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Hazards prevention

Parshall, D. R. (1989). Suggestions for Structuring the Product Design and Manufacturing Process to Help Create Safe Products and Reduce Litigation Risk. Hazard Prevention (April/June), 12-17. [Pg.143]

Lee, J. H. S, Knystautas, R., and Goroshm, S. 1996. The Testing of Detonation Arresters. Proc. Inti. Symp. On Hazards Prevention and Mitigation of Industrial Explosions, pp. 7.27-7.40. Christian Michelsen Research AS, Bergen, Norway. [Pg.166]

For llie most part future trends can be found in hazard prevention. [Pg.436]

Hazards prevention can also be a reason for wastewater quality monitoring, in order to protect biological treatment plants from toxic shock loads, for example, or to prevent potential toxic effects on the receiving medium. This application is mainly found in industrial contexts where the presence of toxic pollutants may occur. In this case, on-line systems are obviously preferable for real-time warning. [Pg.245]

In fact, there exists a great difference between the two types of needs in terms of traceability. On the one hand, the regulation compliance need and more often the scientific need require us to be as confident as possible about the trueness of the results (or at least the closeness between the results and true values) and to store the data for further exploitation. On the other hand, process control and hazards prevention are based on the real-time exploitation of the results. [Pg.249]

A final up-and-coming application, based on non-parametric measurement, is used more and more for process control and hazards prevention, for example for shock load prevention or toxic events. This qualitative approach uses integrated information coming from multiple physical signals ... [Pg.264]

Production cultivation growth, 7 7 28 Production hazards, preventing, 27 832-846... [Pg.763]

Silverstein, J. L., B. H. Wood, and S. A. Leshaw (1980). "Case Study in Reactor Design for Hazards Prevention." 88th AIChE National Meeting, June 10, 1980, Philadelphia, PA. [Pg.227]

U.S. Environmental Protection Agency (USEPA), 2000. Case Study Waste Fuel/Oxidizer Reaction Hazards, Prevention of Reactive Chemical Explosions, EPA 550-F00-001, Office of Solid Waste and Emergency Response, April 2000. [Pg.368]

Hazard Prevention Magazine, System Safety Society, Second quarter 2001. [Pg.355]

In this article are reviewed problems associated with the safe handling of hazardous devices and materials of interest, primarily for military applications. The subject matter will be examined from the point of view of hazard prevention, of hazard assessment and of damage control. Naturally, as most such systems present some hazard, the problem becomes one of quantifying the magnitude of the risk. Hence one can describe the subject of safety as a discipline defining the degree of hazard, which determines the precautions required for avoidance of hazards and one which determines the adequacy of protection for personnel and facili-... [Pg.234]

S.I. Stoliarov, P.R. Westmoreland, H. Zhang, R.E. Lyon, and M.R. Nyden, Molecular modeling of the thermal decomposition of polymers. In Fire and Polymers IV, Materials and Concepts for Hazard Prevention, C.A. Wilkie and G.L. Nelson (eds.), American Chemical Society, Washington, DC ACS... [Pg.39]

Marosi, G., Keszei, S., Matko, S., and Bertalan, G. 2006. Effect of interfaces in metal hydroxide-type and intumescent flame retarded nanocomposites. In Fire and Polymers TV Materials and Concepts for Hazard Prevention, Vol. 922, eds. Wilkie, C. and Nelson, G. Washington, DC ACS, pp. 117-30. [Pg.346]

Marosi, G., Anna, P., Bertalan, G., Szabo, S., Ravadits, I., and Papp, J. 2001. Role of interface modification in flame retarded multiphase polyolefin systems. In Fire and Polymers Materials and Solutions for Hazard Prevention, Vol. 797. eds. Nelson, G. and Wilkie, C. Washington, DC American Chemical Society, pp. 161-71. [Pg.347]

Hirschler, M.M., Tools available to predict full scale fire performance of furniture, in Fire and Polymers. II. Materials and Tests for Hazard Prevention, Ed. G.L. Nelson, ACS Symposium Series 599, Developed from ACS Symposium in 208th ACS National Meeting, August 21-25, 1994, Washington, DC, Chapter 36, pp. 593-608, American Chemical Society, Washington, DC, 1995. [Pg.667]

Hirschler, M.M., Fire Performance of Organic Polymers, Thermal Decomposition, and Chemical Composition, American Chemical Society, Fire and Polymers—Materials and Solutions for Hazard Prevention, ACS Symposium Series 797, Eds. G.L. Nelson and C.A. Wilkie, Washington, DC, pp. 293-306, 2001. [Pg.668]

Laskoski, M., Domingues, D. D., and Keller, T. M. Processablc phthalonitrile resins with high-thermal and oxidative stability, Fire and Polymers IV Materials and Concepts for Hazard Prevention ACS Symposium Series 922, Ed. Wilkie, C. A. and Nelson, G. L., American Chemical Society, Washington, DC, 2005, pp. 378-390. [Pg.723]

Najafi-Mohajeri, N. Jayakody, C Nelson, G.L. Cone calorimetric analysis of modified polyurethane elastomers and foams with flame-retardant additives. In Fire and Polymers. Materials and Solutions for Hazard Prevention, Nelson, G.L., Wilkie, C.A., Eds. ACS Symposium Series 797 American Chemical Society Washington, 2001 pp. 79-89. [Pg.779]

Takeshi Haga and Michio Naito, "1981-Interim Report, by the Committee for Investigation of Safety of Batch Reaction Processes", Central Association for Labor Hazard Prevention (1982)... [Pg.71]

Seiji Nakamura, "A Survey Report on Fires in the Great Earthquake in Tokyo", Report from Hazard Prevention Workshop, Volume-Fires (V), No.100, 81 (1925)... [Pg.72]


See other pages where Hazards prevention is mentioned: [Pg.57]    [Pg.194]    [Pg.244]    [Pg.246]    [Pg.247]    [Pg.92]    [Pg.24]    [Pg.110]    [Pg.91]    [Pg.23]    [Pg.362]    [Pg.1175]    [Pg.362]    [Pg.2297]   
See also in sourсe #XX -- [ Pg.159 , Pg.160 ]




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