TY - JOUR
T1 - Al2O3和SiC微滤膜的疏水改性及其油固分离性能研究
AU - Li, Xiuxiu
AU - Wei, Yibin
AU - Xie, Zixuan
AU - Qi, Hong
N1 - Publisher Copyright:
© All Right Reserved.
PY - 2019/7/1
Y1 - 2019/7/1
N2 - The Al2O3 film and the SiC film with an average pore diameter of 500 nm were hydrophobically modified by n-octyltriethoxysilane and ethanol as modifiers and solvents, respectively. The concentration and modification of the modifer were investigated by graft polymerization. The wettability and oil-solid separation performance of the modified Al2O3 and SiC MF membranes were investigated. The backflushing operation and long-term stability test for the modified membranes were conducted. Under the optimal modification conditions with grafting agent concentration of 0.2 mol•L-1, grafting temperature of 40℃ and grafting time of 12 h,the water contact angles (WCAs) of the modified Al2O3 and SiC membranes were as high as 134°±1°and 140°±1°, respectively. It was found that the hydrophobic SiC membrane showed higher hydrophobicity than that of the Al2O3 membrane. For oil-solid separation experiments, both modified membranes exhibited excellent rejection to impurities in oil phase. However, the hydrophobic modification had a more significant effect on the flux of SiC membrane. The fluxes of hydrophobic Al2O3 and SiC MF membranes were 1134 L•m-2•h-1 and 1408 L•m-2•h-1, respectively, with transmembrane pressure of 0.25 MPa. Backflushing operation was beneficial to the flux recovery of ceramic membrane, especially hydrophobic SiC membrane.
AB - The Al2O3 film and the SiC film with an average pore diameter of 500 nm were hydrophobically modified by n-octyltriethoxysilane and ethanol as modifiers and solvents, respectively. The concentration and modification of the modifer were investigated by graft polymerization. The wettability and oil-solid separation performance of the modified Al2O3 and SiC MF membranes were investigated. The backflushing operation and long-term stability test for the modified membranes were conducted. Under the optimal modification conditions with grafting agent concentration of 0.2 mol•L-1, grafting temperature of 40℃ and grafting time of 12 h,the water contact angles (WCAs) of the modified Al2O3 and SiC membranes were as high as 134°±1°and 140°±1°, respectively. It was found that the hydrophobic SiC membrane showed higher hydrophobicity than that of the Al2O3 membrane. For oil-solid separation experiments, both modified membranes exhibited excellent rejection to impurities in oil phase. However, the hydrophobic modification had a more significant effect on the flux of SiC membrane. The fluxes of hydrophobic Al2O3 and SiC MF membranes were 1134 L•m-2•h-1 and 1408 L•m-2•h-1, respectively, with transmembrane pressure of 0.25 MPa. Backflushing operation was beneficial to the flux recovery of ceramic membrane, especially hydrophobic SiC membrane.
KW - Ceramic membrane
KW - Hydrophobic modification
KW - Oil-solid separation
KW - SiC
UR - http://www.scopus.com/inward/record.url?scp=85079628682&partnerID=8YFLogxK
U2 - 10.11949/0438-1157.20190176
DO - 10.11949/0438-1157.20190176
M3 - 文章
AN - SCOPUS:85079628682
SN - 0438-1157
VL - 70
SP - 2737
EP - 2747
JO - Huagong Xuebao/CIESC Journal
JF - Huagong Xuebao/CIESC Journal
IS - 7
ER -