标题: | 层状水滑石的合成、再生与对二氧化碳之吸附研究 Synthesis, Regeneration and CO2 Adsorption of Layered Double Hydroxide |
作者: | 钟睿旗 Chung, Jui-Chi 陈三元 Chen, San-Yuan 材料科学与工程学系 |
关键字: | 层状水滑石;再生;二氧化碳吸附剂;共沉法;高温吸附剂;Layered Double Hydroxide;LDH;CaFe-LDH;Regeneration;CO2 Adsorption;coprecipitation;high temperature |
公开日期: | 2012 |
摘要: | 针对二氧化碳捕捉技术中高温吸附材料的研究,本文将分为两大部分。第一部分为合成不同Ca/Fe-NO3莫耳比例之层状水滑石材料,以XRD、SEM进行结构鉴定及表面型态观察,再利用TGA于不同温度环境测量其二氧化碳吸附量,其中,CaFe-NO3其吸附温度介于600-800oC之间,并且经过多次吸脱附回圈,二氧化碳之吸附量并无严重减少。除此之外,不同阴离子根之CaFe-CO3亦被成功的合成出来,其与NO3最大之差异为层间距的变化,以及拥有较快的吸附动力;并且同样具有稳定之二氧化碳吸脱附回圈。 第二部分为CaAl-LDH以及CaFe-LDH的再生条件因子的探讨,其中当再生为20 mL纯水室温下反应12小时之条件,将有最佳之结构回复结果,除此之外,以TGA进行多次二氧化碳吸脱附回圈测试,经过再生之样品拥有稳定的吸脱附回圈,而当再生条件为0.5 mL纯水室温下反应12小时的样品,其吸附量将回复到与原始相似。同时本研究亦发现,结构再生的过程中,水溶液为结构重组之驱动力。 Calcium based layer double hydroxides (LDHs) are good adsorbent candidate for captureing carbon dioxde (CO2) at high temperature. In this study, first, Calcium and iron containing layer double hydroxides (CaFe-LDHs) with different molar ratio were synthesized. The layer structure and the morphology of material have been characterized by XRD and SEM. TGA was used to test for the sorption of CO2 at different temperature. We observed CaFe-NO3-LDH has high CO2 sorption capacities in high temperature range from 600-800oC, and furthermore these materials have stable CO2 capture capacity during carbonation/calcination cycles. Different kind of anion CaFe-CO3-LDHs has also been synthesized. The adsorption kinetic of CaFe-CO3-LDHs is faster than CaFe-NO3-LDHs, and same as CaFe-NO3-LDHs the capacity is stable during CO2 capture carbonation/calcination cycles. The Second parts of this study, many kinds of condition which effects regeneration of CaAl-LDH and CaFe-LDH have been observed. While the regeneration solution is deionized water 20mL, and reaction at room temperature for 12 hours, the reconstruction of LDH structure would be better. After regeneration process, the stability of CO2 capture capacity during carbonation/calcination cycles is quite stable. Moreover, when the regeneration of solution is 5mL, the sorption capacity of CO2 would be good as initial LDH. During the regeneration process, aqueous solution is the driving force for the structure reconstruction. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079918533 http://hdl.handle.net/11536/49628 |
显示于类别: | Thesis |