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溶胶-凝胶一釜法Al_2O_3-C杂化气凝胶的合成和表征(英文) 被引量:3
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作者 张睿 蒋宁 +2 位作者 段晓佳 金双玲 金鸣林 《新型炭材料》 SCIE EI CAS CSCD 北大核心 2017年第3期258-264,共7页
用Al(NO_3)_3·9H_2O作为Al_2O_3源,间苯二酚-糠醛为碳源,环氧丙烷为凝胶促进剂,通过溶胶-凝胶方法一釜合成了湿凝胶,并经超临界正己烷干燥和碳化制备了Al_2O_3-C杂化气凝胶。研究了Al_2O_3含量、间苯二酚-糠醛浓度和环氧丙烷/铝摩... 用Al(NO_3)_3·9H_2O作为Al_2O_3源,间苯二酚-糠醛为碳源,环氧丙烷为凝胶促进剂,通过溶胶-凝胶方法一釜合成了湿凝胶,并经超临界正己烷干燥和碳化制备了Al_2O_3-C杂化气凝胶。研究了Al_2O_3含量、间苯二酚-糠醛浓度和环氧丙烷/铝摩尔比对所合成的杂化气凝胶孔隙性质的影响。结果表明,此杂化气凝胶均为中孔结构,其平均孔径小于20 nm,Al_2O_3属于γ-型结构但X射线衍射峰很宽。杂化气凝胶在Al_2O_3含量小于5.31 wt%和间苯二酚-糠醛浓度为10 g/mL时可形成整体块状。在其他条件相同的情况下,中孔孔容、BET比表面、外表面积和中孔孔径随环氧丙烷/铝摩尔比增加而增大。制备过程中凝胶的体积收缩率和炭化收率随Al_2O_3含量增加而增大,但密度随Al_2O_3含量增加在4.93 wt%处达到最大。中孔孔容和孔径以及外表面积在环氧丙烷/铝摩尔比为5和6时随间苯二酚-糠醛浓度增加而减小,而在环氧丙烷/铝摩尔比为4时随间苯二酚-糠醛浓度增加而增大。 展开更多
关键词 氧化铝-化气 - 超临界干燥
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CRF气凝胶的结构特性研究 被引量:6
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作者 蒋伟阳 沈军 +1 位作者 周斌 王珏 《功能材料》 EI CAS CSCD 1996年第4期350-352,共3页
间苯二酚-甲醛气凝胶(RF气凝胶)是一种无序、多孔的纳米非晶固态材料,其碳化产物碳化气凝胶(CRF气凝胶)具有大的比表面积,好的导电性和电化学稳定性。成为制备超级电化学双层电容器的理想电极材料。本文研究了CRF的网络... 间苯二酚-甲醛气凝胶(RF气凝胶)是一种无序、多孔的纳米非晶固态材料,其碳化产物碳化气凝胶(CRF气凝胶)具有大的比表面积,好的导电性和电化学稳定性。成为制备超级电化学双层电容器的理想电极材料。本文研究了CRF的网络结构、成份组成、孔径分布及电导率等特性,为CRF的实际应用奠定了基础。 展开更多
关键词 碳化气凝胶 结构特性
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Preparation and Application of the Sol–Gel Combustion Synthesis-Made CaO/CaZrO_3 Sorbent for Cyclic CO_2 Capture Through the Severe Calcination Condition 被引量:5
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作者 王保文 宋小勇 +1 位作者 王宗华 郑楚光 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第9期991-999,共9页
Calcium looping method has been considered as one of the efficient options to capture C02 in the combustion Ilue gas. CaO-based sorbent is the basis for application of calcium looping and should be subjected to the se... Calcium looping method has been considered as one of the efficient options to capture C02 in the combustion Ilue gas. CaO-based sorbent is the basis for application of calcium looping and should be subjected to the severe calcination condition so as to obtain the concentrated C02 stream. In this research, CaO/CaZrO3 sorbents were synthesized using the sol-gel combustion synthesis (SGCS) method with urea as fuel. The cyclic reaction performance of the synthesized sorbents was evaluated on a lab-scaled reactor system through calcination at 950 ℃ in a pure C02 atmosphere and carbonation at 650 ℃ in the 15% (by volume) C02. The mass ratio of CaO to CaZr03 as 8:2 (designated as CasZr2) was screened as the best option among all the synthesized CaO sorbents for its high CO2 capture capacity and carbonation conversion at the initial cycle. And then a gradual decay in the C02 capture capacity was observed at the following 10 successive cycles, but hereafter stabilized throughout the later cycles. Furthermore, structural evolution of the carbonated CasZr2 over the looping cycles was investigated. With increasing looping cycles, the pore peak and mean grain size of the carbonated CasZr2 sorbent shifted to the bigger direction but both the surface area (SA) ratio and surface fractal dimension Ds decreased. Finally, morphological transformation of the carbonated CasZr2 was observed. Agglomeration and edge rounding of the newly formed CaC03 grains were found as aggravated at the cyclic carbonation stage. As a result, carbonation of CasZr2 with C02 was observed only confined to the external active CaO by the fast formation of the CaC03 shell outside, which occluded the further carbonation of the unreacted CaO inside. Therefore, enough attention should be paid to the carbonation stage and more effective activation measures should be explored to ensure the unreacted active CaO fully carbonatPd river the extended Ioonin cycles. 展开更多
关键词 C02 captureCalcium looping cyclesCaO/CaZr03 sorbentSol-gel combustion synthesis method
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THE FABRICATION OF CARBON AEROGELS BY GELATION IN ISOPROPANOL WITH BASIC CATALYST 被引量:1
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作者 WU Dingcai ZHANG Shuting FU Ruowen 《Chinese Journal of Reactive Polymers》 2003年第1期26-31,共6页
A new method for the fabrication of carbon aerogels is reported in this paper. Resorcinol and furfural were gelated in isopropanol with basic catalysts and then dried directly under isopropanol supercritical condition... A new method for the fabrication of carbon aerogels is reported in this paper. Resorcinol and furfural were gelated in isopropanol with basic catalysts and then dried directly under isopropanol supercritical condition, followed by carbonization under nitrogen atmosphere. The bulk densities of carbon aerogels obtained are in the range of 0.21g/cm3~0.27g/cm3 and the sizes of the interconnected carbon nano-particles are in the range of 20nm^30nm. All of the aerogel samples exhibit high BET surface areas in the range of 730m2/g^900m2/g. The bulk density, micro-pore volume, meso-pore volume and meso-pore diameter can be controlled by gelation conditions such as R/I ratio and R/C ratio. 展开更多
关键词 Carbon aerogel Basic catalyst Isopropanol supercritical drying
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