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首页> 外文期刊>Biomass & bioenergy >Strength properties and calorific values of sawdust-briquettes as wood-residue energy generation source from tropical hardwoods of different densities
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Strength properties and calorific values of sawdust-briquettes as wood-residue energy generation source from tropical hardwoods of different densities

机译:来自不同密度热带硬木的木屑碎屑作为木材残余能源的来源的强度特性和热值

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Agricultural and wood residues are principal energy sources for domestic and industrial activities. However, they are often hardly utilized. Conventional wood material for briquetting optimizes combustion and efficient power production. The relationship between strength properties, resistance to humidity and calorific values of sawdust-briquettes from three tropical hardwoods of different densities [Cylicodiscus gabunensis (heavy), Antiaris toxicaria (medium) and Ceiba pentandra (light)] and a Mixed/ Composite type was determined. Wood density influenced all the briquette properties and positively correlated with their Calorific Values (CVs) as: C. gabunensis > A. toxicaria > Mixed type > C. pentandra. However, light timber briquettes had greater Compressive Strength, Swelling Value (i.e., less resistance to humidity) and Shatter Index than dense wood briquettes: C. pentandra > Mixed type > A. toxicaria > C. gabunensis. C. gabunensis briquette recorded less elongation value (8.85%) than the standard stipulated (i.e., 20-50%/min.) specifying its quality to resist deterioration on exposure to humidity/water in open sheds. Enormous briquette Swelling Values for A toxicaria (60.04%), Mixed type (66.16%) and C. pentandra (70.88%) indicate they would deteriorate fast and require great care to store, handle and transport. However, the large Shatter Indices for the Mixed type (98.8%) and C. pentandra (99.16%) denote their high durability to gravitational deterioration. Briquette technology, a "waste-to-energy method", contributes to offset bio-residue management problems and reduce toxic emissions from its incomplete carbonization. Thus, comprehensive understanding of wood-residue briquette characteristics is significant for fuel-energy generation.
机译:农业和木材残留物是家庭和工业活动的主要能源。但是,它们通常很少被利用。用于压块的常规木材可以优化燃烧和高效发电。确定了三种密度不同的热带硬木[Cylicodiscus gabunensis(重),Antiaris toxicaria(中度)和Ceiba pentandra(轻度)]和混合/复合类型的强度特性,耐湿性和锯末状煤屑的发热量之间的关系。 。木材密度影响所有煤球的性质,并与它们的热值(CV)成正相关,如:C. gabunensis> A. toxicaria>混合类型> C. pentandra。但是,轻木煤球比密木煤球具有更高的抗压强度,溶胀值(即,较低的耐湿性)和破碎指数:C.pentandra>混合型> A. toxicaria> C. gabunensis。 C. gabunensis型煤的伸长率值(8.85%)低于规定的标准(即20-50%/ min。),该标准规定了其质量以防露天棚暴露于湿气/水中而变质。毒菌(A. aria)的煤球膨胀值(60.04%),混合型(66.16%)和戊糖梭菌(C. pentandra)的膨胀值(70.88%)表明它们会迅速变质,需要非常小心地存储,搬运和运输。但是,混合类型(98.8%)和蓬塔梭菌(99.16%)的大碎裂指数表示它们对重力变质的高耐久性。型煤技术是一种“废物转化为能源的方法”,它有助于抵消生物残留物的管理问题,并减少由于碳化不完全而产生的有毒物质。因此,对木材残渣煤球特性的全面了解对于燃料能源的产生非常重要。

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