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Articles

Going big with forward osmosis

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Pages 26529-26538 | Received 07 Jan 2016, Accepted 13 Mar 2016, Published online: 19 Apr 2016

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Supritam Dutta, Pragnesh Dave & Kaushik Nath. (2023) Progress and Perspective for Carbon Quantum Dots and Analogous Carbon-Based Nanomaterials in Augmenting Forward Osmosis Performance. Separation & Purification Reviews 0:0, pages 1-22.
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Articles from other publishers (16)

A. P. Andrianov, O. V. Yantsen & R. V. Efremov. (2023) State-of-the-Art of Forward Osmosis Technology: Prospects and Limitations. Membranes and Membrane Technologies 5:4, pages 276-289.
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Mahmoud Badawy Elsheniti, Amr Ibrahim, Osama Elsamni & Mahmoud Elewa. (2023) Experimental and economic investigation of sweeping gas membrane distillation/pervaporation modules using novel pilot scale device. Separation and Purification Technology 310, pages 123165.
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Kashif Khan, Muhammad Irfan, Noor Ul Amin, Heqing Jiang & Saeed Gul. (2022) Synthesis and characterization of porous reduced graphene oxide based geopolymeric membrane with titanium dioxide coating for forward osmosis application. Chemosphere, pages 137480.
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Kinnari M. Shah, Ian H. Billinge, Xi Chen, Hanqing Fan, Yuxuan Huang, Robert K. Winton & Ngai Yin Yip. (2022) Drivers, challenges, and emerging technologies for desalination of high-salinity brines: A critical review. Desalination 538, pages 115827.
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Christian D. Peters & Nicholas P. Hankins. (2021) Making zero-liquid discharge desalination greener: Utilising low-grade heat and vacuum membrane distillation for the regeneration of volatile draw solutes. Desalination 507, pages 115034.
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Nasir El Bassam. 2021. Distributed Renewable Energies for Off-Grid Communities. Distributed Renewable Energies for Off-Grid Communities 435 442 .
Christian D. Peters & Nicholas P. Hankins. (2020) The synergy between osmotically assisted reverse osmosis (OARO) and the use of thermo-responsive draw solutions for energy efficient, zero-liquid discharge desalination. Desalination 493, pages 114630.
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Wafa Suwaileh, Nirenkumar Pathak, Hokyong Shon & Nidal Hilal. (2020) Forward osmosis membranes and processes: A comprehensive review of research trends and future outlook. Desalination 485, pages 114455.
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Matthew R. LandsmanRahul SujananiSamuel H. BrodfuehrerCarolyn M. CooperAddison G. DarrR. Justin DavisKyungtae KimSoyoon KumLauren K. NalleySheik M. NomaanCameron P. OdenAkhilesh PaspureddiKevin K. ReimundLewis Stetson RowlesIIIIIISeulki YeoDesmond F. LawlerBenny D. FreemanLynn E. Katz. (2020) Water Treatment: Are Membranes the Panacea?. Annual Review of Chemical and Biomolecular Engineering 11:1, pages 559-585.
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Basma Al-Najar, Christian D. Peters, Hanan Albuflasa & Nicholas P. Hankins. (2020) Pressure and osmotically driven membrane processes: A review of the benefits and production of nano-enhanced membranes for desalination. Desalination 479, pages 114323.
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George Q. Chen, Anna Artemi, Judy Lee, Sally L. Gras & Sandra E. Kentish. (2019) A pilot scale study on the concentration of milk and whey by forward osmosis. Separation and Purification Technology 215, pages 652-659.
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Xi Chen & Ngai Yin Yip. (2018) Unlocking High-Salinity Desalination with Cascading Osmotically Mediated Reverse Osmosis: Energy and Operating Pressure Analysis. Environmental Science & Technology 52:4, pages 2242-2250.
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Daniel B. Gingerich, Timothy V. Bartholomew & Meagan S. Mauter. (2017) Technoeconomic Optimization of Emerging Technologies for Regulatory Analysis. ACS Sustainable Chemistry & Engineering 6:2, pages 2370-2378.
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Supritam Dutta & Kaushik Nath. (2018) Prospect of ionic liquids and deep eutectic solvents as new generation draw solution in forward osmosis process. Journal of Water Process Engineering 21, pages 163-176.
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Daniel B. Gingerich, Eric Grol & Meagan S. Mauter. (2018) Fundamental challenges and engineering opportunities in flue gas desulfurization wastewater treatment at coal fired power plants. Environmental Science: Water Research & Technology 4:7, pages 909-925.
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Rodrigo Valladares Linares & Lijo Francis. 2018. Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation. Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation 335 345 .