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Carbon Dioxide Reduction through Advanced Conversion and Utilization Technologies, Zheng


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Цена: 23734.00р.
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При оформлении заказа до: 2025-07-28
Ориентировочная дата поставки: Август-начало Сентября
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Автор: Zheng
Название:  Carbon Dioxide Reduction through Advanced Conversion and Utilization Technologies
ISBN: 9781138095298
Издательство: Taylor&Francis
Классификация:



ISBN-10: 113809529X
Обложка/Формат: Hardback
Страницы: 400
Вес: 0.67 кг.
Дата издания: 09.05.2019
Серия: Electrochemical energy storage and conversion
Язык: English
Иллюстрации: 28 tables, black and white; 29 illustrations, color; 180 illustrations, black and white
Размер: 164 x 240 x 19
Читательская аудитория: Tertiary education (us: college)
Ключевые слова: Chemical engineering, SCIENCE / Chemistry / Industrial & Technical,SCIENCE / Energy,TECHNOLOGY & ENGINEERING / Chemical & Biochemical
Основная тема: Chemical Engineering
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Европейский союз
Описание: This book covers fundamentals, advanced conversion technologies, economic feasibility analysis, and future research directions in the field of CO2 conversion and utilization. It emphasizes several principles of conversion technologies for CO2 reduction.


Transformation and Utilization of Carbon Dioxide

Автор: Bhalchandra M. Bhanage; Masahiko Arai
Название: Transformation and Utilization of Carbon Dioxide
ISBN: 3642449875 ISBN-13(EAN): 9783642449871
Издательство: Springer
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Цена: 18284.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: This book shows the various organic, polymeric, and inorganic compounds which result from the transformation of carbon dioxide through chemical, photocatalytic, electrochemical, inorganic, and biological processes.

Transformation and Utilization of Carbon Dioxide

Автор: Bhalchandra M. Bhanage; Masahiko Arai
Название: Transformation and Utilization of Carbon Dioxide
ISBN: 3662512858 ISBN-13(EAN): 9783662512852
Издательство: Springer
Рейтинг:
Цена: 15672.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: This book shows the various organic, polymeric, and inorganic compounds which result from the transformation of carbon dioxide through chemical, photocatalytic, electrochemical, inorganic, and biological processes.

Reaction Mechanisms in Carbon Dioxide Conversion

Автор: Michele Aresta; Angela Dibenedetto; Eugenio Quaran
Название: Reaction Mechanisms in Carbon Dioxide Conversion
ISBN: 3662468301 ISBN-13(EAN): 9783662468302
Издательство: Springer
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Цена: 16979.00 р.
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Описание: This book provides an analysis of the reaction mechanisms relevant to a number of processes in which CO2 is converted into valuable products.

Oxy-Fuel Combustion for Power Generation and Carbon Dioxide (Co2) Capture

Автор: Zheng Ligang, Zheng L.
Название: Oxy-Fuel Combustion for Power Generation and Carbon Dioxide (Co2) Capture
ISBN: 0081017197 ISBN-13(EAN): 9780081017197
Издательство: Elsevier Science
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Цена: 26107.00 р.
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Описание: Oxy-fuel combustion is currently considered to be one of the major technologies for carbon dioxide (CO2) capture in power plants. The advantages of using oxygen (O2) instead of air for combustion include a CO2-enriched flue gas that is ready for sequestration following purification and low NOx emissions. This simple and elegant technology has attracted considerable attention since the late 1990s, rapidly developing from pilot-scale testing to industrial demonstration. Challenges remain, as O2 supply and CO2 capture create significant energy penalties that must be reduced through overall system optimisation and the development of new processes.Oxy-fuel combustion for power generation and carbon dioxide (CO2) capture comprehensively reviews the fundamental principles and development of oxy-fuel combustion in fossil-fuel fired utility boilers. Following a foreword by Professor J?nos M. Be?r, the book opens with an overview of oxy-fuel combustion technology and its role in a carbon-constrained environment. Part one introduces oxy-fuel combustion further, with a chapter comparing the economics of oxy-fuel vs. post-/pre-combustion CO2 capture, followed by chapters on plant operation, industrial scale demonstrations, and circulating fluidized bed combustion. Part two critically reviews oxy-fuel combustion fundamentals, such as ignition and flame stability, burner design, emissions and heat transfer characteristics, concluding with chapters on O2 production and CO2 compression and purification technologies. Finally, part three explores advanced concepts and developments, such as near-zero flue gas recycle and high-pressure systems, as well as chemical looping combustion and utilisation of gaseous fuel.With its distinguished editor and internationally renowned contributors, Oxy-fuel combustion for power generation and carbon dioxide (CO2) capture provides a rich resource for power plant designers, operators, and engineers, as well as academics and researchers

Fundamentals and Applications of Supercritical Carbon Dioxide (SC

Автор: Brun, Klaus
Название: Fundamentals and Applications of Supercritical Carbon Dioxide (SC
ISBN: 008100804X ISBN-13(EAN): 9780081008041
Издательство: Elsevier Science
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Цена: 32844.00 р.
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Описание:

Fundamentals and Applications of Supercritical Carbon Dioxide (SCO2) Based Power Cycles aims to provide engineers and researchers with an authoritative overview of research and technology in this area. Part One introduces the technology and reviews the properties of SCO2 relevant to power cycles.

Other sections of the book address components for SCO2 power cycles, such as turbomachinery expanders, compressors, recuperators, and design challenges, such as the need for high-temperature materials. Chapters on key applications, including waste heat, nuclear power, fossil energy, geothermal and concentrated solar power are also included. The final section addresses major international research programs.

Readers will learn about the attractive features of SC02 power cycles, which include a lower capital cost potential than the traditional cycle, and the compounding performance benefits from a more efficient thermodynamic cycle on balance of plant requirements, fuel use, and emissions.


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