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首页> 外文期刊>Journal of Materials Science >Hydrothermal liquefaction of plantation biomass with two kinds of wastewater from paper industry
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Hydrothermal liquefaction of plantation biomass with two kinds of wastewater from paper industry

机译:造纸两种废水对人工生物量的水热液化。

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摘要

The effects of two kinds of wastewater (black liquor and paper regeneration wastewater) from paper industry as solvent on the hydrothermal liquefaction of plantation biomass were discussed in this study. For the solvent of eucalyptus, black liquor was not suitable because the oil yield was very low and the yield of water-soluble constituent was very high. There was little difference in the product yields between the liquefaction of eucalyptus with the paper regeneration wastewater (pH 9.5) and that with NaOH aqueous solution (pH 9.5). In comparison with the liquefaction with water, the decrease of residue yield and the increase of oil yield were observed on the liquefaction with the wastewater. During the liquefaction with water, it was anticipated that dehydration and polymerization between carboxylic and phenolic hydroxyl groups in the molecules of the eucalyptus occurred. On the other hand, carboxylic acid formed during the liquefaction of eucalyptus was considered to be neutralized with Na+ in NaOH aqueous solution or cations in the wastewater because the formation of carboxylate was observed in the water-soluble constituents derived from these liquefactions. Therefore, the residue yield decreased owing to the inhibition of the condensation reaction. Accordingly, possibility for the reduction of the amount of greenhouse gas (CO2) and paper regeneration wastewater, and the production of oil from eucalyptus was clarified on the liquefaction of plantation biomass (eucalyptus) with paper regeneration wastewater.
机译:讨论了造纸工业中的两种废水(黑液和造纸再生废水)作为溶剂对人工林生物质水热液化的影响。对于桉树的溶剂,黑液是不适合的,因为油的产率非常低并且水溶性成分的产率非常高。在纸再生废水(pH 9.5)和NaOH水溶液(pH 9.5)液化的情况下,桉树液化的产物收率几乎没有差异。与水液化相比,与废水液化相比,渣油收率降低,石油收率提高。预期在水液化期间,桉树分子中的羧基和酚羟基之间发生脱水和聚合。另一方面,由于在水溶性成分中观察到羧酸盐的形成,因此认为在桉树液化过程中形成的羧酸被NaOH水溶液或废水中的阳离子用Na + 中和。源自这些液化。因此,由于缩合反应的抑制,残留物收率降低。因此,明确了减少纸质再生废水对种植园生物质(桉树)的液化的可能性,以减少温室气体(CO 2 )和纸再生废水的量,并从桉树生产油。 。

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