1235 - 1235 |
Separation Process Intensification of Chemical Engineering Preface He GH, Zhang N |
1236 - 1246 |
Process intensification in vapor-liquid mass transfer: The state-of-the-art Li H, Wu CH, Hao ZL, Li XG, Gao X |
1247 - 1256 |
Extractive distillation: Advances in conceptual design, solvent selection, and separation strategies Sun SR, Lu LP, Yang A, Wei SA, Shen WF |
1257 - 1271 |
Beyond graphene oxides: Emerging 2D molecular sieve membranes for efficient separation Liu Y |
1272 - 1281 |
A review of internally heat integrated distillation column Fang J, Cheng XM, Li ZY, Li H, Li CL |
1282 - 1295 |
Recent progress and future prospects of oil-absorbing materials Zhang T, Li ZD, Lu YF, Liu Y, Yang DY, Li QR, Qiu FX |
1296 - 1306 |
The potential of pervaporation for biofuel recovery from fermentation: An energy consumption point of view Zheng PY, Li C, Wang NX, Li J, An QF |
1307 - 1323 |
Process intensification and energy saving of reactive distillation for production of ester compounds Li CL, Duan C, Fang J, Li HS |
1324 - 1338 |
Magnetically responsive porous materials for efficient adsorption and desorption processes Tan P, Jiang Y, Liu XQ, Sun LB |
1339 - 1347 |
Process operation performance of PDMS membrane pervaporation coupled with fermentation for efficient bioethanol production Fan SQ, Liu JY, Tang XY, Wang WG, Xiao ZY, Qiu BY, Wang YY, Jian SZ, Qin YM, Wang YN |
1348 - 1360 |
Review on structural control and modification of graphene oxide-based membranes in water treatment: From separation performance to robust operation Zhang N, Qi WX, Huang LL, Jiang E, Bao JJ, Zhang XP, An BG, He GH |
1361 - 1373 |
Applications of high-gravity technologies in gas purifications: A review Guo J, Jiao WZ, Qi GS, Yuan ZG, Liu YZ |
1374 - 1382 |
Separation of light hydrocarbons with ionic liquids: A review Huang YQ, Zhang YB, Xing HB |
1383 - 1390 |
Advancement in separation materials for blood purification therapy Ju J, Liang FX, Zhang XX, Sun R, Pan XG, Guan XY, Cui GN, He X, Li MY |
1391 - 1402 |
Recent developments on catalytic membrane for gas cleaning Chen JH, Zhong ZX, Xia YS, Ke XB, Xing WH |
1403 - 1415 |
Progress in molecular-simulation-based research on the effects of interface-induced fluid microstructures on flow resistance Zhang YM, Zhu YD, Wang AR, Gao QW, Qin Y, Chen YJ, Lu XH |
1416 - 1428 |
Fabrication of biomaterial/TiO2 composite photocatalysts for the selective removal of trace environmental pollutants Zhao YL, Wang YQ, Xiao G, Su HJ |
1429 - 1438 |
Amorphous and humidity caking: A review Chen MY, Zhang DJ, Dong WB, Luo ZL, Kang C, Li HC, Wang G, Gong JB |
1439 - 1448 |
Intensification of chemical separation engineering by nanostructured channels and nanofluidics: From theories to applications Hu XY, Lu DN |
1449 - 1457 |
Recent advances in acid-resistant zeolite T membranes for dehydration of organics Luo YW, Raza W, Yang JH, Li LQ, Lu Y |