棕榈油空果串作为共烧生物质原料的特性研究

R. Rusdianasari, Iwan Arissetyadhi, L. Kalsum, Y. Bow, Aida Syarif, F. Arifin
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引用次数: 3

摘要

棕榈油(EFB)的空果束是生物质能的潜在来源,因为它们含有木质纤维素(纤维素、半纤维素和木质素),因此它们可以转化为生物细胞进行共烧。本研究的目的是确定EFB以近似、最终、木质素和生物细胞的形式的原材料特性。使用造粒机,通过添加淀粉作为粘合剂来制造生物细胞。原料特征近似分析表明,其水分含量为11.98%,灰分含量为6.53%,挥发物含量为65.15%,固定碳含量为16.44%。根据最终的研究结果,空果串中生物细胞的碳含量为48.53%,氢含量为6.05%,氮含量为0.32%,氧含量为36.8%,硫含量为0.08%。由最终分析结果得到的原子比可用于确定可用于燃料的热值;EFB生物电池热值为4583 kcal/kg, Hardgrove可磨性指数(HGI)为78.6,灰熔融温度(AFT)为1100℃。所含的原子比越低,特定燃料所含的热值就越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Empty Fruit Bunch of Palm Oil as Co-firing Biomass Feedstock
Empty fruit bunches of Palm Oil (EFB) are a potential source of biomass energy because they contain lignocellulose (cellulose, hemicellulose and lignin) so that they can be converted into biopellets for co-firing. The purpose of this research is to determine the raw material properties of EFB in the form of proximate, ultimate, lignin, and biopellets. Using a pelletizer, biopellets are created by adding starch as an adhesive. The raw material characteristics of EFB from proximate analysis revealed moisture content of 11.98%, ash content of 6.53%, volatile matter content of 65.15%, and fixed carbon content of 16.44%. According to the final study results, the biopellets from empty fruit bunches included 48.53% C, 6.05% H, 0.32% N, 36.8% O, and 0.08% Sulphure. The atomic ratio obtained from the final analysis results could be used to determine the calorific value that can be used for fuel; the biopellet calorific value of EFB is 4,583 kcal/kg, with Hardgrove Grindability Index (HGI) values of 78.6 and Ash Fusion Temperature (AFT) 1100oC. The lower the value of the atomic ratio contained, the higher the calorific value contained in a specific fuel.
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