Effects of Biomass Moisture Content and Process Temperature on Biopellet Quality Derived from Rubber Seed Shell and Ater Bamboo (Gigantochloa atter)

I. D. G. P. Prabawa
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引用次数: 2

Abstract

The purposes of this research were to study the ieffects of biomass moisture content and process temperature on the quality of biopellet derived from rubber seed shell and bamboo ater (Gigantochloa atter). The biomass was conditioned at different moisture contents (6, 12, 14, 16, 18, and 20% w/w), and the biopelet was produced at a pressure of 597,24 kg/cm2 with various process temperatures (100, 125, 150, 175, and 200oC). The results showed that the properties of produced biopellets were significantly affected by the variation of moisture content and process temperature. High moisture content of biomass could increase the moisture content of biopellet while the calorific value and ash content decreased. With the increase in process temperatures, calorific value and ash increased whereas the moisture content of biopellet decreased. Mechanical durability was enhanced with the increase inthe moisture content of biomass, starting from 6% to 18%;and was improved with the increase in the process temperatures, starting from 100oC to 175oC. However, the bulk density of biopellet increased with the increase inthe moisture content of biomass, starting from 6% to 16%, and was improved with the increase in the process temperatures from 100oC to 150oC. The best quality of biopellet was produced  in the biomass moisture content of 16% and the process temperature of 150oC. That biopellet had mechanical durability of 99.16%, calorific value of 4,402 cal/g, bulk density of 1,157 kg/m3, moisture content of 6.71%, ash of 1.19%, nitrogen of 0.15%, Sulphur of 0.013%, and chlorine of <0.1 ppm. That biopellet quality met European standards (EN 14961-2).
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生物质含水率和工艺温度对橡胶籽壳和竹材生物细胞品质的影响
本研究旨在研究生物质水分含量和工艺温度对橡胶籽壳和竹水(Gigantochloa ater)制备生物细胞的影响。生物质在不同的水分含量(6、12、14、16、18和20% w/w)下进行调节,在597、24 kg/cm2的压力和不同的工艺温度(100、125、150、175和200℃)下生产生物小波。结果表明,制备的生物电池的性能受湿度和工艺温度的影响较大。生物质含水率高可以提高生物电池的含水率,降低热值和灰分含量。随着工艺温度的升高,生物电池的热值和灰分增加,而水分含量降低。机械耐久性随生物质含水率的增加而增强,从6%到18%;随工艺温度的增加而提高,从100℃到175℃。然而,随着生物质含水量从6%到16%的增加,生物电池的体积密度增加,并且随着工艺温度从100℃到150℃的增加而提高。在生物质含水率为16%、工艺温度为150℃的条件下,生产出的生物电池质量最佳。该生物电池的机械耐久性为99.16%,热值为4402 cal/g,容重为1157 kg/m3,含水量为6.71%,灰分为1.19%,氮含量为0.15%,硫含量为0.013%,氯含量<0.1 ppm。该生物细胞质量符合欧洲标准(EN 14961-2)。
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