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Preparation and properties of a low-cost porous ceramic support from low-grade palygorskite clay and silicon-carbide with vanadium pentoxide additives 被引量:1

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摘要 Alow-cost porous ceramic support was prepared from low-grade palygorskite clay(LPGS) and silicon carbide(SiC)with vanadium pentoxide(V_(2) O_(5)) additives by a dry-press forming method and sintering.The effects of SiC-LPGS ratio,pressing pressure,carbon powder pore-forming agent and V_(2) O_(5) sintering additives on the microstructure and performance of the supports were investigated.The addition of an appropriate amount of SiC to the LPGS can prevent excessive shrinkage of the support during sintering,and increase the mechanical strength and open porosity of the supports.The presence of SiC(34.4%) led to increases in the open porosity and mechanical strength of 40.43% ± 0.21% and(17.76 ± 0.51) MPa,respectively,after sintering at 700℃ for 3 h.Because of its low melting point,V_(2) O_(5) can melt to liquid during sintering,which increases the mechanical strength of the supports and retains the porosity.Certainly,this can also encourage efficient use of the LPGS and avoid wasting resources.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第1期417-425,共9页 中国化学工程学报(英文版)
基金 the financial support of the National Natural Science Foundation of China (No. 21978109, 21878118) Natural Science Foundation of the Jiangsu Higher Education Institutions of China (19KJA430011) Natural Science Foundation of Jiangsu Province (BK20171268) Jiangsu Province industry-university-research cooperation project (BY2019179) Jiangsu Qing Lan Project。
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  • 1CHEN Tianhu1,,XU Huifang2,LU Anhuai3,XU Xiaochun1,PENG Shuchuan1 2 &YUE Shucang1 1.College of Resources and Environmental Engineering,Hefei University of Technology,Hefei 230009,China,2.Department of Geology and Geophysics,University of Wisconsin,Madison,WI53706,USA,3.Department of Geology,Peking University,Beijing 100871,China Correspondence should be addressed to Chen Tianhu(email: tianhu@mail.hf.ah.cn or cth168@hotmail.com).Direct evidence of transformation from smectite to palygorskite:TEM investigation[J].Science China Earth Sciences,2004,47(11):985-994. 被引量:16
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