Low-Grade Waste Heat Recovery via an Osmotic Heat Engine by Using a Freestanding Graphene Oxide Membrane
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Summary
This study shows that the freestanding GOM is promising for application in the osmotic heat engine and future research regarding improving the mechanical properties and water stability of the Gom is beneficial for further advancing the technology.
- Type
- article
- Published
- 2018-11-14
- Cited by
- 16
- References
- 61
- OpenAlex
- https://openalex.org/W31458206
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:140016139
Keywords
Art, Humanities
References
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Cited by
- Thermolytic osmotic heat engine for low-grade heat harvesting: Thermodynamic investigation and potential application exploration
- Forward Solute Transport in Forward Osmosis Using a Freestanding Graphene Oxide Membrane.
- Nanofluidic Membranes to Address the Challenges of Salinity Gradient Power Harvesting.
- Dynamic modeling and analysis of an advanced adsorption-based osmotic heat engines to harvest solar energy
- Advanced adsorption-based osmotic heat engines with heat recovery for low grade heat recovery
- Review of osmotic heat engines for low-grade heat harvesting
- Photocatalytic carbon hybrids for the elimination of diverse pollutants under visible light:Performances, influencing factors and insight into the novel mechanism
- Performance improvement of LiBr-H2O reverse electrodialysis unit for heat to power conversion with finite solution flowrate and large concentration change
- Freestanding graphene heat engine analyzed using stochastic thermodynamics
- Tuning Fabrication Factors for Reduced Graphene Oxide Forward Osmosis Membranes
- Recent developments in solar-powered membrane distillation for sustainable desalination
- Thermally conductive composites as polymer heat exchangers for water and energy recovery: From materials to products
- Osmotic heat engine (OHE)
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