Physical and Proximate Analysis of Fuel Briquette Made Using African Locust Bean (Parkia biglobosa) Pulp as a Binder

S. Namadi, A. Musa, U. Gana
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Abstract

This paper examines the possible use of African Locust Bean (Parkia biglobosa) Pulp as a binding agent for the production of biofuel briquettes. Sawdust biomass was briquetted using hot and cold prepared African Locust bean pulp (SBP) and cassava starch (SBCS) as binders. Physical and combustion analysis of the fuels were performed in accordance with ASTM analytical methods and calculations to analyse the briquettes strength and aptness as a solid biofuel. The results obtained for the maximum density, relaxed density and shatter index ranged between, 802.03 to 931.87 , 300.60 to 336.40  and 89.29 to 99.77% respectively, with samples SBCS and SBP(Cold) showing a better result. The proximate analysis performed shows that, the %Moisture content (Dry basis), %Ash content, %Volatile matter and %Fixed carbon ranged between 6.52 to 8.08%, 2.60 to 5.12%, 78.21 to 86.53% and 2.79 to 10.15% respectively. The Calorific Value obtained for the material briquettes are 17,230kJ/kg, 18,270kJ/kg and 16,550kJ/kg for SBCS, SBP(Cold) and SBP(Hot) respectively. It has been observed from analysis that the strength of the briquettes descends in the order SBCS→SBP(Cold)→SBP(Hot), with a little variation between samples SBCS and SBP(Cold). The study indicates the potential of the binder for the production of biofuel and significantly improve the carbon content as well as the calorific value of the fuel.
以非洲刺槐豆(Parkia biglobosa)纸浆为粘合剂制成燃料型煤的物理和近似分析
本文探讨了利用非洲刺槐豆(Parkia biglobosa)纸浆作为粘合剂生产生物燃料型煤的可能性。以冷热制备的非洲刺槐豆浆(SBP)和木薯淀粉(SBCS)为粘结剂,对木屑生物质进行了压型处理。根据ASTM的分析方法和计算方法对燃料进行物理和燃烧分析,以分析压块作为固体生物燃料的强度和适用性。最大密度、松弛密度和破碎指数的变化范围分别为802.03 ~ 931.87、300.60 ~ 336.40和89.29 ~ 99.77%,其中以SBCS和SBP(Cold)样品效果较好。近似分析表明,土壤含水量(干基)、灰分、挥发物和固定碳含量分别在6.52 ~ 8.08%、2.60 ~ 5.12%、78.21 ~ 86.53%和2.79 ~ 10.15%之间。SBCS、SBP(冷)和SBP(热)的热值分别为17,230kJ/kg、18,270kJ/kg和16,550kJ/kg。从分析中可以看出,成型煤的强度依次为SBCS→SBP(冷)→SBP(热),SBCS和SBP(冷)试样之间变化不大。该研究表明了粘合剂生产生物燃料的潜力,并显著提高了燃料的碳含量和热值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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