破解密码:工艺参数对卡亚塞内加尔能源颗粒水分含量的影响

R. I. Ismail, Chu Yee Khor, Alina Rahayu
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引用次数: 0

摘要

利用生物质资源生产能源颗粒对于可持续的可再生能源发电具有巨大的潜力。本研究调查了关键工艺参数对从马来西亚一种前景广阔的生物质原料--卡亚塞内加尔木(Khaya senegalensis)中提取的能源颗粒水分含量的影响。为了揭示工艺变量与颗粒水分之间的关系,本研究采用了系统的实验方法。本研究的目的是调查原料水分、原料粒度、压缩压力和造粒温度对制造的生物质能源颗粒水分含量的影响。通过综合实验设计和统计分析,揭示了这些参数对卡亚塞内加尔能源颗粒水分含量的细微影响。实验结果揭示了这些工艺变量与颗粒最终水分特性之间复杂的相互作用。了解这些参数对水分含量的影响对于优化颗粒质量、燃烧效率和储存稳定性至关重要。研究发现,颗粒尺寸、压缩压力和造粒温度之间存在二次关系,表明颗粒尺寸越大,水分含量越高。压力过大会导致水分含量升高,而温度升高则会导致水分含量呈下降趋势。这项研究提出了宝贵的见解,推进了生物质造粒的知识前沿,为提高塞内加尔卡亚作为可再生能源的利用率铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cracking the Code: Process Parameter Effects on Khaya senegalensis Energy Pellet Moisture Content
The production of energy pellets from biomass sources holds immense potential for sustainable renewable energy generation. This study investigates the influence of key process parameters on the moisture content of energy pellets derived from Khaya senegalensis, a promising biomass feedstock in Malaysia. With a focus on unlocking the relationship between process variables and pellet moisture, a systematic experimental approach was adopted. The objective of this study is to investigate the effects of raw material moisture, feedstock particle size, compression pressure, and pelletization temperature on the manufactured biomass energy pellet's moisture content. By employing a comprehensive design of experiments and statistical analysis, the nuanced effects of these parameters are revealed on the moisture content of Khaya senegalensis energy pellets. The results illuminate the complex interplay between these process variables and the final moisture characteristics of the pellets. Understanding how these parameters impact moisture content is crucial for optimizing pellet quality, combustion efficiency, and storage stability. The study found a quadratic relationship between particle size, compression pressure, and pelletization temperature, indicating that larger particle sizes correlate with higher moisture content. Excessive pressure led to elevated levels while increasing temperature showed a decreasing trend. This research contributes valuable insights that advance the knowledge frontier of biomass pelletization, paving the way for enhanced utilization of Khaya senegalensis as a renewable energy resource.
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