Novel bio-polymer based membranes for CO2/CH4 separation

[1]  C. Pomelli,et al.  Phosphonium ionic liquid-polyacrylate copolymer membranes for improved CO2 separations , 2021 .

[2]  Francesco Galiano,et al.  Biopolymers for sustainable membranes in CO2 separation: a review , 2020 .

[3]  M. Jaafar,et al.  A review on degradation mechanisms of polylactic acid: Hydrolytic, photodegradative, microbial, and enzymatic degradation , 2020 .

[4]  Enrico Drioli,et al.  Membrane engineering: Latest advancements in gas separation and pre-treatment processes, petrochemical industry and refinery, and future perspectives in emerging applications , 2020 .

[5]  M. Saeys,et al.  Minimizing CO2 emissions with renewable energy: a comparative study of emerging technologies in the steel industry , 2020, Energy & Environmental Science.

[6]  Bahamin Bazooyar,et al.  Highly CO2 selective chitosan/g-C3N4/ZIF-8 membrane on polyethersulfone microporous substrate , 2020 .

[7]  V. Gaucher,et al.  Biodegradable PLA/PBS multinanolayer membrane with enhanced barrier performances , 2020 .

[8]  Yi Feng,et al.  In-situ growing ZIF-8 on cellulose nanofibers to form gas separation membrane for CO2 separation , 2020 .

[9]  A. Bakhtyari,et al.  CO2 adsorption by conventional and nanosized zeolites , 2020 .

[10]  K. Nagai,et al.  Suppression of crystallization in thin films of cellulose diacetate and its effect on CO2/CH4 separation properties , 2019, Journal of Membrane Science.

[11]  A. Ghadimi,et al.  Ionic liquid tethered PEG-based polyurethane-siloxane membranes for efficient CO2/CH4 separation. , 2019, Materials science & engineering. C, Materials for biological applications.

[12]  Jing Deng,et al.  A Brief Review of Nanocellulose Based Hybrid Membranes for CO2 Separation , 2019, Fibers.

[13]  A. Basile,et al.  PLA Easy Fil – White‐based membranes for CO 2 separation , 2019, Greenhouse Gases: Science and Technology.

[14]  K. K. Lau,et al.  Effect of spinning conditions on the fabrication of cellulose acetate hollow fiber membrane for CO2 separation from N2 and CH4 , 2019, Polymer Testing.

[15]  Xuezhong He A review of material development in the field of carbon capture and the application of membrane-based processes in power plants and energy-intensive industries , 2018, Energy, Sustainability and Society.

[16]  F. Dalena,et al.  Advances in Methanol Production and Utilization, with Particular Emphasis toward Hydrogen Generation via Membrane Reactor Technology , 2018, Membranes.

[17]  K. Christensen,et al.  Advances in biopolymer-based membrane preparation and applications , 2018, Journal of Membrane Science.

[18]  May-Britt Hägg,et al.  Cellulose nanocrystal/PVA nanocomposite membranes for CO2/CH4 separation at high pressure , 2018 .

[19]  R. Bagheri,et al.  Mixed matrix membranes of polyurethane with nickel oxide nanoparticles for CO2 gas separation , 2018 .

[20]  Helen Kopnina,et al.  European Renewable Energy: Applying circular economy thinking to policy-making , 2017 .

[21]  Ki-Hyun Kim,et al.  Hydrolytic degradation of polylactic acid (PLA) and its composites , 2017 .

[22]  A. Basile,et al.  New PEEK-WC and PLA membranes for H 2 separation , 2017 .

[23]  E. Drioli,et al.  Thermally rearranged mixed matrix membranes for CO2 separation: An aging study , 2017 .

[24]  F. Ahmad,et al.  Polymer blend of PLA/PHBV based bionanocomposites reinforced with nanocrystalline cellulose for potential application as packaging material. , 2017, Carbohydrate polymers.

[25]  W. Stahel,et al.  The Circular Economy , 2019 .

[26]  J. Kenny,et al.  Development of flexible materials based on plasticized electrospun PLA–PHB blends: Structural, thermal, mechanical and disintegration properties , 2015 .

[27]  E. Fortunati,et al.  Processing and characterization of plasticized PLA/PHB blends for biodegradable multiphase systems , 2015 .

[28]  A. Basile,et al.  Model biogas steam reforming in a thin Pd-supported membrane reactor to generate clean hydrogen for fuel cells , 2015 .

[29]  M. Mercedes Maroto-Valer,et al.  An overview of current status of carbon dioxide capture and storage technologies , 2014 .

[30]  Ling Xu,et al.  Improved barrier properties of poly(lactic acid) with randomly dispersed graphene oxide nanosheets , 2014 .

[31]  May-Britt Hägg,et al.  Carbon nanotube reinforced PVAm/PVA blend FSC nanocomposite membrane for CO2/CH4 separation , 2014 .

[32]  E. Dargent,et al.  Structure and Barrier Properties of Biodegradable Polyhydroxyalkanoate Films , 2014 .

[33]  Farzad Seidi,et al.  Synthesis and application of a novel Amino-Starch derivative as a new polymeric additive for fixed facilitated transport of carbon dioxide through an asymmetric polyethersulfone (PES) membrane , 2013 .

[34]  E. Fortunati,et al.  Multifunctional nanostructured PLA materials for packaging and tissue engineering , 2013 .

[35]  P. Budd,et al.  Mechanically robust thermally rearranged (TR) polymer membranes with spirobisindane for gas separation , 2013 .

[36]  J. C. Jansen,et al.  An Efficient Polymer Molecular Sieve for Membrane Gas Separations , 2013, Science.

[37]  Jyh-Horng Wu,et al.  Natural weathering properties of acetylated bamboo plastic composites , 2012 .

[38]  G. Robertson,et al.  Decarboxylation-Induced Cross-Linking of Polymers of Intrinsic Microporosity (PIMs) for Membrane Gas Separation† , 2012 .

[39]  S. Kentish Polymeric membranes for natural gas processing , 2011 .

[40]  M. Xanthos,et al.  A study on the degradation of polylactic acid in the presence of phosphonium ionic liquids , 2009 .

[41]  L. Robeson,et al.  The upper bound revisited , 2008 .

[42]  T. Aminabhavi,et al.  Separation of binary mixtures of carbon dioxide and methane through sulfonated polycarbonate membranes , 2007 .

[43]  Stephen J. Miller,et al.  Effect of Condensable Impurities in CO2/CH4 Gas Feeds on Carbon Molecular Sieve Hollow-Fiber Membranes , 2003 .

[44]  P. Pekarski,et al.  Effect of Aging and Conditioning on Diffusion and Sorption of Small Molecules in Polymer Glasses , 2000 .

[45]  M. Donohue,et al.  Permeation behavior of carbon dioxide-methane mixtures in cellulose acetate membranes☆ , 1989 .