玉米、甘蔗渣和聚乙烯复合材料制备的压块的理化、发热量和排放性能

Owolabi Ayowole Awwal, Omoniyi K. Israel, Z. Yashim
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引用次数: 1

摘要

全球废物产生一直是一个具有挑战性的问题,对人类和环境产生了巨大影响。将大量农业和聚合物废物转化为型煤可能会弥补发展中经济体的能源短缺和环境污染问题。另一方面,利用生物质废物或残渣作为能源有助于减轻对进口能源的依赖,而且其使用仍然是发展中国家和发达国家的一个热门问题。多年来,生物质一直是一种重要的能源,因为它具有相对的可用性,并且能够通过履行国际承诺来满足热和电力需求,从而最大限度地减少环境退化,最大限度地提高环境、社会和经济的可持续性。与所有其他类型的生物燃料相比,压实生物质的好处包括其低的运输和储存成本、均匀的产品质量(如恒定的湿度含量)和高的质量流动性。此外,燃料木材和生物质残留物的燃烧效率低,对环境和健康造成危害。本研究研究了由玉米芯、甘蔗渣和聚乙烯废料复合材料生产的压块的性能。使用木薯淀粉粘合剂(CSB)和芭蕉皮粘合剂(PPB)在4%、12%和20%的粘合剂浓度下使压块团聚。通过扫描电子显微镜对每种型煤进行了近似分析、热值、极限分析和微观结构表征。该型煤的水分含量为5.39-12.10%,挥发性物质含量为10.15-23.08%,灰分含量为10.29-24.63%,固定碳含量为55.84-77.10%,热值为9.04-28.14MJ/kg,碳含量为77%-8405%,氮含量为0.875-1.05%,硫含量为0.4-0.7%。本研究结果表明,与使用PPB生产的型煤相比,使用粘结剂浓度为4%的CSB生产的成型煤具有生物质燃料成型所需的最佳性能,并建议将其用于生产环境友好的固体燃料。
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Physico-chemical, Calorific, and Emission Performance of Briquettes Produced from Maize Cob, Sugarcane Bagasse, and Polythene Composites
Global waste generation has been a challenging issue that vastly affects humans and the environment. The conversion of a vast amount of agricultural and polymeric waste to briquette may bridge the energy deficit and environmental pollution issues in developing economies. On the other hand, the utilization of biomass waste or residue as an energy source could help alleviate dependence on imported energy and its use continues to be a topical issue in both developing and developed countries. Over the years, biomass has been an important source of generating energy due to its relative availability and the ability to meet both heat and electricity demands by contributing towards international commitments so as to minimize environmental degradation and maximize environmental, social, and economic sustainability. The benefits of compacted biomass compared to all other types of biofuel include its low transportation and storage costs, uniform product quality such as constant humidity content, and high mass fluency. Moreover, fuel wood and biomass residues have low combustion efficiency, posing environmental and health hazards. This research studies the performance of briquettes produced from maize cob, sugarcane bagasse, and polythene waste composites. The briquettes were agglomerated using cassava starch binder (CSB) and plantain peel binder (PPB) at binder concentrations of 4%, 12%, and 20%. Each briquette was characterized in terms of proximate analysis, calorific value, ultimate analysis and micro-structure by scanning electron microscopy. The briquettes had a moisture content of 5.39-12.10%, volatile matter of 10.15- 23.08%, ash content of 10.29-24.63%, fixed carbon content of 55.84-77.10%, calorific value of 9.04-28.14 MJ/kg, carbon content of 77%-8405%, nitrogen content of 0.875-1.05%, and sulphur content of 0.4-0.7%. The results obtained from this study revealed that briquette produced using CSB at binder concentration of 4% had the best properties required for biomass fuel briquette compared to briquette produced using PPB and suggested its use for the production of environmentally friendly solid fuel.
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来源期刊
Avicenna Journal of Environmental Health Engineering
Avicenna Journal of Environmental Health Engineering Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
1.00
自引率
0.00%
发文量
8
审稿时长
8 weeks
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