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Release Behavior Of Tar And Alkali And Alkaline Earth Metals During Biomass Steam Gasification

机译:生物质蒸汽气化过程中焦油,碱和碱土金属的释放行为

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We developed a drop-tube reactor with a separation unit containing a quartz glass filter that is capable of fractionating alkali and alkaline earth metals (AAEMs) released as solid particle, vapor, and combined with water-soluble and water-insoluble tar. The ratio of released AAEMs in pulverized wood chips that had been steam-gasified was examined by changing the temperatures of the reactor and the separation unit independently. We found that approximately 63-80% of the released AAEMs were combined with tar. In addition, as the gasification temperature increased, the yields of the AAEMs combined with water-soluble and water-insoluble tars remained nearly constant, even though the amount of recovered water-soluble tar decreased as a result of secondary decomposition. This finding implies that AAEMs released by the secondary decomposition of water-soluble tar are fine particles that cannot be collected in a quartz glass filter. Additionally, yields of condensed AAEMs substantially increased as the gasification temperature increased, implying that the evolution of AAEMs from char was enhanced at high gasification temperatures. Evaluation of the water-soluble and water-insoluble tar using a Fourier transform infrared spectrometer (FTIR) and an elemental analyzer indicated that AAEMs likely combine with the OH groups of carboxylic acids and phenols in water-soluble tar. This finding infers that the AAEMs recovered from water-insoluble tar are present in aromatic compounds that are derivatives of benzene, xylene, furfural, and naphthalene in the product gas.
机译:我们开发了带有分离单元的滴管式反应器,该分离器包含一个石英玻璃过滤器,该过滤器能够分离以固体颗粒,蒸气形式释放并与水溶性和水不溶性焦油结合的碱金属和碱土金属(AAEM)。通过独立地改变反应器和分离单元的温度来检查已经汽化的粉碎木屑中释放的AAEM的比例。我们发现大约63-80%的已释放AAEM与焦油结合。另外,随着气化温度的升高,即使由于二次分解而回收的水溶性焦油的量减少,与水溶性和水不溶性焦油结合的AAEMs的产率也几乎保持恒定。该发现暗示由水溶性焦油的二次分解释放的AAEM是无法在石英玻璃过滤器中收集的细颗粒。另外,随着气化温度的升高,缩合AAEM的产率显着增加,这意味着在高气化温度下,从焦炭中AAEM的释放得到增强。使用傅立叶变换红外光谱仪(FTIR)和元素分析仪对水溶性和水不溶性焦油的评估表明,AAEMs可能与水溶性焦油中羧酸和酚的OH基结合。该发现推断从不溶于水的焦油中回收的AAEM存在于芳族化合物中,所述芳族化合物是产物气体中苯,二甲苯,糠醛和萘的衍生物。

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