File:FilterDiagram.svg · Wikimedia Commons · See Wikimedia Commons
filtration
Sign in to saveright|thumb|300px|Diagram of simple filtration: oversize particles in the feed cannot pass through the lattice structure of the filter, while fluid and small particles pass through, becoming filtrate.
Research
221,639 papers- Sterile Filtration.International journal of pharmaceutical compounding · 2024
- Sterile Filtration.International journal of pharmaceutical compounding · 2015
- Membrane filtration of pharmaceutical solutions.American journal of hospital pharmacy · 1993
- [Filtration technology].Revue francaise de transfusion et d'hemobiologie : bulletin de la Societe nationale de transfusion sanguine · 1993
- Protein fouling during constant-flux virus filtration: Mechanisms and modeling.Biotechnology and bioengineering · 2023
via PubMed
Wikidata facts
- Image
- Cold Filtration (with stirring rod).jpg
Show 2 more facts
- Commons category
- Filtration
- exact match
- purl.obolibrary.org/obo/OBI_0302885
via Wikidata · CC0
~20 min read
Article
15 sectionsContents
- Physical processes
- Methods
- Filtering force
- Filter media
- Achieving flow through the filter
- Filter aid
- Alternatives
- Biological filtration
- Excretion
- Biofilms
- Filter feeders
- Examples
- See also
- References
- External links
right|thumb|300px|Diagram of simple filtration: oversize particles in the feed cannot pass through the lattice structure of the filter, while fluid and small particles pass through, becoming filtrate.
Filtration is a physical separation process that separates solid matter and fluid from a mixture using a filter medium that has a complex structure through which only the fluid can pass. Solid particles that cannot pass through the filter medium are described as oversize and the fluid that passes through is called the filtrate. Oversize particles may form a filter cake on top of the filter and may also block the filter lattice, preventing the fluid phase from crossing the filter, known as blinding. The size of the largest particles that can successfully pass through a filter is called the effective pore size of that filter. The separation of solid and fluid is imperfect; solids will be contaminated with some fluid and filtrate will contain fine particles (depending on the pore size, filter thickness and biological activity). Filtration occurs both in nature and in engineered systems; there are biological, geological, and industrial forms. In everyday usage the verb "strain" is more often used; for example, using a colander to drain cooking water from cooked pasta.