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首页> 外文期刊>Journal of CO2 Utilization >Arc length control for efficiency enhancement of energy usage in plasma dry reforming process
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Arc length control for efficiency enhancement of energy usage in plasma dry reforming process

机译:等离子体干重系过程中能源使用效率提高的弧长控制

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摘要

Arc plasma has been applied in diverse reactions because it can provide the mechanism for highly thermal activations. However, the efficiency of conversion from electrical energy to thermal energy for the reactant is not sufficiently high, resulting in challenges in practical applications of the arc in various chemical processes. In this study, a method is introduced to enhance the energy usage efficiency for the reactant. The enhancement is based on the control of the arc length elongation. An increase in the arc length results in an enhanced heat transfer from the arc column to the reactant, followed by the reduction of the conductive heat loss to the reactor body. The existing DC arc technologies cannot easily extend the arc length because of the arc instability. However, in this study, a novel AC arc technology was adopted that can support a stable arc with a sufficiently elongated length. Correspondingly, a comparative study on different arc lengths was conducted for the dry reforming (as a model reaction). The increased arc length results in an enhanced heat transfer to the gas or a higher gas temperature. This is followed by the enhancement of the conversions of the reactants for the same supplied electric power. The results provide a firm physical basis for further optimizations of the arc process for chemical reactions.
机译:电弧等离子体已在不同的反应中应用,因为它可以提供高热激活的机制。然而,从电能转化为反应物热能的效率不足,导致各种化学过程中电弧的实际应用中的挑战。在该研究中,引入了一种方法以提高反应物的能量使用效率。增强基于控制电弧长度伸长率的控制。电弧长度的增加导致从电弧柱的增强的热传递到反应物,然后将导电热量损失降低到反应器主体。由于电弧不稳定性,现有的直流电弧技术不能轻易扩展电弧长度。然而,在本研究中,采用了一种新型AC电弧技术,其可以支撑具有足够细长的长度的稳定电弧。相应地,对不同弧长的比较研究进行了干重整(作为模型反应)。增加的电弧长度导致增强的热传递到气体或更高的气体温度。其次是提高反应物的转化对相同的供应电力。结果为进一步优化化学反应的电弧方法提供了坚实的物理基础。

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