ANALYSIS OF FIXED CARBON AND VOLATILE MATTER BRIQUETTES OF PINE SAWDUST AND COCONUT SHELL WASTE

Rany Puspita Dewi, S. Sumardi, Rizal Isnanto
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Abstract

Briquetting technology became one appropriate method that can be used to convert biomass waste into a renewable energy source. Sources of biomass raw materials that have promising potential are pine sawdust and coconut shell waste. Sawdust has potential for about 0.78 million m3/year and coconut shell waste around 360 thousand tons/year. The research aim was to analyse the effect of the carbonization temperature to volatile matter and fixed carbon of briquette. The research was done by variating carbonization temperature at 400 oC, 500 oC, and 600 oC. The result showed that at carbonization temperature of 400 oC, the volatile matter and fixed carbon was 42.28% and 55.74%. The volatile matter and fixed carbon are 43.19% and 54.96%, found at carbonization temperature 500 oC. The highest fixed carbon 55.98% and the lowest volatile matter 42.19% was found from carbonization temperature at 600 oC. The carbonization temperature in briquetting process affects the volatile matter and fixed carbon of briquette.
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松木锯屑和椰壳废料的固定碳和挥发性物质压块分析
压块技术是将生物质废物转化为可再生能源的一种适当方法。具有潜力的生物质原料来源是松木锯屑和椰壳废料。锯屑的潜力约为 78 万立方米/年,椰壳废料约为 36 万吨/年。研究的目的是分析碳化温度对压块挥发物和固定碳的影响。研究在 400 摄氏度、500 摄氏度和 600 摄氏度的不同碳化温度下进行。结果表明,碳化温度为 400 oC 时,挥发物和固定碳的含量分别为 42.28% 和 55.74%。碳化温度为 500 oC 时,挥发物和固定碳分别为 43.19% 和 54.96%。碳化温度为 600 oC 时,固定碳含量最高,为 55.98%,挥发物含量最低,为 42.19%。压块过程中的碳化温度会影响压块的挥发性物质和固定碳。
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