Utilization of Brown Coal with Ceara Rubber (Manihot glaziovii) Binder for Biobriquettes

Mirna Rahmah Lubis, Asri Gani, Teuku Maimun, Nurul Aflah
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Abstract

Based on the ultimate and proximate analysis, brown coal and ceara rubber (biomass) had low calorific values of 5,349 and 3,319 kcal/kg, respectively. The ceara rubber was not included in the food ingredient because it contained chemicals such as toxic cyanide acid. This research was conducted to utilize the biomass in biobriquettes that had added value and became a more environmentally friendly energy source compared to fossil fuels. The mixing ratio of the biobriquette was determined at various particle sizes. Biobriquette preparation included crushing, drying, size reduction, sieving, mixing, molding, and testing. The produced biobriquette was cylindrical with a diameter of 3 cm and pressing pressure of 7 metric tons. Biobriquette analysis included compressive strength tests, tests of density, tests of moisture, ash, and fixed carbon content, tests of the volatile matter, and tests of calorific values. These biobriquettes were expected to increase the selling value of low-rank coal and become one alternative to more environmentally friendly solid fuel for cooking purposes. Based on the research results, the best biobriquette had a particle size of 60 mesh. The result showed that the best particle size was on the mixing ratio of 3:2, with the net calorific value reaching 4,300.8 kcal/kg.
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褐煤与橡胶粘结剂在生物燃料中的应用
结果表明,褐煤和生物质的发热量较低,分别为5349 kcal/kg和3319 kcal/kg。由于含有有毒的氰化物酸等化学物质,这种橡胶没有被包括在食品原料中。与化石燃料相比,生物燃料中的生物质具有附加价值,是一种更环保的能源,因此进行了这项研究。测定了不同粒径下生物型煤的混合比例。生物燃料的制备包括粉碎、干燥、缩小尺寸、筛分、混合、成型和测试。生产的生物燃料为圆柱形,直径为3厘米,压力为7吨。生物燃料分析包括抗压强度测试、密度测试、水分、灰分和固定碳含量测试、挥发性物质测试和热值测试。预计这些生物煤球将增加低阶煤的销售价值,并成为更环保的固体燃料的一种替代品。根据研究结果,最佳生物燃料粒径为60目。结果表明,当混合比为3:2时,颗粒粒径最佳,净发热量达到4300.8 kcal/kg。
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