Potential of walnut shell flour as a binder in briquette production from industrial and garden wastes

IF 1.3 4区 农林科学 Q2 MATERIALS SCIENCE, PAPER & WOOD Bioresources Pub Date : 2023-12-04 DOI:10.15376/biores.19.1.683-694
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Abstract

Briquettes as a product of biomass compaction is considered a renewable product for replacing fossil fuels. Briquettes can be produced from several sources using the development of technology. In this study, the effect of walnut shells as an organic binder on the properties of biofuel briquettes made of industrial and garden wastes was investigated. Cylindrical briquettes from walnut shell flour with weight ratios of 5%, 10%, 15%, 20%, and 25% were prepared from industrial sawdust and ground garden residue with a weight ratio of 50/50. Briquettes were compacted under a temperature of 170 °C and pressure of 150 kg/cm2 for 30 s. Results indicated that the chemical analyses of compounds, compaction ratio, and density of the briquettes containing different proportions of walnut shells were not significantly different. The lowest fixed carbon was measured for briquettes containing 5% of walnut shell, and increasing the ratio of walnut shell significantly increased the compressive strength of the resulting briquette.
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核桃壳粉作为利用工业和园林废弃物生产煤球的粘合剂的潜力
压块作为生物质压实的产物,被认为是一种可替代化石燃料的可再生产品。随着技术的发展,压块可从多种来源生产。本研究调查了核桃壳作为有机粘合剂对工业和园林废弃物制成的生物燃料压块特性的影响。用重量比为 5%、10%、15%、20% 和 25% 的核桃壳粉制成的圆柱形压块是由重量比为 50/50 的工业锯屑和磨碎的园林残渣制备的。压块在 170 °C 的温度和 150 kg/cm2 的压力下压实 30 秒。结果表明,含有不同比例核桃壳的压块的化合物化学分析、压实率和密度没有显著差异。含 5%核桃壳的压块测得的固定碳最低,增加核桃壳的比例可显著提高压块的抗压强度。
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来源期刊
Bioresources
Bioresources 工程技术-材料科学:纸与木材
CiteScore
2.90
自引率
13.30%
发文量
397
审稿时长
2.3 months
期刊介绍: The purpose of BioResources is to promote scientific discourse and to foster scientific developments related to sustainable manufacture involving lignocellulosic or woody biomass resources, including wood and agricultural residues. BioResources will focus on advances in science and technology. Emphasis will be placed on bioproducts, bioenergy, papermaking technology, wood products, new manufacturing materials, composite structures, and chemicals derived from lignocellulosic biomass.
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