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Titlebook: Organic Reactions in Electrical Discharges; N. S. Pechuro Book 1968 Springer Science+Business Media New York 1968 Calcium.Chemical reactio

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书目名称Organic Reactions in Electrical Discharges
编辑N. S. Pechuro
视频video
图书封面Titlebook: Organic Reactions in Electrical Discharges;  N. S. Pechuro Book 1968 Springer Science+Business Media New York 1968 Calcium.Chemical reactio
描述Recently interest has arisen in the use of electrical discharges to effect chemical reactions. Various types of discharges enable us to alter the conditions of a process over a wide range, and often ro combine the high electron "temperatures" necessary to activ ate certainreactions with the low molecular temperatures of the medium used. This makes it possible to simplify the techniques and apparatus required for a process, and to "quench" the products, thus preventing them from decomposing again. Same work on the use of electrical discharges has already found practical applications, These include the preparation of oxides of nitrogen, hydrocyanic acid, ozone, and hydrogen peroxide, thickening of oils, synthesis of acetylene and its homologs, hydrogenation and dehydrogenation of various oils and animal fats, etc, In the heavy organic-synthesis industry, lower olefins and acetylenes are used an a !arge scale as raw ma­ terials for producing many valuable products, Methods of producing ethylene, propylene, and butylenes from gaseous and liquid hydrocarbon feedstocks have been widely adopted. However, the production of acetylene­ which is an important and sometimes indispensable initia
出版日期Book 1968
关键词Calcium; Chemical reaction; electron; fats; hydrogen; hydrogen peroxide; nitrogen; oils; ozone; reactions; syn
版次1
doihttps://doi.org/10.1007/978-1-4899-2711-8
isbn_softcover978-1-4899-2713-2
isbn_ebook978-1-4899-2711-8
copyrightSpringer Science+Business Media New York 1968
The information of publication is updating

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Kinetics and Mechanism of Acetylene Conversion in a Glow Discharge at Low Pressures,d. However, despite this interest and the commercial application of the electrocracking of methane to acetylene, very little is known regarding the mechanism of methane conversion. It would appear that the process is extremely complex and includes a number of stages with formation of various stable
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Codecomposition of Light and Heavy Hydrocarbons in High-Voltage Discharges,eaction space, with simultaneous quenching of the reaction products in the liquid medium. Under these conditions we can obtain gas with a high acetylene concentration (25–32 vol.%). When such processes are effected in unsteady electric discharges (as in the Tatarinov method [1]) the main electrodes
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Thermal Decomposition of Liquid Petroleum Products Mixed with Soot Formed during Electrocracking, products (soot) which we find in a dispersed state in the processed products. It has been shown [1–3] that the yield of soot depends largely on the nature of the initial raw material, and increases as we go from volatile to high-boiling petroleum products. It has been found experimentally [4] that
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