TY - JOUR
T1 - All-silica DD3R zeolite membrane with hydrophilic-functionalized surface for efficient and highly-stable pervaporation dehydration of acetic acid
AU - Zhang, Yuting
AU - Qiu, Xufeng
AU - Hong, Zhou
AU - Du, Peng
AU - Song, Qingnan
AU - Gu, Xuehong
N1 - Publisher Copyright:
© 2019 Elsevier B.V.
PY - 2019/7/1
Y1 - 2019/7/1
N2 - A novel strategy of all-silica zeolite membrane with hydrophilic-functionalized surface was proposed for efficient and highly-stable pervaporation dehydration of acetic acid. 3-aminopropyltriethoxysilane (APTES) was used to graft onto the surface of hollow fiber supported DD3R membrane to enhance its surface hydrophilicity and therefore improve its water/AcOH separation factor. Both pristine DD3R and obtained APTES-DD3R membranes were characterized extensively in terms of water contact angle (WCA), SEM, XRD, FT-IR and XPS for comparison. When the DD3R membrane was grafted with APTES for 1 h, the membrane surface turned from hydrophobic to hydrophilic. Under the synergetic effect of enhanced water adsorption on membrane surface and intrinsic molecule-sieving property of DD3R zeolitic pores, the APTES-DD3R membrane showed an improved separation factor of 1700 rather than that (196) of pristine DD3R membrane in separation of 10 wt% water/AcOH mixture at 348 K. Moreover, the APTES-DD3R membrane exhibited excellent stability during the PV separation, even in the presence of strong inorganic acids (HCl and H2SO4).
AB - A novel strategy of all-silica zeolite membrane with hydrophilic-functionalized surface was proposed for efficient and highly-stable pervaporation dehydration of acetic acid. 3-aminopropyltriethoxysilane (APTES) was used to graft onto the surface of hollow fiber supported DD3R membrane to enhance its surface hydrophilicity and therefore improve its water/AcOH separation factor. Both pristine DD3R and obtained APTES-DD3R membranes were characterized extensively in terms of water contact angle (WCA), SEM, XRD, FT-IR and XPS for comparison. When the DD3R membrane was grafted with APTES for 1 h, the membrane surface turned from hydrophobic to hydrophilic. Under the synergetic effect of enhanced water adsorption on membrane surface and intrinsic molecule-sieving property of DD3R zeolitic pores, the APTES-DD3R membrane showed an improved separation factor of 1700 rather than that (196) of pristine DD3R membrane in separation of 10 wt% water/AcOH mixture at 348 K. Moreover, the APTES-DD3R membrane exhibited excellent stability during the PV separation, even in the presence of strong inorganic acids (HCl and H2SO4).
KW - Acetic acid
KW - DD3R zeolite membrane
KW - Hydrophilic functionalization
KW - Pervaporation
UR - http://www.scopus.com/inward/record.url?scp=85063322035&partnerID=8YFLogxK
U2 - 10.1016/j.memsci.2019.03.061
DO - 10.1016/j.memsci.2019.03.061
M3 - 文章
AN - SCOPUS:85063322035
SN - 0376-7388
VL - 581
SP - 236
EP - 242
JO - Journal of Membrane Science
JF - Journal of Membrane Science
ER -