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Characterisation and Py-GC/MS analysis of Imperata Cylindrica as potential biomass for bio-oil production in Brunei Darussalam

机译:文莱作为文莱达鲁萨兰国生产生物油的潜在生物质的表征和Py-GC / MS分析

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摘要

Bio-oil production from renewable sources has been seen as suitable alternative to supply future energy demand. Perennials grasses are currently being developed as a suitable second-generation biofuel feedstock. It has advantages such as rapid growth rate, easy to grow, minimal maintenance and utilise marginal land without competing with food supply. Taking into account of the various challenges attributed to the transformation of second-generation biomass for energy production, this work systematically looks at the ecological perspective and the availability for bioenergy production from Imperata Cylindrica in Brunei Darussalam. Biomass characterisation was carried out to determine the properties and energy content, meanwhile py-GC/MS study was conducted to identify building blocks of value-added chemical from L cylindrica. The physicochemical properties of feedstock was thoroughly evaluated using thermogravimetric analysis, proximate analysis, elemental analysis, compositional analysis, calorific value, and analytical pyrolysis interfaced with gas chromatograph (Py-GC/MS). Characterisation results indicate that Imperata Cylindrica has a calorific value of 18.39 MJ/kg, with low ash content and high percentage of volatile matter. Py-GC/MS analysis revealed the presence of furfural, 2,3-dihydrobenzofuran, 4-vinylguaiacol, propenylguaiacol, guaiacol and 4-ethylphenol. The fixed-bed pyrolysis experiment of imperata cylindrica showed that the yield of bio-oil increases with the increase of temperature and it reached a peak of 37.16% at 500 degrees C. These results show that Imperata Cylindrica is suitable as feedstock for bio-oil production via pyrolysis process.
机译:来自可再生资源的生物油生产被视为满足未来能源需求的合适替代方案。目前正在开发多年生禾本科草作为合适的第二代生物燃料原料。它具有诸如快速增长,易于生长,最少的维护和利用边际土地而不与粮食供应竞争的优势。考虑到第二代生物质转化为能源生产所带来的各种挑战,这项工作系统地考察了文莱达鲁萨兰国Imperata Cylindrica的生态前景和生物能源生产的可行性。进行了生物质表征,以确定其性质和能量含量,同时进行了py-GC / MS研究,以鉴定出L圆柱状植物的增值化学成分。使用热重分析,近似分析,元素分析,组成分析,热值和气相色谱仪(Py-GC / MS)进行分析热解,对原料的理化性质进行了全面评估。表征结果表明,白茅(Imperata Cylindrica)的发热量为18.39 MJ / kg,灰分低,挥发物百分比高。 Py-GC / MS分析显示存在糠醛,2,3-二氢苯并呋喃,4-乙烯基愈创木酚,丙烯基愈创木酚,愈创木酚和4-乙基苯酚。白茅的固定床热解实验表明,生物油的得率随温度的升高而增加,在500℃时达到37.16%的峰值。这些结果表明白茅适合作为生物油的原料。通过热解工艺生产。

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