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Industrial Natural
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200 INDUSTRIAL SHOP CLEANUP RAGS / TOWELS NATURAL US $31.99
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Superior 6 1/2 x 8 Industrial Natural Gas Engine; Core US $600.00 |
400 INDUSTRIAL SHOP RAGS / CLEANING TOWELS NATURAL US $60.99
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Ford 300 Natural Gas Industrial Engine US $900.00 |
Arrow C-46 Industrial Natural Gas Engine US $2,800.00 |
Tennant 45" Natural Fiber Brush Broom Part# 54927 Floor Industrial Sweeper 355 US $466.00
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#56407474 INDUSTRIAL HARD NYLON 32" NATURAL BRUSH US $112.00
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1000 INDUSTRIAL SHOP RAGS / CLEANING TOWELS NATURAL A+ US $159.05
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Fairbanks Morse 503 Industrial Natural Gas Engine Core US $1,000.00 |
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50 INDUSTRIAL SHOP CLEANUP RAGS / TOWELS NATURAL US $8.98
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Arrow Y-24 Industrial Natural Gas Engine; Rebuildable US $750.00 |
Lufkin L-333 Industrial Natural Gas Engine Rebuildable US $4,500.00 |
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The charm of the silk fabric has allured mankind since thousands for years. The dazzle, broad range of colors and the excellent texture has made this fabric - the most amicable of all. Silk fabric is manufactured by both, naturally and artificially. There are four types of natural silk is available, namely tasar, mulberry, muga and eri. However, the higher demand for natural silk led pressure to find out other options to make silk. The four natural silk sources seem incapable to cater the increasing demands. Now here a significant question arises - Is there any other source available to get natural silk? The answer is "YES", it's a "Spider Silk". It is true that irritate ting and ignored insect can produce good silk fibre.
Spider silk is a fibre, which is extracted from spiders. It is strong fibre, even its tensile strength is compared to the steel. The tensile strength for one type of steel at 1.65 Gpa, whereas spider silk is nearly at 1.3 Gpa. But, the density of spider silk less than steel and its tensile strength to density is about five times more than steel, such as DuPont's Kelvar, aromatic nylon filaments
Spider silk's Structure
Within a distinctive fibre, there are crystalline sectors with amorphous linkages. These crystal sectors are beta-sheets, which are put together. Spider silk is very flexible, and can be stretched up to 40 percent of its original length with no breakage problems. This results in a high ductility. Liquid crystalline spinning of spider silk is similar to aromatic nylon.
Spider silk is made of complex molecules of protein. Spider can't be farmed such as silkworms, as they are cannibals. Due to this nature they even eat each other. The silk extracted is very fine, thus to make one square yard cloth 400 spiders are require. The fibre gets harden when it is exposed to open air that creates a problem to work with. Because of the repetitive symptoms of the DNA encoding it is difficult to recognize its sequence. Only from 14 species the protein has been decoded.
Although various protein sequences are found in different, a common in spider silk structure is a sequence of amino acids, which self-assembled into a beta sheet group. The Ala rich blocks are distinguished by segments of amino acids with heavier side groups. The beta sheets gathers to make crystals, on the other side, other segments makes amorphous domains. The interaction between the crystalline segments and elastic amorphous regions results exclusive spider silk properties.
Spider Silk Origin
The silk gland releases the fibre. Different spider species have different glands for their own reason like web-creation, housing, capturing the prey and defense. The visible part of the gland is called as the spinneret. The initial part of the gland is full of thiol and tyrosine, the key ingredients in silk fibre. After making of fibres, the ampulla plays role of a storage box. Here, spinning duct sweeps-off water from the fiber and small channels also help in this process. Liquid separation is conducted at the verge the distal limb of the duct, and further passes to the valve. The valve is anticipated to help in fixing broken fibers again, playing more in the path of a helical pump.
Artificial spider silk
It is not usually possible to utilize spiders to produce spider silk in enormous quantity to cater industrial demands, because it is hard to manage huge number of spiders. Steps have taken in extracting the spider silk gene and using other options to manufacture the needed quantity of spider silk. In year 2000, a Canadian biotechnology company, Nexia was successful in making spider silk protein in goats.
These goats hold the spider silk protein gene, and the milk produced contained considerable amount of the protein. However, the trials were unsuccessful to spin the protein into a fibre equivalent to the natural spider silk.
The spider's spinneret is able in turn the silk proteins into strong domains. Particularly, the spinneret makes an incline of protein concentration, pH and pressure that leads the protein blend through liquid crystalline transitions, resulting creation the required silk structure. Imitating this process in laboratory has been witnessed very tough. Nexia tried to imitate this process by pressing the solution of protein via fine holes; however, this was inefficient trial to manage the fibres appropriately.
Spider Silk Applications
Recent research in the spider silk includes its potential utilization as an extremely strong and versatile thing. The interest in producing the spider silk is mostly due to a blend both, its mechanical properties and the non-polluting option. The manufacturing of latest man-made fibres like Dupont's Kevlar, are made from petrochemical processing that results massive pollution. On the other hand, the manufacturing of spider silk is entirely environment-friendly, as it is produced by spiders at normal temperature, pressure and water, without any pollution. Additionally, spider silk is fully biodegradable. If the production of spider silk increases, it may replace Kevlar and can be used to range of products like bullet-proof clothing, wear-resistant lightweight clothing, topes, nets, seat belts, parachutes, rust-free panels on motor vehicles or boats, bio-degradable bottles and medical items.
Conclusion
The spider silk has raised an open challenge to scientist, engineer, spinner and weavers to manage its development and to get acquainted with inherent skills of spider in making the silk thread.
Reference
htpp://www.chm.bris.ac.uk/
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The Role of Nanotechnology in Textile Chemicals Industry
The role of nanotechnology in textile industry has accelerated with a positive momentum during the recent past years. Textile companies have been spending ample in research and development activities in order to discover appropriate products, and add innovations to their existing ones. In fact, textile industry is the first manufacturing industry to come up with finished products that are enhanced through nanotechnology-based products. Nanotechnology has versatile applications in Textile Chemicals industry in manufacturing garments with stain resistance, flame retardant finishes, wrinkle resistance finishes, moisture management, antimicrobial qualities, UV protection, and soil release properties, etc.
Fibre2fashion has got feedback from the Schoeller Technologies AG, one of the leaders in Nanofinishes from the textile industry regarding the role of Nanotechnology in textile industry.
The leaves of certain plants always stay clean, because dirt cannot adhere to the finely- structured Surfaces and is easily washed off by rain.
The natural non-stick, and cleaning process, also known as the self-cleaning effect, is permanently transferred to the textile surface by means of nanotechnology.
The result is NanoSphere an ecologically clean textile finish, developed in accordance with the bluesign standard.
Water and stains have no chance:
Water and annoying stains have no chance on textiles with a NanoSphere finish. The nanotechnology-based textile impregnation is characterized by a high level of water resistance, a natural self-cleaning effect and a durable protective function.
Advantages:
• High level of water resistance
• Naturally self- cleaning
• Durable protective function
High level of water resistance:
On NanoSphere textiles, water drops, e.g. when it is raining steadily, runoff simply and reliably
Naturally self-cleaning:
Oil, dirt and dust do not adhere to the NanoSphere surface and can be rinsed off with water.
Durable protective function:
Due to the extremely high level of abrasion resistance, the NanoSphere protective function is retained even with heavy duty use, frequent washing or cleaning.
The NanoSphere-finish when compared to other traditional textile finishes has a very high level of both wet and dry abrasion resistance.
Durable protective function:
• Normal washing or dry cleaning.
• Garments with NanoSphere finish can be washed and dry cleaned very easily.
• After 50 washing cycles the function still remains.
• Fabric softeners or dryer sheets are not recommended.
• Ironing or Tumbling.
• Heat and ironing recommended for optimum function.
NanoSphere is based on blue sign standard:
This NanoSphere technology is based on the blue sign standard, and guarantees the highest possible exclusion of substances which are harmful to human so the environment and promotes the economical use of resources in manufacturing.
• Elimination of all problematic substances
• Nano particles are fixed into a coating matrix.
• First class hygienic working conditions.
NanoSphere advantages at a glance:
• Uniquely repels water and stains.
• High level of abrasion resistance.
• NanoSphere offers reliable protection and lots of comfort
• The function is maintained even after numerous washing or cleaning cycles.
• NanoSphere can be applied on all types of textiles (cotton, synthetics etc.)
• Look, feel and breath ability are not affected.
• Ecologically clean textile finish developed in accordance with the bluesign standard.
About the Author
Fibre2Fashion.com - Leading B2B Portal and Marketplace of Global Textile, Apparel Fashion & Retail Industry, Also Provides complete information on Textile Dyes industries through products, Articles, News, Jobs, and Events.
Why do we tend to assume that natural chemicals are benign while industrial chemicals are evil?
Some people seem to have a poison paranoia about synthetic chemicals.
According to the EPA, there are over 75,000 artificial chemicals which have been created and manufactured over the past 60 years. They have had the resources to test 7% for safety and have found serious problems with every thing they've tested.
You have not had the time to "evolve" defenses against any of these chemicals. They include so-called "Xeno Estrogens" which mimic strong estrogen signals and are being blamed on three-legged frogs all over the US as well as endometriosis in young girls.
So the parania over synthetic chemicals is based on the clear data.
Yes, there are many many naturally occuring compounds which are poisonous too.
Natural Gas Fluctuates on Speculation Supplies Will Be Ample
April 6 (Bloomberg) -- Natural gas futures fluctuated in New York on speculation supplies will be ample to meet U.S. requirements for the power plant and industrial fuel.
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