| Literature DB >> 24727016 |
Qikai Lü1, Xinfa Dong2, Zhiwen Zhu3, Yingchao Dong4.
Abstract
Porous mullite ceramic supports for filtration membrane were successfully fabricated via recycling of coal gangue and bauxite at sintering temperatures from 1100 to 1500°C with corn starch as pore-forming agent. The dynamic sintering behaviors, phase evolution, shrinkage, porosity and pore size, gas permeation flux, microstructure and mechanical property were systematically studied. A unique volume-expansion stage was observed at increased temperatures from 1276 to 1481°C caused by a mullitization-crystal-growth process. During this stage, open porosity increases and pore size distributions broaden, which result in a maximum of nitrogen gas flux at 1400°C. The X-ray diffraction results reveal that secondary mullitization took place from 1100°C and the major phase is mullite with a content of ∼84.7wt.% at 1400°C. SEM images show that the as-fabricated mullite supports have a porous microstructure composed of sintered glassy particles embedded with inter-locked mullite crystals, which grew gradually with increasing temperature from rod-like into blocky-like morphologies. To obtain mullite membrane supports with sufficient porosity and acceptable mechanical strength, the relationship between porosity and mechanical strength was investigated, which was fitted using a parabolic equation.Entities:
Keywords: Ceramic membrane; Coal gangue; Mechanical strength; Porous mullite; Waste recycling
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Year: 2014 PMID: 24727016 DOI: 10.1016/j.jhazmat.2014.03.026
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588