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Oxysulfonation of Coke Coal by Nitrosylsulfuric Acid

机译:亚硝基硫酸将焦煤氧磺化

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The interaction of coke coal with nitrosylsulfuric acid NOHSO4 in acetonitrile at 20-25 degrees C, times to 24 h, and the NOHSO4/coal ratio R <= 50 mmol/g was studied. The process leads to the formation of oxysulfonated coal accompanied by an increase in the weight (to 46%), a decrease (by a factor of 3.8-7.3) in the concentration of radicals, and the formation of the following O-, S-, and N- containing groups in the coal structure: carboxyl, phenol, sulfo groups (<= 1.9 mmol/g), and nitroso groups (<= 0.9 mmol/g). Changes in the characteristics of oxysulfonated coal under varying R and upon hydrolysis were established by IR and EPR spectroscopy and elemental analysis. The results were interpreted within the framework of a mechanism that included the formation of coal radical cations as a result of electron transfer from coal to the nitronium cation, the intercalation of the bisulfate anion into the coal structure, and the nitrosation and sulfonation of coal arenes. Side oxidation reactions occurred simultaneously with the formation of carboxyl, phenol, and quinoid groups.
机译:研究了焦炭煤与亚硝酰基硫酸NOHSO4在乙腈中的相互作用,时间为20-25℃,反应时间为24小时,并且研究了NOHSO4 /煤比R <= 50 mmol / g。该过程导致形成氧磺化煤,同时增加重量(至46%),降低自由基浓度(降低3.8-7.3倍)以及形成以下O-,S-以及煤结构中的含N基团:羧基,苯酚,磺基(<= 1.9 mmol / g)和亚硝基(<= 0.9 mmol / g)。通过IR和EPR光谱法和元素分析,确定了在不同的R和水解条件下,氧磺化煤的特性变化。结果的解释是在一种机制的框架内进行的,该机制包括由于电子从煤转移到硝鎓阳离子而形成煤自由基阳离子,将硫酸氢根阴离子插入煤结构以及煤芳烃的亚硝化和磺化。侧氧化反应与羧基,苯酚和醌型基团的形成同时发生。

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  • 来源
    《Solid Fuel Chemistry 》 |2017年第4期| 249-255| 共7页
  • 作者单位

    Natl Acad Sci Ukraine, Litvinenko Inst Phys Organ Chem & Coal Chem, Kiev, Ukraine;

    Natl Acad Sci Ukraine, Litvinenko Inst Phys Organ Chem & Coal Chem, Kiev, Ukraine;

    Natl Acad Sci Ukraine, Litvinenko Inst Phys Organ Chem & Coal Chem, Kiev, Ukraine;

    Natl Acad Sci Ukraine, Litvinenko Inst Phys Organ Chem & Coal Chem, Kiev, Ukraine;

    Natl Acad Sci Ukraine, Litvinenko Inst Phys Organ Chem & Coal Chem, Kiev, Ukraine;

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