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Characterizations of Biomasses for Subsequent Thermochemical Conversion: A Comparative Study of Pine Sawdust and Acacia Tortilis

机译:后续热化学转化的生物质的特征:松木锯末和金合欢Tortilis的比较研究

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摘要

The bioenergy production potential from biomasses is dependent on their characteristics. This study characterized pine sawdust samples from Zimbabwe and acacia tortilis samples from Botswana using conventional and spectrometry techniques. The ultimate analysis results for pine were 45.76% carbon (C), 5.54% hydrogen (H), 0.039% nitrogen (N), 0% sulphur (S) and 48.66% oxygen (O) and, for acacia, were 41.47% C, 5.15% H, 1.23% N, 0% S and 52.15% O. Due to the low N and S in the biomasses, they promise to provide cleaner energy than fossil-based sources. Proximate analysis results, on a dry basis, for acacia were 3.90% ash, 15.59% fixed carbon and 76.51% volatiles matter and 0.83%, 20% and 79.16%, respectively, for pine. A calorific value of 17.57 MJ/kg was obtained for pine, compared with 17.27 MJ/kg for acacia, suggesting they are good thermochemical feedstocks. Acacia’s bulk energy density is five times that of pine, making it excellent for compressed wood applications. Though the ash content in acacia was much higher than in pine, it fell below the fouling and slagging limit of 6%. In pyrolysis, however, high ash contents lead to reduced yields or the quality of bio-oil through catalytic reactions. Fourier transform infrared spectrometry indicated the presence of multiple functional groups, as expected for a biomass and its derivatives.
机译:生物量的生物能源生产潜力取决于它们的特征。本研究用常规和光谱技术从Zimbabwe和Acacia Tortilis样品中表征了从津巴布韦和金合欢样品的松木锯末样本。杉木的最终分析结果为45.76%碳(C),5.54%氢(H),0.039%氮(N),0%硫(S)和48.66%的氧气(o)和用于金合欢,为41.47%c ,5.15%h,1.23%n,0%s和52.15%O.由于生物量低,它们承诺提供比化石的源更清洁的能量。在干燥的基础上,近似分析结果为合计酸是3.90%的灰分,15.59%固定碳和76.51%的挥发物物质,分别为松树,分别为0.83%,20%和79.16%。为松树获得了17.57mJ / kg的热值,而合欢为17.27 mJ / kg,表明它们是良好的热化学原料。金合欢的散装能量密度是松树的五倍,使压缩木材应用很好。虽然金合欢的灰分含量远高于松树,但它低于污垢和粘结限额为6%。然而,在热解中,通过催化反应导致高灰分含量降低产量或生物油的质量。傅里叶变换红外光谱法表明存在多种官能团的存在,如生物质及其衍生物所预期的。

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