نتایج جستجو برای: alkali catalyst

تعداد نتایج: 60055  

2016
Wenjie Dong Zheng Shen Boyu Peng Minyan Gu Xuefei Zhou Bo Xiang Yalei Zhang

Lactic acid is an important platform molecule in the synthesis of a wide range of chemicals. However, in aqueous solutions without alkali, its efficient preparation via the direct catalysis of sugars is hindered by a side dehydration reaction to 5-hydroxymethylfurfural due to Brønsted acid, which originates from organic acids. Herein, we report that a previously unappreciated combination of com...

2013
Shunzheng Zhao Honghong Yi Xiaolong Tang Shanxue Jiang Fengyu Gao Bowen Zhang Yanran Zuo Zhixiang Wang

Catalytic hydrolysis technology of carbonyl sulfide (COS) at low temperature was reviewed, including the development of catalysts, reaction kinetics, and reaction mechanism of COS hydrolysis. It was indicated that the catalysts are mainly involved metal oxide and activated carbon. The active ingredients which can load on COS hydrolysis catalyst include alkali metal, alkaline earth metal, transi...

Journal: :Bioresource technology 2015
Jude A Onwudili

The influence of reaction conditions on the composition of liquid products during two-stage hydrothermal conversion of alkali lignin has been investigated in a batch reactor. Reactions were carried out in the presence of formic acid (FA) and Pt/Al2O3 catalyst. The two different sets of reaction conditions involved alternative reaction times of 1h and 5h at 265°C and 350°C, respectively. These p...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2014
Oscar Alvizo Luan J Nguyen Christopher K Savile Jamie A Bresson Satish L Lakhapatri Earl O P Solis Richard J Fox James M Broering Michael R Benoit Sabrina A Zimmerman Scott J Novick Jack Liang James J Lalonde

Carbonic anhydrase (CA) is one of nature's fastest enzymes and can dramatically improve the economics of carbon capture under demanding environments such as coal-fired power plants. The use of CA to accelerate carbon capture is limited by the enzyme's sensitivity to the harsh process conditions. Using directed evolution, the properties of a β-class CA from Desulfovibrio vulgaris were dramatical...

Journal: :ACS applied materials & interfaces 2013
Meng Wang Weimin Zhang Jiazhao Wang David Wexler Simon D Poynton Robert C T Slade Huakun Liu Bjorn Winther-Jensen Robert Kerr Dongqi Shi Jun Chen

Palladium-nickel (PdNi) hollow nanoparticles were synthesized via a modified galvanic replacement method using Ni nanoparticles as sacrificial templates in an aqueous medium. X-ray diffraction and transmission electron microscopy show that the as-synthesized nanoparticles are alloyed nanostructures and have hollow interiors with an average particle size of 30 nm and shell thickness of 5 nm. Com...

2015
Zuojun Wei Ruofei Pan Yaxin Hou Yao Yang Yingxin Liu

The selective hydrogenation of resorcinol (RES) to 1, 3-cyclohexanedione (1,3-CHD) without the addition of alkali is a big challenge. In this article, a novel reduced graphene oxide (rGO) supported Pd catalyst was prepared through co-reduction method, over which we obtained 99.9% of resorcinol conversion and 94.2% of the ever-reported highest 1,3-cyclohexanedione selectivity at 25 °C in only CH...

Conjugated linoleic acid (CLA) is one of the most physiological active fatty acids due to its positive effect on  prevention of diseases such as obesity, hyperlipidemia, atherosclerosis and cancer. The aim of this study was to optimize the production of conjugated linoleic acid (CLA)% in  alkali isomerization of safflower oil including  71% linoleic acid (LA)  using response surface methodology...

2012
Feng Guo Zhen Fang

Biodiesel is usually produced by transesterification of vegetable oils or animal fats with chemical catalysts, especially in the presence of strong acidic or basic solutions, such as hydrochloric acid, sulphuric acid, sodium hydroxide, sodium methoxide and potassium hydroxide. Homogeneous alkali catalysts can convert triglycerides to their corresponding fatty acid methyl esters (FAMEs) with hig...

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