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BACKGROUND AND FUNDAMENTALS OF SOLID WASTE ANALYSIS AND MINIMIZATION
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The institute develops and sponsors technical and management workshops and conferences. The CWMI staff also produces reports, audio-visual, and computer-based training materials. The CWMI houses a publication library with over 5700 reference materials and is open to the public. A database of the library materials can be accessed and searched through the CWMI Web site. This project is similar to the WAMRP in that both integrate colleges and government agencies to increase environmental awareness. The primary difference rests in the focus of each project. The WAMRP focuses on no-cost waste assessments and the CWMI focuses on waste characterization. The Indiana Institute on Recycling, a state-run agency, was created in 1989 by the General Assembly of Indiana. It is located at Indiana State University, in Terre Haute, Indiana. The institute developed concepts, methods, and procedures for assisting Indiana residents in reducing and recycling solid waste. The institute has conducted over 90 solid waste reduction studies with emphasis on cost-bene ts. The studies have developed economical and environmental solutions for companies to address speci c solid waste issues at their facilities; for example, cost analyses on the use of reusable shipping containers. The institute is similar to the WAMRP in that both are supported by state funding, utilize college students to conduct the studies, and apply economic bene t analyses as an incentive for companies to reduce waste. The primary difference is that the institute addresses very focused, speci c waste reduction needs of companies covering a broad range of areas and the WAMRP speci cally conducts solid waste audits to characterize the companies waste streams and target areas for reduction.
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Institute on Recycling (Indiana University) Total Assessment Audits (Iowa State University)
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In 1993, Iowa State University and the Iowa Energy Center developed a Total Assessment Audit (TAA) project that conducted energy, waste reduction and productivity audits simultaneously for manufacturing facilities (Haman, 2000). The TAA concept originated from the belief that a manufacturing facility is better served using a holistic approach to problem solving rather than the more conventional isolated approach. The TAA approach assumes energy, waste reduction, and productivity objectives are interrelated and that simultaneous evaluation will produce synergistic results. The TAA methodology utilized in Iowa has evolved over a 6-year time frame and utilized on 25 audits. The TAA procedure emphasizes top management support and the use of cross-functional teams. Benchmarking exercises and energy usage analyses have been conducted to begin the audit process identify improvement opportunities. An initial 2- to 3-day on-site audit is conducted with the aid of key facility operating and management personnel. The TAA team members are paired with the appropriate facility personnel to collect speci c data, gather a working knowledge of operations, and identify opportunities for improvement. Workshops are conducted at the end of the day to exchange information and are structured to encourage open discussion and debate regarding the merit of each identi ed opportunity. The TAA method is a very powerful tool for small- and medium-sized manufacturers and identi es and evaluates improvement opportunities, while accounting for the
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interconnected levels of energy, waste, and process analyses. This method allows for an ef cient, cost-effective analysis, in essence combining three audits into one. This TAA concept is similar to the WAMRP in that both involve universities and aid companies in reducing waste. The major differences are that TAAs analyze more functions for the business, are only conducted for manufacturers, have less involvement from students, and are not provided free of charge.
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This chapter provided a broad overview of the solid waste industry and solid waste minimization. An understanding of these concepts is critical for an overall understanding of the eld and aid in developing optimal solutions. The worldwide generation rates provide an overview of the solid waste problem and the need for engineering solutions. The government s response to these problems was also introduced with a discussion of laws and regulations. Finally, from the practitioner s standpoint several tools were discussed to minimize solid waste, including solid waste exchanges, life cycle assessment, and the human factors of recycling.
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