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Carbon Disulfide (CS2) Mechanisms in Formation of Atmospheric Carbon Dioxide (CO2) Formation from Unconventional Shale Gas Extraction and Processing Operations and Global Climate Change

机译:从非传统页岩气体提取和加工操作和全球气候变化形成大气二氧化碳(CS2)形成常压二氧化碳(CO2)的机制

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摘要

Carbon disulfide (CS 2 ) has been historically associated with the production of rayon, cellophane, and carbon tetrachloride. This study identifies multiple mechanisms by which CS 2 contributes to the formation of CO 2 in the atmosphere. CS 2 and other associated sulfide compounds were found by this study to be present in emissions from unconventional shale gas extraction and processing (E&P) operations. The breakdown products of CS 2 ; carbonyl sulfide (COS), carbon monoxide (CO), and sulfur dioxide (SO 2 ) are indirect greenhouse gases (GHGs) that contribute to CO 2 levels in the atmosphere. The heat-trapping nature of CO 2 has been found to increase the surface temperature, resulting in regional and global climate change. The purpose of this study is to identify five mechanisms by which CS 2 and the breakdown products of CS 2 contribute to atmospheric concentrations of CO 2 . The five mechanisms of CO 2 formation are as follows: 1. Chemical Interaction of CS 2 and hydrogen sulfide (H 2 S) present in natural gas at high temperatures, resulting in CO 2 formation; 2. Combustion of CS 2 in the presence of oxygen producing SO 2 and CO 2 ; 3. Photolysis of CS 2 leading to the formation of COS, CO, and SO 2 , which are indirect contributors to CO 2 formation; 4. One-step hydrolysis of CS 2 , producing reactive intermediates and ultimately forming H 2 S and CO 2 ; 5. Two-step hydrolysis of CS 2 forming the reactive COS intermediate that reacts with an additional water molecule, ultimately forming H 2 S and CO 2 . CS 2 and COS additionally are implicated in the formation of SO 2 in the stratosphere and/or troposphere. SO 2 is an indirect contributor to CO 2 formation and is implicated in global climate change.
机译:二硫化碳(CS 2)在历史上与人造丝,玻璃烷和四氯化碳的生产相关。该研究确定了多种机制,CS 2有助于在大气中形成CO 2。通过该研究发现CS 2和其他相关的硫化物化合物,其存在于来自非传统页岩气体提取和加工(E&P)操作的排放中。 CS 2的击穿产品;羰基硫醚(COS),一氧化碳(CO)和二氧化硫(SO 2)是间接温室气体(GHG),其有助于大气中的CO 2水平。已发现CO 2的热捕集性质增加了表面温度,导致区域和全球气候变化。本研究的目的是鉴定CS 2和CS 2的击穿产物的五种机制有助于CO 2的大气浓度。 CO 2形成的五种机制如下:1。CS 2和硫化氢(H 2 S)的化学相互作用在高温下存在于天然气中,导致CO 2形成; 2. CS 2在氧气存在下燃烧SO 2和CO 2; 3. CS 2的光解导致COS,CO等形成,其是CO 2形成的间接贡献者; 4. CS 2的一步水解,产生反应性中间体并最终形成H 2 S和CO 2; 5. CS 2的两步水解形成与另外的水分子反应的反应性COS中间体,最终形成H 2 S和CO 2。 CS 2和COS另外涉及在平流层和/或对流层中形成SO 2。所以2是CO 2形成的间接贡献者,并涉及全球气候变化。

著录项

  • 作者

    Alisa L. Rich; Jay T. Patel;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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