟言 田冲 《洁净煤技术》 CAS 北大核心 2022年第10期195-202,共8页
在碳中和背景下,CO_(2)捕集与封存技术的开发与应用刻不容缓。Ca基吸附剂对CO_(2)捕集能力强、吸附量高,是良好的碳捕集吸附剂,但其循环性能有待提升。为提升Ca基吸附剂的循环性能,采用溶胶凝胶自蔓延燃烧法制备镁/钇(Mg/Y)改性Ca基吸附... 在碳中和背景下,CO_(2)捕集与封存技术的开发与应用刻不容缓。Ca基吸附剂对CO_(2)捕集能力强、吸附量高,是良好的碳捕集吸附剂,但其循环性能有待提升。为提升Ca基吸附剂的循环性能,采用溶胶凝胶自蔓延燃烧法制备镁/钇(Mg/Y)改性Ca基吸附剂,利用XRD/SEM等手段对其进行表征,通过热重仪和固定床在700℃高温下进行循环吸附试验,考察了改性Ca基吸附剂的吸附性能与循环稳定性。结果表明,Mg掺杂Ca基吸附剂中,Ca与Mg质量比为8∶2时吸附剂性能最佳,第1次循环中CO_(2)吸附量高达0.60 g/g(以吸附剂计),15次循环后衰减至0.49 g/g,优于未掺杂Ca基吸附剂。对Mg和Y掺杂Ca基吸附剂的研究表明,Ca/Mg吸附剂的初始吸附量高于Ca/Y吸附剂,但Ca/Y吸附剂的循环性能明显提升。保持吸附剂中CaO质量分数为80%,比较双掺杂(Ca/Mg/Y)和单一掺杂(Ca/Mg、Ca/Y)改性Ca基吸附剂的吸附性能和循环性能。结果表明,初始吸附量最高的为Ca/Mg吸附剂,达0.60 g/g, 5次循环后衰减至0.54 g/g左右,15次循环后为0.49 g/g;Ca/Y吸附剂吸附量15次循环内维持在0.52~0.58 g/g;Ca/Mg/Y吸附剂5次循环吸附的吸附量由0.50 g/g提高至0.56 g/g左右,吸附量随循环次数增加明显上升。Mg/Y掺杂后的Ca基吸附剂CO_(2)循环吸附性能提升,且Y掺杂的效果优于Mg。 展开更多
关键词 碳中和 CO_(2)吸附 ca基吸附剂 掺杂改性 Mg/Y掺杂 循环吸附
下载PDF
HCl Dry Removal with Modified Ca-Based Sorbents at Moderate to High Temperatures 被引量:3
2
作者 DezhenChen XiongpingWang +1 位作者 TongZhu HeshengZhang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2003年第3期283-288,203,共7页
Modified Ca-based sorbents were obtained by adding sodium alkali into Ca(OH)2 and CaCO3. Reactive properties of modified Ca-based sorbents with acidic gases were investigated through reacting with gaseous HC1 at 450-... Modified Ca-based sorbents were obtained by adding sodium alkali into Ca(OH)2 and CaCO3. Reactive properties of modified Ca-based sorbents with acidic gases were investigated through reacting with gaseous HC1 at 450-760℃, and SEM and XRD technologies were adopted to get information on the reaction mechanism. Experimental data showed that HC1 dry removal efficiencies increased with temperature before 700℃ for all of the investigated sorbents, and there existed improved sorbents that corresponded to the highest removal efficiencies under the similar conditions. SEM photographs exhibited morphology difference between original and improved sorbents both before and after the reaction; and displayed that improved sorbents formed more porous product layers than original sorbents especially at higher temperature when product sintering became heavier, which is favorable to HC1 dry removal. XRD analysis showed that (1) improved Ca(OH)2 and CaCO3 were less crystalline than original lime and limestone; (2) the reaction product species of improved Ca(OH)2 changed with reaction temperature, while for original Ca(OH)2 the same product species appeared for all of the tested temperatures; and (3) for improved CaCO3, the only product at lower temperatures was CaCl2.2H2O and more product species were produced when temperature was higher than 650℃, but no CaCl2.Ca(OH)2.H2O formed at 700℃, while for the case of original CaCO3, the undesired CaCl2.Ca(OH)2.H2O appeared at 700℃. Presently, reaction temperature interval of 650-700℃ is recommended for improved Ca(OH2) to get the highest efficiency, for improved CaCO3 reaction at higher temperature deserves further investigation to make a good choice. 展开更多
关键词 HC1 dry removal improved ca(OH)2 and caCO3 ca-based sorbent reaction temperature product species
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部