首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparative investigation of rice husk, thermoplastic bituminous coal and their blends in production of value-added gaseous and liquid products during hydropyrolysis/co-hydropyrolysis
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Comparative investigation of rice husk, thermoplastic bituminous coal and their blends in production of value-added gaseous and liquid products during hydropyrolysis/co-hydropyrolysis

机译:水稻壳,热塑性沥青煤及其在氢化氢化/共水解溶解期间增值气相和液态产物生产中的比较调查

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The hydropyrolysis/co-hydropyrolysis of rice husk (RH) and thermoplastic bituminous coal (BC) was carried out using a fixed-bed reactor to investigate the effects of atmosphere and hydrogen pressure on product distributions. RH produced more carbon oxides, phenolics and acids. BC yielded more methane and BTX (benzene, toluene and xylene) during hydropyrolysis. Compared with hydropyrolysis of RH, the co-hydropyrolysis promoted the higher heating value of gaseous product and the yield of BTX by 19% and 57% respectively, while it reduced the yield of corrosive acids by 89% under 5 MPa H-2. The yields of methane, BTX and phenolics during co-hydropyrolysis were 1.5, 6.4 and 4.0 times as much as those obtained during co-pyrolysis under 5 MPa. The co-hydropyrolysis reformed the structure of heavy oil/tar, benefiting the development of aromaticity. High hydrogen pressure synergistically reduced yields of char and acids, and enhanced yields of tar and light aromatics via the secondary reactions.
机译:使用固定床反应器进行水稻壳(RH)和热塑性沥青煤(BC)的氢溶解/共水解溶解,以研究大气和氢气压力对产品分布的影响。 RH产生更多的碳氧化物,酚类和酸。在氢化溶解期间,BC在氢化过程中产生更多的甲烷和BTX(苯,甲苯和二甲苯)。与Rh的氢化溶解相比,共氢解促进了气态产物的加热值和BTX的产率分别为19%和57%,同时它将腐蚀性酸的产率降低89%,在5MPa H-2下降89%。在共氢解过程中甲烷,BTX和酚醛酸的产率为1.5,6.4和4.0倍,与在5MPa下的共热分解期间获得的那些。共 - 氢溶解改性重油/焦油的结构,受益于芳香性的发展。高氢气压力协同减少炭和酸的产率,通过二次反应增强焦油和轻质芳烃的产率。

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