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Biomass-glycerol briquettes are not necessarily mechanically stable and energetically effective

机译:生物量 - 甘油煤块不一定在机械上稳定且能量有效

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摘要

Abstract The re-use of glycerol from biodiesel industry as an alternative lubricant for making high-performance briquettes is usual. However, the?technical performance of this agro-industrial residue is not consistent. This study outlines, accordingly, the real risk of introducing glycerol into the co-briquetting of highly caloric by-products of energy-crops. The production of hybrid briquettes consisted of pressing mixtures of residues of sugarcane and sorghum with the liquid additive at 10, 20, and 30 wt.% in bench-scale hydraulic piston presser machine. Irrespective of the blend, briquettes containing the supplement at the highest level as part of their composition ended up being much more hygroscopic (20.10%) and less energetic (3.15?GJ?m?3). The explanation for the negative impact of glycerol on the thermomechanical behavior of briquettes would be overconcentration of additive capable of effectively defying compacting biomass. The degree of compaction during co-briquetting has likely gone down quickly with a?maximizing level of glycerol. As long as the additive is not able to lubricate the feedstock suitably, improbability of biomass particles to successfully bond together to form themselves into mechanically stable and energetically effective briquettes is large. Besides lower density (273.80?kg?m?3) and higher relaxation (22.75%), briquettes with glycerol at 30 wt.% generally were aesthetically unpleasing. Practically, these products resisted no longer to handling, transportation, and storage. They lost their shape easily during emptying and shifting them, thus, releasing larger quantities of biomass to the environment. Preliminary evidence of high-viscosity glycerol capable of limiting safe and effective production of high-performance briquettes for heating and power exists.
机译:摘要从生物柴油行业中重复使用甘油作为制造高性能煤的替代润滑剂。但是,这种农业工业残留物的技术性能并不一致。因此,这项研究概述了将甘油引入高热量副产品的共同生产的真正风险。混合煤球的产生包括甘蔗和高粱残基与液体添加剂在10、20和30 wt。%的压制混合物中,在台式液压活塞压力机中。不论混合物如何,作为其成分的最高水平的易碎块最终变得更加吸湿性(20.10%)和能量较小(3.15?gj?m?3)。甘油对煤液的热力学行为的负面影响的解释将是能够有效抗压缩生物量的添加剂过度浓度。通过最大化甘油的水平,共晶过程中的压实程度可能很快下降了。只要添加剂不能适当地润滑原料,生物质颗粒成功地将自己结合在一起以形成机械稳定且能量有效的煤球的不可能。除了较低的密度(273.80?kg?m?3)和较高的松弛(22.75%)外,甘油在30 wt。%时的煤气上通常在美学上是不愉快的。实际上,这些产品不再抵制处理,运输和存储。他们在排空和转移它们时很容易失去形状,从而向环境释放了更多的生物量。高粘度甘油的初步证据,能够限制安全有效地生产高性能的煤气,以进行供暖和动力。

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