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USO DO GUAPURUVU ( Schizolobium parahyba ) PARA FINS ENERGéTICOS

机译:GUAPURUVU(Shyzolobium parahyba)用于能源用途

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The use of solid biofuel produced by the briquetting process is an alternative source for power generation. The briquette is produced by the compression of lignocellulosic materials, allowing for a higher energy at a lower volume. This work aimed to study the briquetting process of Schizolobium parahyba (guapuruvu). It was evaluated the stability, density, mechanical resistance and friability of the briquettes. The treatments were: T1 (above 40 mesh), T2 (between 40 and 60 mesh) and T3 (below 60 mesh). All treatments were adjusted to a moisture content of 12%. The briquettes were produced by hydraulic press without using heat or binder. The three treatments were statistically different from each other in terms of density, height expansion and diametrical compression resistance. The treatment T3 showed the best results for all parameters, with the highest values for density (0,932 g.cm -3 ) and mechanical resistance (0,485 MPa). Also, T3 presented the lowest friability (8,35%).? The results showed that the particle size interferes in the final product characteristics. The study showed that guapuruvu could be an alternative for solid biofuel production.
机译:通过压块工艺生产的固体生物燃料的使用是发电的替代来源。压块是通过压缩木质纤维素材料制成的,从而可以在较小的体积下获得较高的能量。这项工作的目的是研究副生Schizolobium parahyba(guapuruvu)的压块过程。评价了团块的稳定性,密度,机械阻力和脆性。处理为:T1(40目以上),T2(40目至60目之间)和T3(60目以下)。所有处理均调整为12%的水分含量。压块是在不使用热或粘合剂的情况下通过液压机生产的。这三种处理在密度,高度膨胀和抗径向压缩性方面在统计学上彼此不同。处理T3对于所有参数均显示出最佳结果,其中密度(0,932g.cm -3)和机械阻力(0,485MPa)的值最高。另外,T3的脆碎度最低(8.35%)。结果表明,粒径干扰了最终产品的特性。研究表明,guapuruvu可以替代固体生物燃料的生产。

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