Highly permeable benzene-trisulfonyl chloride-based polysulfonamide membranes fabricated by interfacial polymerization for acid-resistant nanofiltration
暂无分享,去创建一个
Lu Liu | Wei Lai | Youming Yang | Shuangjiang Luo | Linglong Shan | Junsong Bai | Luqi Xiao | Yang Jiao
[1] Wei Lai,et al. Zwitterionic Liquid Hydrogel Sustained-Release Strategy for High-Performance Nanofiltration Membrane , 2022, SSRN Electronic Journal.
[2] Chaohe Yang,et al. Dual-electric layer nanofiltration membranes based on polyphenol/PEI interlayer for highly efficient Mg2+/Li+ separation , 2022, Journal of Membrane Science.
[3] Q. Niu,et al. Aliphatic polyamide nanofilm with ordered nanostripe, synergistic pore size and charge density for the enhancement of cation sieving , 2022, Journal of Membrane Science.
[4] Yiming Cao,et al. Fabrication of positively charged nanofiltration membrane with uniform charge distribution by reversed interfacial polymerization for Mg2+/Li+ separation , 2022, Journal of Membrane Science.
[5] Wei Lai,et al. Highly permeable and acid-resistant nanofiltration membrane fabricated by in-situ interlaced stacking of COF and polysulfonamide films , 2022, Chemical Engineering Journal.
[6] Shenmin Zhang,et al. Quaternary ammonium engineered polyamide membrane with high positive charge density for efficient Li+/Mg2+separation , 2022, Journal of Membrane Science.
[7] Shichao Feng,et al. Exploring ions selectivity of nanofiltration membranes for rare earth wastewater treatment , 2022, Separation and Purification Technology.
[8] M. Saxena,et al. Scaling-up of robust nanofiltration membrane of ultrathin-film-composite structure , 2022, Desalination.
[9] K. Lasisi,et al. Degradation impact of low pH mineral acids and long exposure period on the active layer of semi-aromatic polyamine-based nanofiltration membrane , 2022, Polymer Degradation and Stability.
[10] Zhitian Liu,et al. High performance Mg2+/Li+ separation membranes modified by a bis-quaternary ammonium salt , 2022, Desalination.
[11] Juming Yao,et al. Positively-charged nanofiltration membranes constructed via gas/liquid interfacial polymerization for Mg2+/Li+ separation , 2022, Journal of Membrane Science.
[12] Wei Lai,et al. Ionic liquid regulated interfacial polymerization process to improve acid-resistant nanofiltration membrane permeance , 2022, Journal of Membrane Science.
[13] Qiang Zhao,et al. Fabrication of high performance Mg2+/Li+ nanofiltration membranes by surface grafting of quaternized bipyridine , 2022, Separation and Purification Technology.
[14] R. Kaner,et al. Ultrapermeable Nanofiltration Membranes with Tunable Selectivity Fabricated with Polyaniline Nanofibers , 2022, Journal of Materials Chemistry A.
[15] Q. Niu,et al. Modification of polyamide nanofiltration membrane with ultra-high multivalent cations rejections and mono-/divalent cation selectivity , 2022, Desalination.
[16] Rong Wang,et al. Dopamine-Intercalated Polyelectrolyte Multilayered Nanofiltration Membranes: Toward High Permselectivity and Ion-Ion Selectivity , 2022, SSRN Electronic Journal.
[17] K. Lasisi,et al. Polyamine-based thin-film composite nanofiltration membrane embedded with catalytic chemical additive for enhanced separation performance and acid stability , 2021, Journal of Membrane Science.
[18] Hailong He,et al. Acid stable layer-by-layer nanofiltration membranes for phosphoric acid purification , 2021, Journal of Membrane Science.
[19] MhdAmmar Hafiz,et al. Recovery of rare earth elements from waste streams using membrane processes: An overview , 2021 .
[20] Yang Cao,et al. Highly permeable acid-resistant nanofiltration membrane based on a novel sulfonamide aqueous monomer for efficient acidic wastewater treatment , 2021 .
[21] Junquan Meng,et al. Fabrication of high-performance pervaporation membrane for sulfuric acid recovery via interfacial polymerization , 2021 .
[22] M. Hempenius,et al. Poly(aryl cyanurate)-Based Thin-Film Composite Nanofiltration Membranes , 2021, ACS applied polymer materials.
[23] Chuyang Y. Tang,et al. Novel Positively Charged Metal-Coordinated Nanofiltration Membrane for Lithium Recovery. , 2021, ACS applied materials & interfaces.
[24] Shi‐Peng Sun,et al. Nanocapsule controlled interfacial polymerization finely tunes membrane surface charge for precise molecular sieving , 2021 .
[25] Huanting Wang,et al. Challenges in membrane-based liquid phase separations , 2021, Green Chemical Engineering.
[26] Q. Ni,et al. Novel aminated graphene quantum dots (GQDs-NH2)-engineered nanofiltration membrane with high Mg2+/Li+ separation efficiency , 2021 .
[27] Naixin Wang,et al. A review of nano-confined composite membranes fabricated inside the porous support , 2021, Advanced Membranes.
[28] H. Takaba,et al. Preparation and characterization of TFC NF membrane with improved acid resistance behavior , 2020 .
[29] Jian Jin,et al. Dual-skin layer nanofiltration membranes for highly selective Li+/Mg2+ separation , 2020 .
[30] Kang Huang,et al. Two-dimensional material separation membranes for renewable energy purification, storage, and conversion , 2020 .
[31] D. Hou,et al. One step prepared Janus acid-resistant nanofiltration membranes with opposite surface charges for acidic wastewater treatment , 2020 .
[32] Xiao-lin Wang,et al. A novel nanofiltration membrane with [MimAP][Tf2N] ionic liquid for utilization of lithium from brines with high Mg2+/Li+ ratio , 2020 .
[33] T. He,et al. Improvement of permeability and rejection of an acid resistant polysulfonamide thin-film composite nanofiltration membrane by a sulfonated poly(ether ether ketone) interlayer , 2020 .
[34] Youyong Li,et al. Polyamide nanofiltration membrane with highly uniform sub-nanometre pores for sub-1 Å precision separation , 2020, Nature Communications.
[35] M. Jahanshahi,et al. Polysulfonamide coating layer polymerized by1,3-disulfonyl chloride and polyethylenimine to achieve acid resistant TFC membranes , 2020 .
[36] J. Cortina,et al. Comparison of acid-resistant ceramic and polymeric nanofiltration membranes for acid mine waters treatment , 2020 .
[37] Soon Jin Kwon,et al. High-performance and acid-resistant nanofiltration membranes prepared by solvent activation on polyamide reverse osmosis membranes , 2020 .
[38] Changsheng Guo,et al. Ultra-thin double Janus nanofiltration membrane for separation of Li+ and Mg2+: “Drag” effect from carboxyl-containing negative interlayer , 2020 .
[39] E. Sudhölter,et al. Improved phosphoric acid recovery from sewage sludge ash using layer-by-layer modified membranes , 2019, Journal of Membrane Science.
[40] Matthias Wessling,et al. Layer-by-layer membrane modification allows scandium recovery by nanofiltration , 2019, Environmental Science: Water Research & Technology.
[41] Haixiang Sun,et al. Semi-aromatic polyamide nanofiltration membranes with tuned surface charge and pore size distribution designed for the efficient removal of Ca2+ and Mg2+ , 2019, Separation and Purification Technology.
[42] Byung-Moon Jun,et al. Degradation of full aromatic polyamide NF membrane by sulfuric acid and hydrogen halides: Change of the surface/permeability properties , 2019, Polymer Degradation and Stability.
[43] J. Cortina,et al. Recovery of sulphuric acid and added value metals (Zn, Cu and rare earths) from acidic mine waters using nanofiltration membranes , 2019, Separation and Purification Technology.
[44] J. Cortina,et al. Integration of nanofiltration membranes in recovery options of rare earth elements from acidic mine waters , 2019, Journal of Cleaner Production.
[45] Heyun Wang,et al. An acid-stable positively charged polysulfonamide nanofiltration membrane prepared by interfacial polymerization of polyallylamine and 1,3-benzenedisulfonyl chloride for water treatment , 2019, RSC advances.
[46] Changsheng Guo,et al. Positive charged PEI-TMC composite nanofiltration membrane for separation of Li+ and Mg2+ from brine with high Mg2+/Li+ ratio , 2019, Desalination.
[47] A. Turolla,et al. Application of nanofiltration for Rare Earth Elements recovery from coal fly ash leachate: Performance and cost evaluation , 2018, Chemical Engineering Journal.
[48] Jianqiang Meng,et al. High-performance acid-stable polysulfonamide thin-film composite membrane prepared via spinning-assist multilayer interfacial polymerization , 2018, Journal of Materials Science.
[49] C. Doherty,et al. Highly Selective and Permeable Microporous Polymer Membranes for Hydrogen Purification and CO2 Removal from Natural Gas , 2018, Chemistry of Materials.
[50] A. Keshtkar,et al. Selective concentration of uranium from bioleach liquor of low-grade uranium ore by nanofiltration process , 2018 .
[51] S. Kwak,et al. Effect of acidic aqueous solution on chemical and physical properties of polyamide NF membranes , 2018, Applied Surface Science.
[52] Zhe Tan,et al. Polyamide membranes with nanoscale Turing structures for water purification , 2018, Science.
[53] Lin Zhang,et al. An acid resistant nanofiltration membrane prepared from a precursor of poly(s-triazine-amine) by interfacial polymerization , 2018 .
[54] Zhen-liang Xu,et al. Positively charged capillary nanofiltration membrane with high rejection for Mg2 + and Ca2 + and good separation for Mg2 + and Li + , 2017 .
[55] Wang Zhang Yuan,et al. Towards high-performance hybrid hydrophilic membranes: chemical anchoring of hydroxyl-rich nanoparticles on PVDF membranes via a silane coupling agent , 2017, Journal of Materials Science.
[56] M. Jahanshahi,et al. Feasibility study of a novel copolyamide thin film composite membrane assisted by melamine in terms of acid and thermal stability , 2017 .
[57] R. M. Rooij,et al. Interfacial polymerization of cyanuric chloride and monomeric amines: pH resistant thin film composite polyamine nanofiltration membranes , 2017 .
[58] Yongxiang Yang,et al. REE Recovery from End-of-Life NdFeB Permanent Magnet Scrap: A Critical Review , 2017, Journal of Sustainable Metallurgy.
[59] M. Jahanshahi,et al. Static and dynamic assessments of polysulfonamide and poly(amide-sulfonamide) acid-stable membranes , 2016 .
[60] Chuyang Y. Tang,et al. A comprehensive physico-chemical characterization of superhydrophilic loose nanofiltration membranes , 2016 .
[61] B. Freeman,et al. Pentiptycene-based polyimides with hierarchically controlled molecular cavity architecture for efficient membrane gas separation , 2015 .
[62] Y. Hao,et al. Preparation and properties of novel pH-stable TFC membrane based on organic–inorganic hybrid composite materials for nanofiltration , 2015 .
[63] Martin Weber,et al. Development of thin-film composite forward osmosis hollow fiber membranes using direct sulfonated polyphenylenesulfone (sPPSU) as membrane substrates. , 2013, Environmental science & technology.
[64] Cong-jie Gao,et al. Thin-film composite nanofiltration membranes with improved acid stability prepared from naphthalene-1,3,6-trisulfonylchloride (NTSC) and trimesoyl chloride (TMC) , 2013 .
[65] Cong-jie Gao,et al. Acid stable thin-film composite membrane for nanofiltration prepared from naphthalene-1,3,6-trisulfonylchloride (NTSC) and piperazine (PIP) , 2012 .
[66] S. Stolte,et al. Hydrolysis of sulphonamides in aqueous solutions. , 2012, Journal of hazardous materials.
[67] Thomas Melin,et al. Phosphorus recovery from sewage sludge with a hybrid process of low pressure wet oxidation and nanofiltration. , 2012, Water research.
[68] Z. Murthy,et al. Application of nanofiltration to treat rare earth element (neodymium) containing water , 2011 .
[69] Z. Murthy,et al. Separation of cerium from feed solution by nanofiltration , 2011 .
[70] Mika Mänttäri,et al. Effect of pH on hydrophilicity and charge and their effect on the filtration efficiency of NF membranes at different pH , 2006 .
[71] C. Vandecasteele,et al. Characterization of commercial nanofiltration membranes and comparison with self-made polyethersulfone membranes , 2006 .
[72] G. Baumgarten,et al. Nanofiltration of nitric acidic solutions from picture tube production , 2002 .
[73] I. Escobar,et al. Modification of commercial water treatment membranes by ion beam irradiation , 2002 .
[74] H. Krieg,et al. The removal of acid sulphate pollution by nanofiltration , 2001 .
[75] T. Matsuura,et al. MEMBRANE CHARACTERIZATION BY SOLUTE TRANSPORT AND ATOMIC FORCE MICROSCOPY , 1998 .
[76] J. Wiśniewski,et al. Acids and iron salts removal from rinsing water after metal etching , 1997 .
[77] Woo-Sik Kim,et al. Prediction of Intrinsic Pore Properties of Ultrafiltration Membrane by Solute Rejection Curves: Effects of Operating Conditions on Pore Properties , 1991 .