Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Ashly Thomas
One-Dimensional Analytical Modeling of Pressure- Retarded Osmosis in a Parallel Flow Configuration for the Desalination Industry in the State of Kuwait
Sustainability
Development
Management
Monitoring
Environmental Science
Renewable Energy
Energy Engineering
Law
Sustainability
Planning
Policy
Power Technology
the Environment
Geography
Related publications
Solar-Driven Desalination With Reverse Osmosis: The State of the Art
Desalination and Water Treatment
Ocean Engineering
Technology
Water Science
Pollution
Effect of the Operating Temperature on Hydrodynamics and Membrane Parameters in Pressure Retarded Osmosis
Desalination and Water Treatment
Ocean Engineering
Technology
Water Science
Pollution
Performance Analysis of Reverse Osmosis, Membrane Distillation, and Pressure-Retarded Osmosis Hybrid Processes
Desalination
Materials Science
Mechanical Engineering
Chemical Engineering
Water Science
Chemistry
Technology
On the Present and Future Economic Viability of Stand-Alone Pressure-Retarded Osmosis
Desalination
Materials Science
Mechanical Engineering
Chemical Engineering
Water Science
Chemistry
Technology
Recent Advances in Osmotic Energy Generation via Pressure-Retarded Osmosis (PRO): A Review
Energies
Control
Electronic Engineering
Energy Engineering
Renewable Energy
Energy
Fuel Technology
Sustainability
Optimization
Electrical
Power Technology
the Environment
Multistage Pressure-Retarded Osmosis Configurations: A Unifying Framework and Thermodynamic Analysis
Desalination
Materials Science
Mechanical Engineering
Chemical Engineering
Water Science
Chemistry
Technology
“Breakthrough” Osmosis and Unusually High Power Densities in Pressure-Retarded Osmosis in Non-Ideally Semi-Permeable Supported Membranes
Scientific Reports
Multidisciplinary
Comparative Evaluation of Physical Cleaning Method for Organic and Inorganic Foulants Mitigation in Pressure Retarded Osmosis (PRO)
Development of a Mathematical Model for the Prediction of Concentration Polarization in Reverse Osmosis Desalination Processes