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A fluid container pouch is provided internally with a flexible straw to allow for the convenient and hygienic consumption of the beverage, or storage and use of other fluid materials. The fluid container pouch comprises at least first and second fluid chambers having at least two flow channels for fluid communication between said first and second fluid chambers. At least one of said flow channels comprises a flexible conduit, such as a flexible drinking straw. The fluid container pouch comprises two opposing pliable sidewalls, and the sidewalls are formed of a composite material, such as a polypropylene ply having a barrier layer of aluminum foil, a metalized coating, or polyethylene vinyl alcohol, on at least one side of said polypropylene ply.
A fluid container having a generally tetrahedral shape configured for interleaved packaging, and having a conduit with a seal at one end. The container is formed from either a rigid material, such as a blow-molded polymer, or a semi-rigid material, including pliant sheet material in one or more plies. It may include a recess in its base to improve container rigidity and stability. The seal at one end of the conduit can be either a fitment, or a frangible closure, and may include a tab to facilitate opening. Also, a multi-pack of items and a method for assembling a multi-pack of items for the efficient use of shelf space. A first plurality of generally tetrahedral items is arranged in a hexagonal footprint, and is interleaved with a second plurality of similarly arranged tetrahedral items. A small void space within the resulting multi-pack may be optionally used to carry another object.
A fluid container pouch has first and second opposing side walls forming at least one enclosed chamber between them, each side wall is comprised of a laminate material having at least two layers. A first layer of the laminate is sealant layer for sealing to a sealant layer of an opposed side wall. A second layer of the laminate provides a barrier between the contents of the pouch and its environment. Each of the first and second layers comprises a material having oriented structure, such that energy sufficient to tear the material will be directed in a predetermined direction across the material, and further that the oriented structures of the first and second layers are aligned with each other. At least one design weakness in the pouch operative to direct tearing energy in a direction aligned with the oriented structure of said first and second layers.
The present invention provides a gelatin product that is shelf stable at room temperatures, completely vegetable-based, nutritionally beneficial to the consumer, able to meet restrictive religious dietary requirements, convenient and enjoyable to eat. The gelatin consists water held in a molecular network of carrageenan polysaccharide chains, cross-linked by ions in solution with the water. An iota form of carrageenan is particularly suitable for the gel formulation. Calcium ions are also particularly suitable for the gel formulation.
Process For Recycling And Recovery Of Purified Nylon Polymer
The invention comprises an improved recycling and recovery process for rugs, flooring, carpeting, carpeting materials, and other textiles particular from waste carpet containing at least some synthetic fiber backing materials, and at least some nylon as well, and more particularly for the separation and recovery of the nylon polymers in purified and reusable condition and also recovery of other polymeric fibers and materials which may be present and can be recycled and reused.
Carpet Recycling Process For Nylon Containing Carpeting
This invention comprises recycling and recovery processes for rugs, flooring, carpeting, carpet materials, and all other textiles particularly from waste carpet containing both synthetic and natural fibers and for backing materials, and more particularly for the separation and recovery of various nylon polymers as well as other polymeric fibers and materials for recovery and reuse.
Method For Separating And Removing Inert Components From Carpet Waste Material
- PRINCETON NJ, US ROLAND STEFANDL - PRINCETON NJ, US
Assignee:
CARPET RECYCLING, LLC - PRINCETON NJ
International Classification:
C08J 11/04
US Classification:
521 41, 521 498
Abstract:
The invention comprises a method for the separation and removal of inert components, from carpet waste materials, such as from fiber flooring, rugs, carpet components, carpet material and all other textiles that contain fiber materials, both natural and synthetic or from carpet waste composed of processed carcasses comprising at least one polymeric fiber with the method comprising the steps of (a) placing the carpet waste material into an acid solvent, (b) solubilizing at least one net component of the carpet waste material by chemical reaction with the acid solvent at low pH and (c) reacting the carpet waste material in the acid solvent at a temperature corresponding to room temperature or a low ambient reaction temperature below the dissolution temperature of any of the fiberous textiles in the carpet waste such that two unique phases are simultaneously formed from the reaction with one being a liquid phase consisting of as solublized compound dissolved in water and the other comprising a stream of polymeric textile fibers in solid phase.
Name / Title
Company / Classification
Phones & Addresses
Roland Stefandl President
Poly Chem Systems Inc Mfg Restaurent Cooking Equipment
Players Club 2014 - 2016
Member
Institute For Engineered Interfaces 2014 - 2016
Advisory Board
Manhattan College 2013 - 2013
Adjunct Faculty -Graduate School Chemical Engineering
Chemists Club of Nyc 2013 - 2013
President
I-Allnatural 2013 - 2013
Founding Principal
Education:
Columbia University In the City of New York 2007 - 2011
Doctorates, Doctor of Philosophy, Chemical Engineering
Columbia University In the City of New York 2006 - 2009
Masters, Philosophy
Columbia University In the City of New York 1990 - 1992
Masters, Chemical Engineering
New York University
Bachelors, Chemical Engineering
New York University
Masters, Master of Arts, Chemistry
Archbishop Molloy High School
Skills:
Polymers Chemical Engineering Product Development Manufacturing Plastics R&D Process Engineering Engineering Nanotechnology Research Strategic Planning Cross Functional Team Leadership Business Strategy New Business Development Materials Fda Negotiation Leadership Sales Business Development Contract Negotiation Marketing Research and Development U.s. Food and Drug Administration
Languages:
English German
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