微波加热过程中玉米秸秆中 C、H 和 N 元素的变化

C Pub Date : 2023-12-05 DOI:10.3390/c9040117
Zhihong Liu, Weitao Cao, Man Zhang, Wenke Zhao, Yaning Zhang
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引用次数: 0

摘要

由于全球经济的快速增长,能源消耗一直在稳步增加,导致能源短缺和环境问题日益严重。生物质能是一种重要的可再生能源,在推动低碳能源发展和资源可持续性方面发挥着重要作用。本研究通过实验研究了玉米秸秆在微波加热过程中C、H、N元素的迁移,以及停留时间、加热温度和微波功率对其迁移的影响。结果表明,随着温度的升高,C、H元素的比例都有轻微的波动。具体来说,当温度从75℃升高到275℃时,C元素的比例增加了1.02%,H元素的比例减少了0.25%。停留时间是影响C、H、N元素变化的重要因素。在40 min的停留时间内,C元素的比例从31.77%上升到35.36%,H元素的比例从4.50%下降到3.83%。当微波功率在160 ~ 200 W之间增大时,样品温度升高,玉米秸秆炭化过程更加彻底。因此,C元素的比例随着停留时间的延长而上升,而H元素的比例随着停留时间的增加而下降。
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Changes of C, H, and N Elements of Corn Straw during the Microwave Heating Process
Due to the rapid growth of the global economy, energy consumption has been steadily increasing, leading to increasing issues such as energy shortages and environmental concerns. Biomass energy, a critical renewable energy source, plays a vital role in advancing low-carbon energy development and resource sustainability. In this study, experiments were conducted to study the migration of C, H, and N elements of corn straw during the microwave heating process, and the effects of residence time, heating temperature, and microwave power were also investigated. The results showed that when the temperature rose, both the proportion of C and H elements fluctuated slightly. Specifically, when the temperature rose from 75 °C to 275 °C, there was a 1.02% increase in the proportion of the C element and a 0.25% decrease in the proportion of the H element. Residence time appeared to be a significant factor influencing the changes in C, H, and N elements. For a 40 min residence time, the proportion of the C element increased from 31.77% to 35.36%, while the proportion of the H element decreased from 4.50% to 3.83%. When there was an increase in the microwave power between 160 W and 200 W, higher temperatures were reached in the samples, leading to the carbonization process of corn straw being more complete. Consequently, the proportion of the C element rose with extended residence time, whereas the proportion of the H element decreased as the residence time increased.
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