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Release of Ca during coal pyrolysis and char gasification in H_2O, CO_2 and their mixtures

机译:在H_2O,CO_2及其混合物中释放CA和煤热解和炭气化

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The release characteristics of Ca during a Chinese bituminous coal pyrolysis and char gasification in different gasifying agents was studied. Residual chars with different carbon conversion levels were obtained by gasifying in a quartz fixed-bed reactor under H2O, CO2, and H2O/CO2 atmospheres at 800-1000 degrees C. Sequential chemical extraction and microwave digestion were used to determine the modes of occurrence of Ca in chars. X-ray diffraction and scanning electron microscopy were used to analyze the ash composition and the morphology of minerals. The contents of Ca in chars were measured by atomic absorption spectroscopy. The results indicate that water-soluble form and HCl-soluble form Ca transforms mainly into gas phase during pyrolysis. The release ratio of Ca at 800 degrees C under different atmospheres is H2O/CO2 H2O CO2. The main reason is that minerals are more prone to sintering in CO2 atmosphere. The interaction of H2O and CO2 can expand pores, which precipitate the minerals to the char surface and release into the gas phase. Increasing temperature induces the collapse of the pore structure which changed the release rule of Ca. The composition of the ash obtained from gasification at 1000 degrees C in CO2, H2O and H2O/CO2 are nearly same.
机译:研究了在中国沥青煤热解和不同气化剂中的CA释放特性。通过在600-1000摄氏度下的石英固定床反应器下气化在石英固定床反应器中通过在800-1000摄氏度下的H 2 O / CO 2大气压中实现具有不同碳转化率水平的残余物。使用顺序化学提取和微波消解来确定发生的情况ca in chars。 X射线衍射和扫描电子显微镜用于分析灰分组成和矿物质的形态。通过原子吸收光谱法测量CAS中的Ca的含量。结果表明水溶性形式和HCl可溶性Ca主要在热解期间转化为气相。不同气氛下800℃下Ca的释放比为H2O / CO2> H2O&二氧化碳。主要原因是矿物质更容易烧结二氧化碳气氛。 H 2 O和CO 2的相互作用可以扩张孔,该孔将矿物沉淀到炭表面并释放到气相中。增加温度诱导孔隙结构的崩溃,改变了CA的释放规则。在CO 2,H 2 O和H 2 O / CO 2中以1000℃,H 2 O和H 2 O / CO 2的气化获得的灰分的组成几乎相同。

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