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With new graphical data added to this revision of the original classic, this volume is still the largest and most comprehensive collection of thermodynamic data on carbon dioxide ever produced, the ONLY book of its kind in print. With carbon dioxide sequestration gaining in popularity around the world in the scientific and engineering communities, having this data in an easy-to-access format is more useful and timely than ever. With data that is accurate down to within a fraction of a degree, this handbook offers, in one volume, literally thousands of data points that any engineer or chemist…mehr
With new graphical data added to this revision of the original classic, this volume is still the largest and most comprehensive collection of thermodynamic data on carbon dioxide ever produced, the ONLY book of its kind in print. With carbon dioxide sequestration gaining in popularity around the world in the scientific and engineering communities, having this data in an easy-to-access format is more useful and timely than ever. With data that is accurate down to within a fraction of a degree, this handbook offers, in one volume, literally thousands of data points that any engineer or chemist would need when dealing with carbon dioxide. Not available in other formats, these easy-to-read tables are at your fingertips and are accessed within seconds and does away with the need for constantly working with mathematical formulas. Carbon dioxide is used in many fields, across many industries, including the oil and gas industry and food processing. Even coffee is decaffeinated using carbon dioxide! Though CO2 has many uses in industry, it is also one of the most offensive of the greenhouse gases, on which many scientists and engineers are working to eradicate in the future production of power and fuel. This data is useful for any scientist or engineer in any of these fields, but it is also useful for the chemical engineering or petroleum engineering student.
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Sara Anwar is a Project Coordinator (engineer-in-training) with Gas Liquids Engineering in Calgary, Canada. At GLE she works on projects related to natural gas purification and recovery. She has done research on sulfur, and in particular the pipeline transport of sulfur, and the physical properties of carbon dioxide. She obtained her BEng in Chemical Engineering in 2009 from McGill University in Montreal, Canada. She subsequently moved to Alberta in the summer of 2010. John J. Carroll, PhD, PEng is the Director, Geostorage Process Engineering for Gas Liquids Engineering, Ltd. in Calgary, Canada. Dr. Carroll holds bachelor and doctoral degrees in chemical engineering from the University of Alberta, Edmonton, Canada, and is a registered professional engineer in the provinces of Alberta and New Brunswick in Canada. His fist book for Wiley-Scrivener, Acid Gas Injection and Carbon Dioxide Sequestration, is now available, and he is the author or co-author of 50 technical publications and about 40 technical presentations.
Inhaltsangabe
Acknowledgement ix
Preface to Second Edition xi
Preface to First Edition xiii
Introduction xv
1 Density (kg/m³) of Saturated Carbon Dioxide 1
2 Enthalpy (J/mol) of Saturated Carbon Dioxide 3
3 Entropy (J/mol*K) of Saturated Carbon Dioxide 5
4 Heat Capacity, CP, (J/mol*K) of Saturated Carbon Dioxide 7
5 Density (kg/m³) of Carbon Dioxide as a Function of Temperature and Pressure 9
6 Enthalpy (J/mol) of Carbon Dioxide as a Function of Temperature and Pressure 149
7 Entropy (J/mol*K) of Carbon Dioxide as a Function of Temperature and Pressure 289
8 Heat Capacity, CP, (J/mol*K) of Carbon Dioxide as a Function of Temperature and Pressure 429