评估修剪珙桐树的能耗

Rebeca Silva Lisboa, Carlos Roberto Sette Jr., Mariana Pires Franco
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引用次数: 0

摘要

修剪等同于去除植物的整枝或部分枝条,不论是活枝还是枯枝,以促进物种的平衡发展,因此,产生废料是一个不可或缺且始终存在的结果。修剪产生的残留物来自造林处理,显然具有巨大的能源生产潜力。除了能源优势和实用性之外,压块技术还能减轻对环境的影响,从鼓励使用可再生能源到减少温室气体排放,因为压块技术被强烈推荐用于替代化石煤炭。这项工作的主要目的是评估城市修剪双翅目植物所产生的残余生物质在质量和生产率方面的能源利用可能性,重点是煤砖的生产,从而鼓励对 Cerrado 的本地物种和可再生能源的利用进行进一步的研究。测定了挥发性物质、灰分和固定碳的含量、较高的热值、基本密度和能量密度,并用实验室压块机生产了压块。通过物理机械分析确定了压块的质量:表观密度、耐久性、直径压缩和膨胀拉伸强度。压块后,生物质的能量密度显著增加,证实了致密化材料单位体积能量浓度的增加。因此,得出的结论是,事实证明,利用城市修剪剩余物中的双齿箭证明适合制作煤球,以生产可再生和可持续能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Energy Use of Pruning Dipteryx alata Trees
Pruning is equivalent to the removal of whole branches or parts, living or dead, of a plant, to promote balance in the development of the species, therefore, the generation of waste portrays an indispensable and ever-present consequence. The residues derived from pruning come from silvicultural treatments and evidently have great potential to be used in energy generation. Briquetting, in addition to its energy advantage and practicality, collaborates with the mitigation of environmental impacts from encouraging the use of renewable energies to reducing the emission of greenhouse gases, as they are strongly recommended for replacing fossil coal. The main objective of this work was to evaluate the possibility, related to quality and productivity, of the energy use of residual biomass from urban pruning of Dipteryx alata, focusing on the production of briquettes, thus encouraging further studies related to native species of the Cerrado and the use of renewable energy. The contents of volatile materials, ash and fixed carbon, higher calorific value, basic and energetic density were determined, and briquettes were produced in a laboratory briquetting machine. The quality of the briquettes was determined through physical-mechanical analyses: apparent density, durability, tensile strength by diametral compression and expansion. The energy density of the biomass had a considerable increase after briquetting, confirming the increase in energy concentration per unit volume in densified materials. Therefore, it was concluded that the use of urban pruning residues of Dipteryx alata proved to be suitable for making briquettes to produce renewable and sustainable energy.
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