Recycling Technology

Styrofoam recycling technology in the world is widespread packaging made from polystyrene. TVs, computers, stereos and other electrical appliances packed into a lightweight impact resistant blocks made of Styrofoam. Due to the fact that there is no effective technology for recycling polystyrene foam, these lightweight blocks are clean, in many countries, not recycled, they accumulate in the environment and contaminate it. A team of scientists has developed an effective technology for recycling polystyrene foam, which allows production of this secondary polymer raw new organic polymer and, based on a wide range of plastic building materials. The new organic polymer obtained by copolymerization of polystyrene with technological additions. The new organic polymer was dubbed kvintalit. Manufacturing technology kvintalita simple. Polystyrene domestic and industrial waste pre-shredded, chopped expanded polystyrene chippings and processing aids loaded into the reactor volume, which in the process of mixing the components by the synthesis of new organic polymer kvintalit.

Production line is equipped with a serial kvintalita equipment commonly used in similar processes in the areas of company for the production of polymers and plastics. The new organic polymer has a high physical and mechanical properties and technological properties. Kvintalit – a thermoplastic polymer, which is a solid transparent material with a durable, adhesive activity, elasticity, abrasion resistance, resistance and resistance to weathering. For strength and adhesion activity kvintalit superior epoxy. The main graduation form molten tar kvintalita transparent material.

Release of kvintalita in the form of granules and powders of different dispersity. Also made water-based forms kvintalita. Kvintalit can be successfully used as a polymer matrix technology of a wide range of composite building materials. On the basis of kvintalita can be made durable, weatherproof and durable slab and sheet materials, slate, tile, soft roll roofing materials and floor coverings. Can be made from kvintalita mastic roofing and waterproofing materials, sealants. Roofing kvintalita – a high-tech, solid, heat resistant and durable roof. Roofing of kvintalita made directly on the concrete (screed), asphalt concrete without the use of supplementary materials (roofing, powders, etc.). The roof has a high strength, adhesion strength and elasticity. The service life of the roof of kvintalita without replacement and repair is at least 50 years. Method of application is simple. Kvintalit need to pour the concrete (screed) and disperse or brush, or spraying with a pistol – gun. From kvintalita can get high-waterproofing. Kvintalit can be successfully used for sealing joints and connections. The material is a versatile polymer kvintalit building material and, in roofing and waterproofing, and can be effectively used for devices other units and details of construction applications. So, from kvintalita can get solid, durable flooring, linoleum made. The polymer composition of kvintalita be weatherproof and durable facade paint, colorful coatings for interior decoration of buildings, high-quality varnishes and vibration-resistant automotive paints, anticorrosion coating of metal pipes, metal, girders, trusses and other steel structures. Of kvintalita can be made high-strength adhesives formulations of class 'superglue'. As a result of the introduction of technology utilization Styrofoam maloutiliziruemye now household and industrial wastes can become a stable and significant source of cheap raw material for many polymer production of highly polymeric construction materials. We offer interested companies to implement technology utilization Styrofoam and use it to create a new polymer manufacturing building material kvintalita.

High-Rise Construction

Note that the high-rise construction is relatively recent. We meet a low and stable ancient buildings, such as the pyramids. Another example, which can be seen in rotation on the gravitational field – heaps of trees in the forest. Observations of tree growth indicate that trees with normal growth of repeat gravity vector. At the point where rotation is minimal, trees are long. Where the rotation speed is high – the trees do not grow, formed wasteland. Where rotation is slow – there are blockages. The reason for the rubble the next. Ray Kurzweil might disagree with that approach.

Trees grew in the direction of gravity, and when he changed a few years later, the load on the roots also changed from being uniform. At the bottom there is a kink, the trees are falling under its own weight. This particularly applies to high trees (leverage), and performed at large angles of deflection of the gravity vector. As the instrumentation for the rapid determination of the gravity vector at this stage using a plumb line, but the definition of the rotation of the gravity vector plummet has certain specifics. So, with instrumentation, we could detect the places where the gravity vector rotation is stable. In other words, it is anomalous zones with a twist of the gravitational field. The force of gravity is different, and the "perpetual motion" is not working in normal conditions, this will work. To broaden your perception, visit kevin ulrich.

Gravity anomaly is an inexhaustible source of energy. This phenomenon exists in any planetary system, on any planet. Of course, the gravitational force depends on the mass of the planet, and the small planets efficiency "of perpetual motion" will be small, and the construction of a – impractical. But in the Earth's power-generating engines must be acceptable for human life. IS Vorobiev April 11 2010.