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vaistininkas Brangieji nuleisti volumen zbiralne posode pri klimi prieš tai Blizgantis Tvarkaraštis

Bioforce revolution - Hozelock
Bioforce revolution - Hozelock

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Effect of block versus random copolyimide structure on hollow fiber  membrane spinnability Wulin Qiu, Lu Liu a, William J Koro
Effect of block versus random copolyimide structure on hollow fiber membrane spinnability Wulin Qiu, Lu Liu a, William J Koro

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Plasticization resistant carboxyl-functionalized 6FDA-polyimide of  intrinsic microporosity (PIM-PI) for membrane-based gas separ
Plasticization resistant carboxyl-functionalized 6FDA-polyimide of intrinsic microporosity (PIM-PI) for membrane-based gas separ

Plasticization resistant carboxyl-functionalized 6FDA-polyimide of  intrinsic microporosity (PIM-PI) for membrane-based gas separ
Plasticization resistant carboxyl-functionalized 6FDA-polyimide of intrinsic microporosity (PIM-PI) for membrane-based gas separ

9. Polymer membranes in CO2 separation and continuous flow processing
9. Polymer membranes in CO2 separation and continuous flow processing

Razstava Inženirstvo in narava za potrebe 21. stoletja 2. del - Novice
Razstava Inženirstvo in narava za potrebe 21. stoletja 2. del - Novice

Calaméo - Megadomov praznični letak 2020
Calaméo - Megadomov praznični letak 2020

Facile low-temperature route toward the development of polymer-supported  silica-based membranes for gas separation via atmospheric-pressure  plasma-enhanced chemical vapor deposition - ScienceDirect
Facile low-temperature route toward the development of polymer-supported silica-based membranes for gas separation via atmospheric-pressure plasma-enhanced chemical vapor deposition - ScienceDirect

Razstava Inženirstvo in narava za potrebe 21. stoletja 2. del - Novice
Razstava Inženirstvo in narava za potrebe 21. stoletja 2. del - Novice

Controlling molecular weight cut-off of PEEK nanofiltration membranes using  a drying method - ScienceDirect
Controlling molecular weight cut-off of PEEK nanofiltration membranes using a drying method - ScienceDirect

Controlling molecular weight cut-off of PEEK nanofiltration membranes using  a drying method - ScienceDirect
Controlling molecular weight cut-off of PEEK nanofiltration membranes using a drying method - ScienceDirect

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Effect of block versus random copolyimide structure on hollow fiber  membrane spinnability Wulin Qiu, Lu Liu a, William J Koro
Effect of block versus random copolyimide structure on hollow fiber membrane spinnability Wulin Qiu, Lu Liu a, William J Koro

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

OMNIA M 3.2 MOD. 4÷16
OMNIA M 3.2 MOD. 4÷16

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network

Controlling molecular weight cut-off of PEEK nanofiltration membranes using  a drying method - ScienceDirect
Controlling molecular weight cut-off of PEEK nanofiltration membranes using a drying method - ScienceDirect

Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix  Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer  Network
Polymers | Free Full-Text | Free Volume and Permeability of Mixed Matrix Membranes Made from a Terbutil-M-terphenyl Polyamide and a Porous Polymer Network