The possibility of employing a zeolite nano-membrane for seawater desalination is studied using comprehensive molecular dynamics simulations. Two types of zeolite with different wetting properties, the hydrophilic FAU and hydrophobic MFI, are used as the reverse osmosis (RO) membrane. Both can reach nearly 100% rejection of salt ions, and when the membrane thickness is smaller than 3.5 nm, the permeability is about 2 x 10(-9) m Pa-1 s(-1), which is two orders of magnitude higher than that of the commercial state-of-the-art RO membrane. The relation between the permeability and thickness of the zeolite membrane is studied through the pressure drop-flux dependence. The pressure drop is linearly dependent on the thickness of the zeolite membra...
Zeolite based membranes have been extensively studied over the past decade for enhanced reverse osmo...
Seawater reverse osmosis (SWRO) has always been one of the favourite desalination technologies world...
A comprehensive understanding of molecular transport within nanoporous materials remains elusive in ...
Reverse osmosis constitutes a large portion of currently operating commercial water desalination sys...
Desalination by reverse osmosis is an increasingly important source of potable water in many countri...
Seawater desalination is now commonly performed using membrane technology but new materials research...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Th...
Seawater desalination is now commonly performed using membrane technology but new materials researc...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
A new type of reverse osmosis (RO) membrane incorporating S-Beta zeolite nanoparticles was synthesiz...
abstract: Nanoporous materials, with pore sizes less than one nanometer, have been incorporated as f...
The pervaporative salts rejection and water flux characteristics of the NaA zeolite membrane in seaw...
We demonstrate molybdenum disulfide (MoS2) as a nano porous membrane for water desalination. By perf...
An atomistic simulation study is reported for seawater pervaporation through five zeolitic imidazola...
Access to clean water is essential for sustaining life on Earth, which drives a need to develop new ...
Zeolite based membranes have been extensively studied over the past decade for enhanced reverse osmo...
Seawater reverse osmosis (SWRO) has always been one of the favourite desalination technologies world...
A comprehensive understanding of molecular transport within nanoporous materials remains elusive in ...
Reverse osmosis constitutes a large portion of currently operating commercial water desalination sys...
Desalination by reverse osmosis is an increasingly important source of potable water in many countri...
Seawater desalination is now commonly performed using membrane technology but new materials research...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Th...
Seawater desalination is now commonly performed using membrane technology but new materials researc...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
A new type of reverse osmosis (RO) membrane incorporating S-Beta zeolite nanoparticles was synthesiz...
abstract: Nanoporous materials, with pore sizes less than one nanometer, have been incorporated as f...
The pervaporative salts rejection and water flux characteristics of the NaA zeolite membrane in seaw...
We demonstrate molybdenum disulfide (MoS2) as a nano porous membrane for water desalination. By perf...
An atomistic simulation study is reported for seawater pervaporation through five zeolitic imidazola...
Access to clean water is essential for sustaining life on Earth, which drives a need to develop new ...
Zeolite based membranes have been extensively studied over the past decade for enhanced reverse osmo...
Seawater reverse osmosis (SWRO) has always been one of the favourite desalination technologies world...
A comprehensive understanding of molecular transport within nanoporous materials remains elusive in ...