期刊文献+

类水滑石Ti/Li/Al-LDHs的制备及其CO_2吸附性能 被引量:4

Preparation of hydrotalcite-like Ti/Li/Al-LDHs and its performance in CO_2 adsorption
下载PDF
导出
摘要 采用共沉淀法制备了一系列新型的类水滑石Ti/Li/Al-LDHs材料,通过原子吸收光谱(AAS)、X射线衍射(XRD)、扫描电镜(SEM)、热重分析(TG)和傅里叶变换红外光谱(FT-IR)等技术对其进行了表征,研究了不同金属元素比例和焙烧温度对该Ti/Li/Al-LDHs材料的结构、形貌及其CO_2吸附性能的影响。结果表明,当Ti/Li/Al比为1∶3∶4时,水滑石Ti/Li/AlLDHs的结晶度最好,形貌最规整,而Ti/Li/Al比为1∶3∶2、300℃下焙烧后得到的Ti_1Li_3Al_2-LDHs_(300)的CO_2吸附性能最好。Ti_1Li_3Al_2-LDHs_(300)上CO_2吸附量可达53.5 mg/g,10次循环吸附后,CO_2吸附量仅下降了2.4%。 A series of hydrotalcite-like Ti/Li/Al-LDHs materials were prepared by co-precipitation method and characterized by atomic absorption spectrophotometer ( AAS ) , X-ray diffraction ( XRD ) , scanning electron microscopy ( SEM) , thermal gravimetric analysis ( TG) and Fourier transform infrared ( FT-IR); the influence of metal composition and calcination temperature on the structure, morphology and CO2 adsorption capacity of Ti/Li/Al-LDHs was investigated. The results showed that Ti1 Li3 Al4-LDHs obtained with a Ti/Li/Al ratio of 1:3:4 displays the highest crystallinity and regular morphology, whereas Ti1 Li3 Al2-LDHs300 prepared with a Ti/Li/Al ratio of 1:3:2 and calcined at 300℃ exhibits the best adsorption performance towards CO2 . The CO2 adsorption capacity over Ti1 Li3 Al2-LDHs300 reaches 53. 5 mg/g; in addition, the adsorption capacity is only decreased by 2. 4% after adsorption for 10 cycles.
出处 《燃料化学学报》 EI CAS CSCD 北大核心 2016年第8期1017-1024,共8页 Journal of Fuel Chemistry and Technology
基金 国家自然科学基金(51074122)资助~~
关键词 水滑石 Ti/Li/Al-LDHs 金属元素 焙烧 二氧化碳 吸附 layered double hydroxides Ti/Li/Al-LDHs metal element calcination carbon dioxide adsorption
  • 相关文献

参考文献4

二级参考文献48

  • 1Kannan S,Swamy C S.J.Mater.Sci.Lett.,1992,11(23):1585-1587.
  • 2West A R.Solid State Chemistry and Its Applications.NewYork:Wiley,1990:310-319.
  • 3Gusi S,Pizzoli F,Trifiro F.Preparation of CatalystsⅣ.Amsterdam:Elsevier,1987:469-476.
  • 4Li D Q,Evans D G,Duan X,et al.J.Solid State Chem.,2006,179:3114-3120.
  • 5Cavani F,Trifiro F,Vaccari A.J.Catal.Today,1991,11:173.
  • 6Trifiro F,Vaccari A.Comprehensive Supermolecular Chemistry.Oxford:Pergamon,1996:251-255.
  • 7Nyambo C,Chen D,Su S P,et al.Degradation Stability.2009,94:496-505.
  • 8Naime F J,Silverio F,Dosreis M J,et al.J.Mater.Sci.,2008,43:6986-6991.
  • 9Huang G L,Ma S L,Zhao X H,et al.J.Chem.Mater.,2010,22:1870-1877.
  • 10Olfs H W,Torres-Dorante L O,Eckelt R,et al.J.Appl.ClaySci.,2009,43:459-464.

共引文献16

同被引文献26

引证文献4

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部