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Enhanced Biogas Production During Anaerobic Digestion of Steam-Pretreated Lignocellulosic Biomass from Williams Cavendish Banana Plants

机译:威廉姆斯·卡文迪什香蕉植物中蒸汽预处理的木质纤维素生物质的厌氧消化过程中增强的沼气生产

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In the context of green energy valorisation, this study reports the chemical analysis and improvement of biogas production via anaerobic digestion of treated and untreated agricultural waste lignocellulosic biomass from Williams Cavendish banana plants (WCLB). With a worldwide annual production of 26 million tons of dry matter (DM), large amounts of this waste are abandoned in plantations after fruit harvesting. Steam explosion (SE) and steam cracking (SC) pretreatments were investigated at severity factors of 3.16 and 4.29, respectively, to improve the biogas potential over 135 days under mesophilic conditions. The study revealed a carbon (C)itrogen (N) ratio of 27.3, indicating that WCLB has sufficient N content for successful fermentation. The proportions of liquid and solid fractions recovered after SC were 20 and 80%, respectively, whereas SE yielded 17 and 83% liquid and solids, respectively. The neutral sugar content of the studied fractions indicated that glucose and xylose constituted the highest hexose and pentose fractions, respectively, in WCLB. The highest and lowest total biogas potentials were obtained from LFSC (280 mL g(-1) of DM) and untreated WCLB (240 mL g(-1) of DM), respectively. The methane yield from untreated WCLB and combined solid and liquid fractions from SE and SC were 40, 42, and 51%, respectively, of the theoretical methane potential. The maximum biogas production rate (7.8 mL g(-1) day(-1)) was obtained with SFSC. This study reveals that SC deconstructs WCLB efficiently and thereby greatly enhances methane production.
机译:在绿色能源评估的背景下,本研究报告了对来自威廉姆斯·卡文迪许香蕉植物(WCLB)的经过处理和未经处理的农业废弃物木质纤维素生物质进行厌氧消化的化学分析和沼气生产的改善。世界范围内的年产量为2600万吨干物质(DM),收获后的大量废物被丢弃在种植园中。分别在3.16和4.29的严重程度因子下研究了蒸汽爆炸(SE)和蒸汽裂化(SC)预处理,以提高中温条件下135天的沼气潜力。该研究显示碳(C)/氮(N)比率为27.3,表明WCLB具有足够的N含量以成功发酵。 SC后回收的液体和固体部分的比例分别为20%和80%,而SE分别得到17%和83%的液体和固体。研究级分的中性糖含量表明,葡萄糖和木糖分别构成了WCLB中最高的己糖和戊糖级分。最高和最低的总沼气潜力分别来自LFSC(280 mL g(-1)DM)和未处理的WCLB(240 mL g(-1)DM)。未经处理的WCLB的甲烷产率以及SE和SC的固体和液体合并馏分的甲烷产率分别为理论甲烷潜力的40%,42%和51%。使用SFSC获得最大沼气生产率(7.8 mL g(-1)day(-1))。这项研究表明,SC有效地解构了WCLB,从而大大提高了甲烷产量。

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