咖啡银皮颗粒化烟气焙烧生产优质固体燃料的多目标优化

IF 3.1 3区 工程技术 Q3 ENERGY & FUELS
Kanit Manatura, Supaporn Klinkesorn, Benjapon Chalermsinsuwan, Namfon Samsalee, Sutthipoj Wongrerkdee, Kitipong Jaojaruek, Adisak Pattiya, Jun Li
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引用次数: 0

摘要

咖啡银皮是一种来自咖啡生产的有机残留物,具有低固体燃料特性,如低体积密度和热值,需要增强固体燃料的应用。烟气环境中的焙烧(5% O2、15% CO2和N2的平衡,v/v)比惰性焙烧更节能,利用回收的烟气提高燃料质量和工艺效率。评估了三个输入因素:温度(200、250和300°C)、停留时间(30、45和60分钟)和气体介质(N2和烟气)。评估了四项性能指标:能源产量、升级能源指数、特定能源消耗和能源质量协同效益。温度显著影响大多数结果,除了能量质量共同效益,这是中等依赖的。在200°C、30 min的烟气中,确定了获得最大能量产率(71.48%)和能量质量协同效益(5.30%)的最佳焙烧条件。碳化材料的性能为含水率3.03%,挥发物69.24%,固定碳27.04%,灰分1.01%。此外,在烟气条件下,颗粒咖啡银皮的疏水性显著提高,接触角大于100°,表明烟气焙烧是生产高档固体燃料的可行方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective Optimization of Pelletized Coffee Silver Skin in Flue Gas Torrefaction for Producing Premium Solid Fuel

Coffee silver skin, an organic residue from coffee production, demonstrates low solid fuel characteristics such as low bulk density and heating value, necessitating enhancements for solid fuel applications. Torrefaction in a flue gas environment (5% O2, 15% CO2, and a balance of N2, v/v) is more energy-efficient than inert torrefaction, using recovered flue gas to improve fuel quality and process efficiency. Three input factors were assessed: temperature (200, 250, and 300 °C), residence time (30, 45, and 60 min), and gas media (N2 and flue gas). Four performance metrics were evaluated: energy yield, upgrading energy index, specific energy consumption, and energy-mass co-benefit. Temperature significantly influenced most outcomes, except for energy-mass co-benefit, which was medium-dependent. Optimal torrefaction conditions achieving maximum energy yield (71.48%) and energy-mass co-benefit (5.30%) were identified at 200 °C for 30 min with flue gas. The torrefied material’s properties include moisture content, volatile matter, fixed carbon, and ash content of 3.03%, 69.24%, 27.04%, and 1.01%, respectively. Furthermore, the hydrophobicity of pelletized coffee silver skin notably increased under flue gas conditions, evident by a contact angle greater than 100°, indicating that flue gas torrefaction is a feasible approach for producing high-grade solid fuel.

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来源期刊
BioEnergy Research
BioEnergy Research ENERGY & FUELS-ENVIRONMENTAL SCIENCES
CiteScore
6.70
自引率
8.30%
发文量
174
审稿时长
3 months
期刊介绍: BioEnergy Research fills a void in the rapidly growing area of feedstock biology research related to biomass, biofuels, and bioenergy. The journal publishes a wide range of articles, including peer-reviewed scientific research, reviews, perspectives and commentary, industry news, and government policy updates. Its coverage brings together a uniquely broad combination of disciplines with a common focus on feedstock biology and science, related to biomass, biofeedstock, and bioenergy production.
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