1-Adamantanamine implementation in surface engineering of biomimetic PVDF-based membranes for enhanced membrane distillation

被引:1
作者
Al-Gharabli, Samer [1 ,2 ]
Al-Rifai, Nafisah [1 ]
Jureviciute, Simona [3 ]
Kareiva, Aivaras [3 ]
Terzyk, Artur P. [4 ]
Korczeniewski, Emil [4 ]
Olewnik-Kruszkowska, Ewa [5 ]
Flanc, Zuzanna [5 ]
Jankowski, Waldemar [5 ]
Kujawski, Wojciech [5 ]
Kujawa, Joanna [5 ]
机构
[1] German Jordanian Univ, Pharmaceut & Chem Engn Dept, Amman 11180, Jordan
[2] Abdullah Al Salem Univ AASU, Coll Integrat Studies, Block 3, Khaldiya, Kuwait
[3] Vilnius Univ, Inst Chem, 24 Naugarduko St, LT-03225 Vilnius, Lithuania
[4] Nicolaus Copernicus Univ Torun, Fac Chem, Physicochem Carbon Mat Res Grp, Gagarin St 7, PL-87100 Torun, Poland
[5] Nicolaus Copernicus Univ Torun, Fac Chem, 7 Gagarina St, Torun, Poland
关键词
1-Adamantanamine; PVDF; Membrane distillation; Surface engineering; Sustainability; BIOCONCENTRATION FACTOR; BIOACCUMULATION FACTOR; ANTIVIRAL ACTIVITY; WASTE-WATER; SEPARATION; DESALINATION; REMOVAL; PERFORMANCE; CHEMICALS; ETHANOL;
D O I
10.1016/j.desal.2024.118331
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Membrane distillation (MD) stands at the forefront of desalination technology, harnessing the power of phase change to separate water vapor from saline using minimal energy resources efficiently. In response to this challenge, membranes with tuned pores morphology and surface chemistry with biomimetic 3D pine-like structures with improved affinity to water (desalination) and/or hazardous VOC (VOC removal) were developed and studied systematically. By implementing VIPS-PVDF membranes and a green modifier of 1-adamantanamine for the first time, membranes with a revolutionary network architecture were generated. The modifier was introduced either physically to the polymeric matrix or chemically through covalent attachment onto the surface and inside the porous structure. As a result, membranes that defy wetting under extreme hydrostatic pressures (>11.5 bar) were produced while preserving unparalleled vapor transport efficiency. The 1-adamantanamine promotes transport and enhances the affinity to the VOC, ensuring excellent membrane performance at different applications of the MD process. Transport was enhanced >3.6 times and separation factor beta changed from 3.48 to 15.22 for MTBE removal and from 2.0 to 3.46 for EtOH removal when comparing pristine PVDF with membrane chemically modified with 1-adamantanamine (PVDF_Ch02). The process separation index during the MTBE removal changed from 20 kg m(-2) h(-1) (PVDF) to 297 kg m(-2) h(-1) (PVDF_Ch02). All materials were highly stable and durable during the MD applications. This innovative approach not only revolutionizes desalination but also holds immense promise for diverse applications beyond, particularly in the realm of wastewater treatment. A study of the icing process on a cold plate with new membranes provided deeper insight into the icing mechanism and the role of membrane LEP in it.
引用
收藏
页数:22
相关论文
共 117 条
[61]   Freezing point depression of salt aqueous solutions using the Madrid-2019 model [J].
Lamas, Cintia P. ;
Vega, Carlos ;
Noya, Eva G. .
JOURNAL OF CHEMICAL PHYSICS, 2022, 156 (13)
[62]   Insight into the preparation of poly(vinylidene fluoride) membranes by vapor-induced phase separation [J].
Li, Chia-Ling ;
Wang, Da-Ming ;
Deratani, Andre ;
Quemener, Damien ;
Bouyer, Denis ;
Lai, Juin-Yih .
JOURNAL OF MEMBRANE SCIENCE, 2010, 361 (1-2) :154-166
[63]   Utilizing a layer-by-layer self-assembly strategy to construct eco-friendly and sustainable superhydrophobic C-S@PDMS@SiO2 coatings on engineering materials for efficient oil-water separation [J].
Li, Dongyin ;
Yang, Fuchao ;
Shi, Xuan ;
Ning, Shenghui ;
Guo, Zhiguang .
MATERIALS TODAY SUSTAINABILITY, 2024, 27
[64]   Short-chain per- and polyfluoroalkyl substances in aquatic systems: Occurrence, impacts and treatment [J].
Li, Fan ;
Duan, Jun ;
Tian, Shuting ;
Ji, Haodong ;
Zhu, Yangmo ;
Wei, Zongsu ;
Zhao, Dongye .
CHEMICAL ENGINEERING JOURNAL, 2020, 380
[65]   Bioethanol production in vacuum membrane distillation bioreactor by permeate fractional condensation and mechanical vapor compression with polytetrafluoroethylene (PTFE) membrane [J].
Li, Jianfeng ;
Zhou, Wencan ;
Fan, Senqing ;
Xiao, Zeyi ;
Liu, Yicai ;
Liu, Jingyun ;
Qiu, Boya ;
Wang, Yuyang .
BIORESOURCE TECHNOLOGY, 2018, 268 :708-714
[66]  
Li P.H., 2023, J. Taiwan Inst. Chem. Eng., V158
[67]   Preparation of PVDF/PMMA composite membrane with green solvent for seawater desalination by gap membrane distillation [J].
Lin, Yu-Xian ;
Liou, Yun-Ke ;
Lee, Sher Ling ;
Chen, Shao-Yu ;
Tao, Fang-Ting ;
Cheng, Tung-Wen ;
Tung, Kuo-Lun .
JOURNAL OF MEMBRANE SCIENCE, 2023, 679
[68]   1-Adamantanamine Hydrochloride Resists Environmental Corrosion to Obtain Highly Efficient and Stable Perovskite Solar Cells [J].
Liu, Baibai ;
He, Dongmei ;
Zhou, Qian ;
Chen, Yu ;
He, Peng ;
Han, Xiao ;
Ma, Danqing ;
He, Yong ;
Li, Yuelong ;
Zhao, Pengjun ;
Xu, Zong-Xiang ;
Lu, Shirong ;
Zang, Zhigang ;
Chen, Jiangzhao .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2023, 14 (10) :2501-2508
[69]   Towards the technological maturity of membrane distillation: the MD module performance curve [J].
Lopez-Porfiri, Pablo ;
Ramos-Paredes, Sebastian ;
Nunez, Patricio ;
Gorgojo, Patricia .
NPJ CLEAN WATER, 2023, 6 (01)
[70]   Air-gap membrane distillation for the separation of bioethanol from algal-based fermentation broth [J].
Loulergue, Patrick ;
Balannec, Beatrice ;
Fouchard-Le Graet, Lou ;
Cabrol, Audrey ;
Sayed, Walaa ;
Djelal, Hayet ;
Amrane, Abdeltif ;
Szymczyk, Anthony .
SEPARATION AND PURIFICATION TECHNOLOGY, 2019, 213 :255-263