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Cryogenic Safety = A Guide to Best P...
~
Weisend II, J. G.
Cryogenic Safety = A Guide to Best Practice in the Lab and Workplace /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Cryogenic Safety/ by Thomas J. Peterson, J. G. Weisend II.
Reminder of title:
A Guide to Best Practice in the Lab and Workplace /
Author:
Peterson, Thomas J.
other author:
Weisend II, J. G.
Description:
XIX, 213 p. 69 illus., 49 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Physics. -
Online resource:
https://doi.org/10.1007/978-3-030-16508-6
ISBN:
9783030165086
Cryogenic Safety = A Guide to Best Practice in the Lab and Workplace /
Peterson, Thomas J.
Cryogenic Safety
A Guide to Best Practice in the Lab and Workplace /[electronic resource] :by Thomas J. Peterson, J. G. Weisend II. - 1st ed. 2019. - XIX, 213 p. 69 illus., 49 illus. in color.online resource. - International Cryogenics Monograph Series,0538-7051. - International Cryogenics Monograph Series,.
Introduction -- 1. Cryogenic Properties of Fluids and Materials -- 2. General Cryogenic Safety -- 3. Pressure Safety in Cryogenics -- 4. Oxygen Deficiency Hazards -- 5. Oxygen Safety -- 6. Hydrogen Safety -- 7. LNG Safety -- 8. Approaches to Cryogenic Safety in Particle Accelerator Labs -- 9. Summary and General Guidelines -- Appendix.
This book describes the current state of the art in cryogenic safety best practice, helping the reader to work with cryogenic systems and materials safely. It brings together information from previous texts, industrial and laboratory safety polices, and recent research papers. Case studies, example problems, and an extensive list of references are included to add to the utility of the text. It describes the unique safety hazards posed by cryogenics in all its guises, including issues associated with the extreme cold of cryogenics, the flammability of some cryogenic fluids, the displacement of oxygen by inert gases boiling off from cryogenic fluids, and the high pressures that can be formed during the volume expansion that occurs when a cryogenic fluid becomes a room temperature gas. A further chapter considers the challenges arising from the behavior of materials at cryogenic temperatures. Many materials are inappropriate for use in cryogenics and can fail, resulting in hazardous conditions. Despite these hazards, work at cryogenic temperatures can be performed safely. The book also discusses broader safety issues such as hazard analysis, establishment of a safe work culture and lessons learned from cryogenic safety in accelerator labs. This book is designed to be useful to everyone affected by cryogenic hazards regardless of their expertise in cryogenics.
ISBN: 9783030165086
Standard No.: 10.1007/978-3-030-16508-6doiSubjects--Topical Terms:
564049
Physics.
LC Class. No.: QC1-999
Dewey Class. No.: 530.1
Cryogenic Safety = A Guide to Best Practice in the Lab and Workplace /
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Introduction -- 1. Cryogenic Properties of Fluids and Materials -- 2. General Cryogenic Safety -- 3. Pressure Safety in Cryogenics -- 4. Oxygen Deficiency Hazards -- 5. Oxygen Safety -- 6. Hydrogen Safety -- 7. LNG Safety -- 8. Approaches to Cryogenic Safety in Particle Accelerator Labs -- 9. Summary and General Guidelines -- Appendix.
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This book describes the current state of the art in cryogenic safety best practice, helping the reader to work with cryogenic systems and materials safely. It brings together information from previous texts, industrial and laboratory safety polices, and recent research papers. Case studies, example problems, and an extensive list of references are included to add to the utility of the text. It describes the unique safety hazards posed by cryogenics in all its guises, including issues associated with the extreme cold of cryogenics, the flammability of some cryogenic fluids, the displacement of oxygen by inert gases boiling off from cryogenic fluids, and the high pressures that can be formed during the volume expansion that occurs when a cryogenic fluid becomes a room temperature gas. A further chapter considers the challenges arising from the behavior of materials at cryogenic temperatures. Many materials are inappropriate for use in cryogenics and can fail, resulting in hazardous conditions. Despite these hazards, work at cryogenic temperatures can be performed safely. The book also discusses broader safety issues such as hazard analysis, establishment of a safe work culture and lessons learned from cryogenic safety in accelerator labs. This book is designed to be useful to everyone affected by cryogenic hazards regardless of their expertise in cryogenics.
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