Environmental Engineering

Download e-book for iPad: Advances in CO2 Conversion and Utilization by Yun Hang Hu

Posted On February 23, 2018 at 2:58 pm by / Comments Off on Download e-book for iPad: Advances in CO2 Conversion and Utilization by Yun Hang Hu

By Yun Hang Hu

ISBN-10: 0841225966

ISBN-13: 9780841225961

ISBN-10: 0841225974

ISBN-13: 9780841225978

content material: CONTENTS; PREFACE; 1. SYNTHESIS AND CHARACTERIZATION OF FERRITE fabrics FOR THERMOCHEMICAL CO2 SPLITTING utilizing focused solar power; ANDREA AMBROSINI, ERIC N. COKER, MARK A. RODRIGUEZ, STEPHANIE LIVERS, LINDSEY R. EVANS, JAMES E. MILLER, AND ELLEN B. STECHEL; 2. PHOTOCATALYTIC aid OF CO2 utilizing H2 AS REDUCTANT OVER stable BASE PHOTOCATALYSTS; KENTARO TERAMURA AND TSUNEHIRO TANAKA; three. CO2 SPLITTING through THE sunlight THERMOCHEMICAL CYCLE in response to ZN/ZNO REDOX REACTIONS; PETER G. LOUTZENHISER, ANTON MEIER, DANIEL GSTOEHL, AND ALDO STEINFELD; four. HYDROTHERMAL CONVERSION OF CO2 INTO VALUE-ADDED items: a possible know-how for making improvements to worldwide CARBON CYCLE; FANGMING JIN, ZHIBAO HUO, XU ZENG, AND HEIJI ENOMOTO; five. ELECTROCATALYTIC aid OF CO2 TO SMALL natural MOLECULE FUELS ON steel CATALYSTS; WENZHEN LI; 6. CO2 CHEMISTRY AT NANKAI crew: CATALYTIC CONVERSION OF CO2 INTO VALUE-ADDED chemical compounds; LIANG-NIAN HE, ZHEN-ZHEN YANG, AN-HUA LIU, AND JIAN GAO; 7. OXIDATIVE DEHYDROGENATION OF ETHANE TO AND

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This result suggests that excessive alkali was responsible for the decrease of the yield of formic acid. Thereby, no additional alkali is used throughout the present study. Finally, we also made a simple energy assessment for the hydrothermal conversion of CO2 into formic acid. The energy needed to produce one ton of formic acid from the hydrothermal reduction of CO2 is less than that from conventional method with fossil fuels as substrates (sodium formiate acidification method). 5. Conclusions and Prospects The hydrothermal process can efficiently and directly convert CO2 into value-added products.

The second, non-solar step is the exothermic reduction of CO2 with Zn to CO and ZnO; the latter is recycled to the solar step. The thermodynamics and kinetics of the pertinent reactions are examined and the reactor technology for both steps of the cycle is described and an outlook for the future is provided. Introduction A project currently underway that provides a promising and sustainable alternative to CO2 sequestration is the splitting of CO2 into separate streams of CO and O2 using solar energy.

8 mL were also used to examine possible catalytic effects of Ni existing in the stainless-steel reactor wall on the reaction. After loading the reactor with the desired starting material, the reactor was put in an oven, which had been preheated to the desired temperature of 523 K. During the reaction, the reactor was rotated to enhance mixing of the reactants. In the experiments using the Teflon-lined reactors, the temperature was limited to 523 K due to the maximum durable temperature of the Teflon material.

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Advances in CO2 Conversion and Utilization by Yun Hang Hu


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