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High-precision cleaning is required across many sectors, including aerospace, defense, medical device manufacturing, pharmaceutical processing, semiconductor/electronics, and more. In this comprehensive reference work, solvent cleaning equipment is thoroughly covered with a focus on the engineering details of its operation and selection. Key data is provided alongside practical guidance, giving scientists and engineers in multiple sectors the information they need not only to choose the correct machine in the first place, but also how to operate it effectively and efficiently. Low emission open-top vapor degreasers, enclosed machines of the vacuum and pressurized type, cosolvent machines, and adsorption of "tailpipe emissions" are covered in detail and fully illustrated in color. This unique book covers material known by designers and manufacturers of solvent cleaning machines, but not collected and organized for the benefit of users. The comprehensive coverage provided by John Durkee makes this
book relevant and timely not only for readers who wish to know more
about how solvent cleaning equipment works but also those who are
under pressure from environmental regulators or corporate
management to find effective alternatives and those engaged in
non-solvent cleaning operations who are unsatisfied with their
cleaning results.
High-precision cleaning is required across a wide range of sectors, including aerospace, defense, medical device manufacturing, pharmaceutical processing, semiconductor/electronics, etc. Cleaning parts and surfaces with solvents is simple, effective and low-cost. Although health and safety and environmental concerns come into play with the use of solvents, this book explores how safe and compliant solvent-based cleaning techniques can be implemented. A key to this is the selection of the right solvent. The author also examines a range of newer "green" solvent cleaning options. This book supplies scientific fundamentals and practical guidance supported by real-world examples. Durkee explains the three principal methods of solvent selection: matching of solubility parameters, reduction of potential for smog formation, and matching of physical properties. He also provides guidance on the safe use of aerosols, wipe-cleaning techniques, solvent stabilization, economics, and many other topics. A compendium of blend rules is included, covering the physical,
chemical, and environmental properties of solvents.
More stringent quality standards and environmental/safety
regulations as well as new process and chemical technology have
changed industrial cleaning from a "wet and wipe" application to a
valued and demanding process operation. This book will help
cleaning operatives, designers of equipment, metal finishers,
industrial chemists and decontaminators understand the value and
demands required within the industrial cleaning process and an
environment of continuing change.
High-precision cleaning is required across a wide range of sectors, including aerospace, defense, medical device manufacturing, pharmaceutical processing, semiconductor / electronics, etc. In this reference work, John Durkee provides a comprehensive guide to all the main materials and reagents involved in the cleaning of surfaces, providing key data alongside practical guidance on applications and techniques and advice about health and environmental aspects. This handbook is a reference guide that covers all solvent types in industrial use for surface cleaning applications. Durkee's comprehensive coverage includes the cleaning solvents of the past (hydrocarbon), present (halogenated including fluorinated and iodated), and future (binary azeotropes and ionic liquids), including underused cleaning agents (e.g. oxygenated). The spectrum of information included starts with synthesis methods, supplies the normal physical properties (e.g. surface tension), explains the current applications and potential uses, and provides thorough safety, environmental, and health information. * A compendium of technical information about all solvents in use in precision cleaning applications; provides basic data for design and troubleshooting of any solvent cleaning system.* The most complete published data on binary azeotropes and their properties, enabling the selection of specific binary azeotropes for replacement of single solvents about which there are safety, health, and environmental concerns.* Up-to-date coverage of environmental concerns about each type of solvent.
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