Fluoropolymers: Difference between revisions

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[[File:Pillowdome.JPG|thumb|right|450px|Pillow dome built by [https://en.wikipedia.org/wiki/J._Baldwin Jay Baldwin]: The Ark houses a growing environment consisting of intensive organic gardens, irrigated by the "exhaust" from large, transparent tanks containing fish. (See [[Aquaponics|aquaponics]].) The aquaponic tanks also serve as an effective heat sink, allowing an indoor climate warm enough to grow bananas in February, in New England, with no fossil fuel heat source.]]
[[File:Pillowdome.JPG|thumb|right|550px|The [https://newalchemists.net/portfolio/pillow-dome/ Pillow Dome], built by [https://en.wikipedia.org/wiki/J._Baldwin Jay Baldwin] in the early 1980s, pioneered the concept of using inflated pillows made of Tefzel in three layers. [https://en.wikipedia.org/wiki/Argon Argon] was used as the inflating agent, leading to even better thermal insulation. The Ark housed a growing environment consisting of intensive organic gardens, irrigated by the "exhaust" from large, transparent tanks containing fish. The high, open interior space included tall fish pond (see [[Aquaponics|aquaponics]]), a large fig tree, and vegetable beds. The tanks also served as an effective heat sink, allowing an indoor climate warm enough to grow bananas in February, in New England, with no fossil fuel heat source (for more information on the Pillow Dome, see links below). The Pillow Dome pioneered the technology that was later used in the [https://en.wikipedia.org/wiki/Eden_Project Eden Project] in Cornwall.]]  


[[File:Eden project tropical biome.jpg|thumb|right|450px|Inside the tropical Biome at [https://en.wikipedia.org/wiki/Eden_Project Eden Project]: The covered biomes are constructed from a tubular steel (hex-tri-hex) with mostly hexagonal external cladding panels made from the thermoplastic ETFE. Glass was avoided due to its weight and potential dangers. The cladding panels themselves are created from several layers of thin UV-transparent ETFE film, which are sealed around their perimeter and inflated to create a large cushion. The resulting cushion acts as a thermal blanket to the structure.]]
[[File:Eden project tropical biome.jpg|thumb|right|550px|Inside the tropical Biome at [https://en.wikipedia.org/wiki/Eden_Project Eden Project]: The covered biomes are constructed from a tubular steel (hex-tri-hex) with mostly hexagonal external cladding panels made from the thermoplastic ETFE. Glass was avoided due to its weight and potential dangers. The cladding panels themselves are created from several layers of thin UV-transparent ETFE film, which are sealed around their perimeter and inflated to create a large cushion. The resulting cushion acts as a thermal blanket to the structure.]]


==About==
==About==
High-performance plastic materials such as [https://en.wikipedia.org/wiki/Polytetrafluoroethylene PTFE] ("Teflon") and resistant to corrosion from most substances and had better high temperature ETFE) ("Tefzel"). Very interesting properties such as UV resistance, resistance to corrosion, good high temperature performance. Fluoropolymer foil is useful for things like [[greenhouse]] covering and for [[Aluminum Extraction From Clays]]. The UV resistance of these materials results in long life, with up to 30 years reported with minimal degradation.  
These are high-performance plastic materials such as [https://en.wikipedia.org/wiki/Polytetrafluoroethylene PTFE] ("Teflon") [https://en.wikipedia.org/wiki/ETFE ETFE] ("Tefzel"). They have very interesting properties such as UV resistance, elasticity, resistance to corrosion from most substances and very good high temperature performance. Fluoropolymer foil is useful as [[greenhouse]] covering and for [[Aluminum Extraction From Clays]]. The UV resistance of these materials results in long life, with up to 30 years reported with minimal degradation.  


Also, UV transmission leads to more "natural" light spectrum inside the greenhouse, suppressing microbes that may otherwise survive if UV light is blocked off. Fluoropolymers are slowly catching on as greenhouse covering but are still much more expensive than current alternatives such as polyethylene and [[polycarbonate]]. Drawbacks include susceptibility to puncture holes and movement/wind, which is why fluoroplastic foil is often inflated as cushions (see images: "Pillow Dome" and "Eden Project"). Thicker membranes are possible but much more expensive.   
Also, UV transmission leads to a more "natural" light spectrum inside the greenhouse, suppressing microbes that may otherwise survive if UV light is blocked off. Fluoropolymers are slowly catching on as greenhouse covering but are still much more expensive than current alternatives such as polyethylene and [[polycarbonate]]. This may be due to lower overall production volume rather than inherently higher cost of the process. Drawbacks include high cost (10x that of polycarbonate), susceptibility to puncture holes and movement/wind, which is why fluoroplastic foil is often inflated as cushions (see images: "Pillow Dome" and "Eden Project"). Thicker membranes are possible but much more expensive.   


==Uses==
==Uses==
* greenhouse covering (as foil)
* [[greenhouse]] covering (as foil)
* corrosion-resistant containers and equipment
 
=Internal Links=
*[[Chloropolymers]] (Due to [[Chlorine from Brine]] Chlorine is a more [[Appropriate Material]] compared to [[Fluorine]],  however probably won't be able to get to the same level of performance, or even similar plastics due to just ''chemistry'' )
*[[Fluoroelastomers]]
*[[Pillow Dome]]
 
=External Links=
* J. Baldwin publications from: The Journal of the New Alchemists (both .pdf): [https://newalchemists.files.wordpress.com/2015/01/the-pillow-dome-1985-fuller-inst-text-nai-pictures.pdf "The Pillow Dome" (1985)] and [https://newalchemists.files.wordpress.com/2015/03/dome-as-village-component.pdf "A Dome Bioshelter as a Village Component" (1981)]
* American Durafilm: [http://www.americandurafilm.com/its-easy-being-green-with-tefzel-etfe-8-great-properties/ "It’s Easy Being Green with Tefzel® ETFE: 8 Great Properties"] and [http://www.americandurafilm.com/4-advantages-of-tefzel-etfe-film-for-a-greenhouse-covering/ "4 Advantages of Tefzel® ETFE Film for a Greenhouse Covering"]
* BuildItSolar: [http://www.builditsolar.com/References/Glazing/DuPontFilms.htm "DuPont Plastic Film Glazing"]
* [http://www.f-clean.nl/ F-CLEAN] is a Dutch supplier of ETFE film for horticultural greenhouses (useful technical information there)
 
[[Category:Food and Agriculture]] [[Category:Housing and construction]] [[Category: Plastics]]

Latest revision as of 21:19, 8 April 2022

The Pillow Dome, built by Jay Baldwin in the early 1980s, pioneered the concept of using inflated pillows made of Tefzel in three layers. Argon was used as the inflating agent, leading to even better thermal insulation. The Ark housed a growing environment consisting of intensive organic gardens, irrigated by the "exhaust" from large, transparent tanks containing fish. The high, open interior space included tall fish pond (see aquaponics), a large fig tree, and vegetable beds. The tanks also served as an effective heat sink, allowing an indoor climate warm enough to grow bananas in February, in New England, with no fossil fuel heat source (for more information on the Pillow Dome, see links below). The Pillow Dome pioneered the technology that was later used in the Eden Project in Cornwall.
Inside the tropical Biome at Eden Project: The covered biomes are constructed from a tubular steel (hex-tri-hex) with mostly hexagonal external cladding panels made from the thermoplastic ETFE. Glass was avoided due to its weight and potential dangers. The cladding panels themselves are created from several layers of thin UV-transparent ETFE film, which are sealed around their perimeter and inflated to create a large cushion. The resulting cushion acts as a thermal blanket to the structure.

About

These are high-performance plastic materials such as PTFE ("Teflon") ETFE ("Tefzel"). They have very interesting properties such as UV resistance, elasticity, resistance to corrosion from most substances and very good high temperature performance. Fluoropolymer foil is useful as greenhouse covering and for Aluminum Extraction From Clays. The UV resistance of these materials results in long life, with up to 30 years reported with minimal degradation.

Also, UV transmission leads to a more "natural" light spectrum inside the greenhouse, suppressing microbes that may otherwise survive if UV light is blocked off. Fluoropolymers are slowly catching on as greenhouse covering but are still much more expensive than current alternatives such as polyethylene and polycarbonate. This may be due to lower overall production volume rather than inherently higher cost of the process. Drawbacks include high cost (10x that of polycarbonate), susceptibility to puncture holes and movement/wind, which is why fluoroplastic foil is often inflated as cushions (see images: "Pillow Dome" and "Eden Project"). Thicker membranes are possible but much more expensive.

Uses

  • greenhouse covering (as foil)
  • corrosion-resistant containers and equipment

Internal Links

External Links