1.
Impact of the ethylene content on poly (ethylene-co-vinyl alcohol)..
[621]
|
2.
层层自组装“三明治”结构纳滤膜实现高效镁锂分离
[621]
|
3.
Dehydration of forward osmosis membranes in treating high salinity..
[606]
|
4.
Zwitterionic surface modification of forward osmosis membranes usi..
[587]
|
5.
Phenol rejection by cellulose triacetate and thin film composite f..
[579]
|
6.
CF4 plasma modified highly interconnective porous polysulfone memb..
[568]
|
7.
低碳盐湖提锂:高渗透选择性纳滤膜和正渗透膜材料
[559]
|
8.
Improvement of permeability and rejection of an acid resistant pol..
[555]
|
9.
Laminated PTFE membranes to enhance the performance in direct cont..
[530]
|
10.
A critical review on membrane extraction with improved stability: ..
[524]
|
11.
Treatment of shale gas drilling flowback fluids (SGDFs) by forward..
[523]
|
12.
Recovery of lithium from salt lake brine of high Mg/Li ratio using..
[512]
|
13.
3-[[3-(Triethoxysilyl)-propyl] amino] propane-1-sulfonic acid zwit..
[507]
|
14.
Concentrating greywater using hollow fiber thin film composite for..
[506]
|
15.
Mitigation of gypsum and silica scaling in membrane distillation b..
[492]
|
16.
Enabling sustainable green close-loop membrane lithium extraction ..
[489]
|
17.
Solvent stable nanoporous poly (ethylene-co-vinyl alcohol) barrier..
[482]
|
18.
Arsenic removal using a sulfonated poly(ether ether ketone) coated..
[482]
|
19.
Effective evaporation of CF4 plasma modified PVDF membranes in dir..
[479]
|
20.
Preparation of omniphobic PVDF membrane with hierarchical structur..
[476]
|
21.
Direct aerobic oxidation of monoalcohol and diols to acetals using..
[473]
|
22.
Extraction of boron from salt lake brine using 2-ethylhexanol
[451]
|
23.
From trace to pure: Recovery of scandium from the waste acid of ti..
[432]
|
24.
A sacrificial-layer approach to fabricate polysulfone support for ..
[425]
|
25.
Direct preparation of dialysate from tap water via osmotic dilutio..
[420]
|
26.
Understanding the fouling/scaling resistance of superhydrophobic/o..
[414]
|
27.
Concentrating underground brine by FO process: Influence of membra..
[407]
|
28.
Ammonia-free preparation of Ag@SiO2 core/shell nanoparticles
[404]
|
29.
Selective separation of copper and nickel by membrane extraction u..
[403]
|
30.
一种基于聚烯烃微孔基底的高性能复合正渗透膜及其制备方法
[399]
|
31.
Positive role of sulfonated PEEK coating for PEEK membrane in mass..
[397]
|
32.
Effect of substrate morphology on characteristics of layer-by-laye..
[368]
|
33.
Impact of SPEEK on PEEK membranes: Demixing, morphology and perfor..
[328]
|
34.
Synergy of slippery surface and pulse flow: An anti-scaling soluti..
[327]
|
35.
Novel low cost hybrid extraction-distillation-reverse osmosis proc..
[323]
|
36.
Feasibility of osmotic dilution for recycling spent dialysate: Pro..
[318]
|
37.
Recycling water from spent dialysate by osmotic dilution: Impact o..
[301]
|
38.
Lithium solvent extraction by a novel multiframe flat membrane con..
[301]
|
39.
一种含磷酸料液处理方法
[257]
|
40.
中空纤维复合正渗透膜的表征
[241]
|
41.
磺酸甜菜碱-硅氧烷型两性离子化学和涂层改性PVDF微孔膜对腐殖酸和蛋白..
[188]
|
42.
中空纤维正渗透膜浓缩灰水过程中的膜污染和清洗初探
[182]
|