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Physicochemical characterization of residual biomass (seed and fiber) from acai (Euterpe oleracea) processing and assessment of the potential for energy production and bioproducts

机译:acai(Euterpe Oleracea)加工和能源生产潜力的处理和评估物理化学品

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摘要

Acai residual biomass can be a potential source for a wide range of applications, especially biotechnological, such as solid-state fermentation processes and production of fermentable sugars (mannose), such as raw material for food, pharmaceutical, and other industries. Fiber and seed of acai fruit (Euterpe oleracea) were characterized, after pulp extraction, in samples collected at different maturation stages (seasonality). The seed contained a remarkable amount of mannose (75%) followed by glucose (6%) and galactose (2%), with mannan as the main polysaccharide. The fiber was a lignocellulosic biomass containing glucose (30%) and xylose (19%). Mannan and cellulose in the seed and fiber, respectively, were the polysaccharide responsible for the crystallinity of both materials, with the seed showing higher values. The period of fruit harvesting (winter or summer crops) influenced the maturity and chemical composition of the residues, which had higher crystallinity in the summer season. Hydrothermal treatment was very efficient for fiber but failed for seed, indicating a high recalcitrance of mannan in acai seed.
机译:ACAI残留生物质可以是广泛应用的潜在来源,尤其是生物技术,例如固态发酵过程和可发酵糖(Mannose)的生产,例如食品,制药和其他行业的原料。在不同成熟阶段收集的样品中,在纸浆萃取后表征Acai果实(Euterpe Oleracea)的纤维和种子。种子含有出色的甘露糖(75%),然后是葡萄糖(6%)和半乳糖(2%),用甘露甘油作为主要多糖。纤维是含有葡萄糖(30%)和木糖(19%)的木质纤维素生物质。种子和纤维中的甘露植物和纤维素分别是对两种材料的结晶度的多糖,种子显示出较高的值。水果收获期(冬季或夏季作物)影响了残留的成熟度和化学成分,夏季具有更高的结晶度。水热处理对于纤维非常有效,但种子未衰减,表明肉南在acai种子中的高批量分析。

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