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Effect of demineralization on yield and composition of the volatile products evolved from temperature-programmed pyrolysis of Beypazari (Turkey) Oil Shale

机译:Beypazari(土耳其)油页岩的程序升温热解过程中脱盐对挥发性产物产率和组成的影响

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In this study,the effect of the mineral matter of Beypazari Oil Shale on the conversion of organic carbon of oil shale into volatile hydrocarbon,polycyclic aromatic hydrocarbons (asphaltenes,preasphaltenes) and carbon in solid residue was investigated.Kerogen was isolated by successive HC1,HNO_3 and HF treatments.A series of temperature-programmed pyrolysis operation was performed with raw Beypazari Oil Shale,and each product of every demineralization process.A carbon balance of the pyrolysis process was established by determination of the recovery of total organic carbon as organic products,and carbon remaining in the reactor because of the coking reactions.The removal of the material soluble in HC1 washing affected the conversion of organic materials in the pyrolysis reactions.Alkali and alkaline earth metal cations affect the reactivity of oil shales and the leaching of these mineral matters with HC1 caused a slightly decreases in the conversion to volatile hydrocarbons.The removal of pyrites with HNO_3 did not affect the reactivity of the organic material in pyrolysis.But,removal of the material soluble in HF increased the conversion in pyrolysis reactions.It can be explained by the inhibitive effect of the silicate minerals.Complete removal of mineral matrix and isolation of kerogen increased the driving force for heat transfer since more heat was transferred from outside towards the inside of the oil shale particles,thus pyrolysis reaction might have occurred with ease and diffusion limitation might have decreaseddue to absence of mineral matrix.
机译:本研究研究了Beypazari油页岩的矿物质对油页岩有机碳转化为挥发性烃,多环芳烃(沥青质,沥青质)和固体残渣中碳的影响。通过连续HCl分离出干酪根HNO_3和HF处理。对Beypazari油页岩原料和每个脱盐过程的每种产品进行一系列程序升温热解操作。通过确定有机产品中总有机碳的回收率来确定热解过程中的碳平衡,以及由于焦化反应而残留在反应器中的碳。去除可溶于HCl洗涤的物质会影响热解反应中有机物质的转化。碱金属和碱土金属阳离子会影响油页岩的反应性以及这些油的浸出含HCl的矿物物质导致向挥发性碳氢化合物的转化略有下降。 HNO_3对黄铁矿的分解不会影响有机物在热解过程中的反应性。但是,除去可溶于HF的物质会增加热解反应中的转化率。这可以用硅酸盐矿物的抑制作用来解释。干酪根的分离和分离增加了热传递的驱动力,因为更多的热量从油页岩颗粒的外部传递到内部,因此由于没有矿物基质,可能容易发生热解反应,扩散限制可能降低。

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