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Books on the topic 'Chemical reactor safety'

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1

1932-, Benuzzi A., and Zaldívar J. M. 1958-, eds. Safety of chemical batch reactors and storage tanks. Dordrecht: Kluwer Academic Publishers, 1991.

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2

John, Barton, Rogers Richard, and Institution of Chemical Engineers (Great Britain), eds. Chemical reaction hazards: A guide. Rugby, Warwickshire, UK: Institution of Chemical Engineers, 1993.

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3

1935-, Barton John, and Rogers Richard 1951-, eds. Chemical reaction hazards: A guide to safety. 2nd ed. Houston, Tex: Gulf Pub. Co., 1997.

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4

American Institute of Chemical Engineers. Center for Chemical Process Safety. Guidelines for process safety in batch reaction systems. New York: Center for Chemical Process Safety of the American Institute of Chemical Engineers, 1999.

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5

G, Miller D., Atomic Energy of Canada Limited., and Chalk River Laboratories. Reactor Chemistry Branch., eds. Controlling radiation fields in CANDU reactors using chemical decontamination technologies. Chalk River, Ont: Reactor Chemistry Branch, Chalk River Laboratories, 1997.

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6

Nazarov, Vyacheslav, Roman Sandu, and Dmitriy Makarenkov. Technique and technology of combined processing of solid waste. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/996365.

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Abstract:
The educational manual provides information about industrial and domestic waste. The properties of the lithosphere and the soil components. The estimation of soil pollution by industrial and household waste. The peculiarities of classification of wastes and provides criteria for determining risk. Describe the General pattern of the combined methods of processing that use mechanical, physical, thermal and biothermal recycling processes. In detail the construction described granulating equipment, methods of intensification of processes, process flow sheets and engineering calculation methods. Special attention is given to the thermal methods of waste treatment, process lines, constructions of furnaces and reactors. On the basis of the system approach with use of data of environmental monitoring are considered the methodology for selecting the most available technology. Meets the requirements of Federal state educational standards of higher education of the last generation. Intended for independent work of undergraduates majoring in 20.04.01 "Technospheric safety" (master level), 20.03.01 "Technosphere safety" (bachelor level), 18.03.01 "Chemical technology" 18.03.02 "Energy and resource saving processes in chemical technology, petrochemistry and biotechnology". Can be useful for engineers and technicians of chemical industry and related industries.
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7

Takagi, Jinzaburō. Takagi Jinzaburō chosakushū. Tōkyō: Nanatsumori Shokan, 2001.

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8

Powers, D. A. Submission for the CSNI/GREST benchmark exercise on chemical thermodynamic modeling in core-concrete interaction releases of radionuclides. Washington, DC: Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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9

Center for Chemical Process Safety (CCPS). Guidelines for Process Safety in Batch Reaction Systems. Wiley-AIChE, 1999.

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10

Rogers, Richard, and John Barton. Chemical Reaction Hazards, Second Edition. 2nd ed. Gulf Professional Publishing, 1997.

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11

Chemical reaction hazards: A guide to safety. 2nd ed. Rugby: Institution of Chemical Engineers, 1997.

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12

Prager, Jan C. Environmental Contaminant Reference Databook (Comprehensive Chemical Containments). Wiley-Interscience, 1998.

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13

Rogers, Richard, and John Barton. Chemical Reaction Hazards: A Guide to Safety, Second Edition. 2nd ed. Institute of Chemical Engineers, 1997.

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14

Control and prevention of runaway chemical reaction hazards: 11th and 12th November, 1986, conference papers. London: IBC Technical Services, 1987.

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15

Decontamination of Water Cooled Reactors (Technical Reports Series). International Atomic Emergy Agency (IAEA), 1994.

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16

Kessler, Günter. Sustainable and Safe Nuclear Fission Energy: Technology and Safety of Fast and Thermal Nuclear Reactors (Power Systems). Springer, 2012.

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