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osmosis
Sign in to saveAlso known as endosmose, osmose
thumb|400px|right|The process of osmosis over a semipermeable membrane. The blue dots represent particles driving the osmotic gradient. Osmosis (, ) is the spontaneous net movement of solvent molecules through a selectively permeable membrane from a region of high water potential (region of lower solute concentration) to a region of low water potential (region of higher solute concentration), in the direction that tends to equalize the solute concentrations on the two sides. It may also be used to describe a physical process in which any solvent moves across a selectively permeable membrane (p
Osmosis is the spontaneous movement of water molecules across a special membrane from areas where water is more concentrated to areas where dissolved substances are more concentrated, naturally working to balance out the concentration differences on both sides. This process matters because it's fundamental to how cells function and how living organisms manage water and nutrients.
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Research
15,441 papers- Osmosis.ReviewQuarterly reviews of biophysics · 1979Hill ADOI: 10.1017/s0033583500002602
- Lipid osmosis, membrane tension, and other mechanochemical driving forces of lipid flow.ReviewCurrent opinion in cell biology · 2024Zhang Y, Lin CDOI: 10.1016/j.ceb.2024.102377
- Reverse osmosis desalination: water sources, technology, and today's challenges.ReviewWater research · 2009Greenlee LF, Lawler DF, Freeman BD et al.DOI: 10.1016/j.watres.2009.03.010
- DIATOMS.ReviewAnnual review of microbiology · 1963LEWIN JC, GUILLARD RRDOI: 10.1146/annurev.mi.17.100163.002105
- Novel technologies for reverse osmosis concentrate treatment: a review.ReviewJournal of environmental management · 2015Joo SH, Tansel BDOI: 10.1016/j.jenvman.2014.10.027
- [Diffusion, osmosis].Odontologisk tidskrift · 1953MORCH T
- Osmosis: membranes impermeable and permeable for solutes, mechanism of osmosis across porous membranes.ReviewPhysiological research · 2000Janácek K, Sigler K
- The potential of forward osmosis in reducing water consumption in hemodialysis.ReviewNefrologia · 2026Tarrass F, Benjelloun MDOI: 10.1016/j.nefroe.2026.501492
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Article
15 sectionsContents
- History
- Description
- Mechanism
- Role in living things
- Factors
- Osmotic pressure
- Osmotic gradient
- Variation
- Reverse osmosis
- Forward osmosis
- Future developments in osmosis
- See also
- Notes
- References
- External links
thumb|400px|right|The process of osmosis over a semipermeable membrane. The blue dots represent particles driving the osmotic gradient. Osmosis (, ) is the spontaneous net movement of solvent molecules through a selectively permeable membrane from a region of high water potential (region of lower solute concentration) to a region of low water potential (region of higher solute concentration), in the direction that tends to equalize the solute concentrations on the two sides. It may also be used to describe a physical process in which any solvent moves across a selectively permeable membrane (permeable to the solvent, but not the solute) separating two solutions of different concentrations. Osmosis can be made to do work. Osmotic pressure is defined as the external pressure required to prevent net movement of solvent across the membrane. Osmotic pressure is a colligative property, meaning that the osmotic pressure depends on the molar concentration of the solute but not on its identity. Osmotic transport occurs through viscous flow of the solvent under a pressure gradient.
Osmosis is a vital process in biological systems, as biological membranes are semipermeable. In general, these membranes are impermeable to large and polar molecules, such as ions, proteins, and polysaccharides, while being permeable to non-polar or hydrophobic molecules like lipids as well as to small molecules like oxygen, carbon dioxide, nitrogen, and nitric oxide. Permeability depends on solubility, charge, or chemistry, as well as solute size. Water molecules travel through the plasma membrane, tonoplast membrane (vacuole) or organelle membranes across the phospholipid bilayer via aquaporins through a selective pore flow mechanism. Osmosis provides the primary means by which water is transported into and out of cells. The turgor pressure of a cell is largely maintained by osmosis across the cell membrane between the cell interior and its relatively hypotonic environment.
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