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Co-gasification of crude glycerol with lignocellulosic biomass for enhanced syngas production

机译:粗甘油与木质纤维素生物质的共气化可提高合成气的产量

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The present work concerns the co-gasification of crude glycerol (CG), a by-product of biodiesel industry, with locally available lignocellulosic biomass aiming at the production of syngas and further promotion of power production in dedicated bioenergy units. Co-gasification of CG with olive kernel (OK), an agro-residue issued from the intensive olive oil production sector in Southern East Europe, was performed in a laboratory fixed bed reactor at T- 750-850 ℃ with λ = 0.2-0.4 and in the three different mixing levels of 24 wt%, 32 wt% and 49 wt% of CG in OK. Co-gasification of CG with OK found to favor the gas yield which increased from 0.4 to 1.2Nm~3/kg for the mixture of 49 wt% of CG in biomass. Additionally H_2 concentration increased from 19 to 33%( v/v) in the gasification gas while the tar yield decreased from 19.5 to 2.4 w« at conditions of T= 850 ℃ and λ = 0.4.
机译:目前的工作涉及生物柴油工业的副产品粗甘油(CG)与本地可用的木质纤维素生物质的共气化,目的是生产合成气并进一步促进专用生物能源装置的发电。 CG与橄榄核(OK)的共气化是由东欧南部集约化橄榄油生产部门发出的一种农业残留物,是在T- 750-850℃,λ= 0.2-0.4的实验室固定床反应器中进行的在三种不同的混合比例中,OK中CG的含量分别为24 wt%,32 wt%和49 wt%。 CG与OK的共气化有利于气体产率,对于生物质中CG含量为49 wt%的混合物,其气体产量从0.4Nm / kg增加到1.2Nm〜3 / kg。在T = 850℃和λ= 0.4的条件下,气化气中H_2的浓度从19%增至33%(v / v),而焦油产率从19.5降低至2.4 w«。

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