For the first time, a specially designed pressure retarded osmosis (PRO) hollow fiber membrane has been successfully developed and applied in the PRO process to demonstrate its potential for power generation. The membrane fabrication method is similar to that used for making thin-film composite (TFC) forward osmosis hollow fiber membranes, but further optimization and improvement have led to a new type of TFC hollow fiber membranes with much greater mechanical strength in addition to its excellent separation property and high water flux.The TFC PRO hollow fiber membranes have a water permeability (A) of 9.22×10 -12m/(sPa), salt permeability (B) of 3.86×10 -8m/s and structural parameter (S) of 4.6×10 -4m. It can withstand hydrostatic pressur...
Pressure retarded osmosis (PRO) is an innovative technique to yield osmotic energy. Nevertheless, th...
In the past four decades, membrane development has occurred based on the demand in pressure driven p...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...
For the first time, a specially designed pressure retarded osmosis (PRO) hollow fiber membrane has b...
The practical application of pressure retarded osmosis (PRO) technology for renewable blue energy (i...
Pressure retarded osmosis (PRO) is one of the promising processes in catering large amount of renewa...
Osmosis or forward osmosis (FO) is a natural process for water transfer through a semi-permeable mem...
Energy shortage and water scarcity are worldwide challenges, which drive the exploitation of sustain...
Pressure retarded osmosis (PRO) is an osmotic-energy recovering process derived from the natural phe...
Pressure retarded osmosis (PRO) demonstrates great potential in energy harvesting when combining wit...
In recent years, growing focus and attention have been placed on the Pressure Retrograde Osmosis pro...
Pressure retarded osmosis (PRO) is a promising energy harvesting technique. However, when polymeric ...
Osmotic processes have been considered sustainable solutions for extracting clean water and concentr...
Concerning the rapid increase in global energy consumption and severe environmental issues, sustaina...
Pressure retarded osmosis has the potential to produce renewable energy from natural salinity gradie...
Pressure retarded osmosis (PRO) is an innovative technique to yield osmotic energy. Nevertheless, th...
In the past four decades, membrane development has occurred based on the demand in pressure driven p...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...
For the first time, a specially designed pressure retarded osmosis (PRO) hollow fiber membrane has b...
The practical application of pressure retarded osmosis (PRO) technology for renewable blue energy (i...
Pressure retarded osmosis (PRO) is one of the promising processes in catering large amount of renewa...
Osmosis or forward osmosis (FO) is a natural process for water transfer through a semi-permeable mem...
Energy shortage and water scarcity are worldwide challenges, which drive the exploitation of sustain...
Pressure retarded osmosis (PRO) is an osmotic-energy recovering process derived from the natural phe...
Pressure retarded osmosis (PRO) demonstrates great potential in energy harvesting when combining wit...
In recent years, growing focus and attention have been placed on the Pressure Retrograde Osmosis pro...
Pressure retarded osmosis (PRO) is a promising energy harvesting technique. However, when polymeric ...
Osmotic processes have been considered sustainable solutions for extracting clean water and concentr...
Concerning the rapid increase in global energy consumption and severe environmental issues, sustaina...
Pressure retarded osmosis has the potential to produce renewable energy from natural salinity gradie...
Pressure retarded osmosis (PRO) is an innovative technique to yield osmotic energy. Nevertheless, th...
In the past four decades, membrane development has occurred based on the demand in pressure driven p...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...