首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Valorization of coffee silverskin industrial waste by pyrolysis: From optimization of bio-oil production to chemical characterization by GC × GC/qMS
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Valorization of coffee silverskin industrial waste by pyrolysis: From optimization of bio-oil production to chemical characterization by GC × GC/qMS

机译:热解咖啡银皮工业废料的价值:从生物油生产的优化到GC×GC / qMS的化学表征

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Coffee bean tegument (silverskin) is a by-product derived from the coffee roasting process. This residue has been discarded, which constitutes a serious environmental problem. The depletion of oil reserves and environmental issues promoted by the combustion of fossil fuels has generated interest in the use of biomass to obtain fuel and chemicals products. The liquid product obtained by biomass pyrolysis is commonly called bio-oil. Bio-oil is a complex mixture of compounds, and its detailed chemical characterization is necessary to prospect its potential uses. Therefore, this study optimized the final temperature of pyrolysis and N-2 flow rate parameters for the pyrolysis of silverskin in a fixed bed reactor, by using a central composite design and response surface. The bio-oil chemical composition was evaluated by comprehensive two-dimensional gas chromatography coupled to rapid-scanning quadrupole mass spectrometry (GC x GC/qMS), combined with the use of standards and linear temperature-programmed retention indices (LTPRI). The optimal values. calculated were 560 degrees C for the final pyrolysis temperature and 49 mL min(-1) for the N-2 flow rate. The organic phase yield was 15.2% under these conditions. At the optimal conditions, 228 compounds were identified (90.1% of the sample chromatographic volume) in the organic phase. The major chemical class, in terms of volume percentage, were the phenols (26.70%), followed by nitrogen compounds (18.51%). In addition, it is worth mentioning the high represent ability of the saturated hydrocarbons (8.28%), unsaturated aliphatic (6.69%), and aromatics (7.77%), which together account for 22.74% of the sample chromatographic volume. These results showed that the silverskin bio-oil may have the potential use as a source of chemical inputs.
机译:咖啡豆皮(白银皮)是咖啡烘焙过程中产生的副产品。该残留物已被丢弃,这构成了严重的环境问题。由化石燃料燃烧引起的石油储量枯竭和环境问题引起了人们对利用生物质获得燃料和化学产品的兴趣。通过生物质热解获得的液体产物通常称为生物油。生物油是化合物的复杂混合物,对其详细的化学表征对于确定其潜在用途是必需的。因此,本研究通过使用中心复合设计和响应表面,优化了固定床反应器中银皮热解的热解终温度和N-2流速参数。通过全面的二维气相色谱与快速扫描四极杆质谱(GC x GC / qMS)结合标准液和线性程序升温保留指数(LTPRI),对生物油化学成分进行了评估。最佳值。最终热解温度为560℃,N-2流速为49 mL min(-1)。在这些条件下,有机相的产率为15.2%。在最佳条件下,在有机相中鉴定出228种化合物(占色谱面积的90.1%)。就体积百分比而言,主要的化学类别是酚(26.70%),其次是氮化合物(18.51%)。此外,值得一提的是饱和烃(8.28%),不饱和脂肪族化合物(6.69%)和芳族化合物(7.77%)的高代表性,它们合计占样品色谱体积的22.74%。这些结果表明,银皮生物油可能具有潜在的化学投入来源。

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