空气悬浮碳纳米颗粒上德拜长度变化形式的脉冲等离子体效应

Q2 Environmental Science
Mahsa Mokhtari , Mohammad Taghi Ahmadi , Amir Musa Abazari , Meisam Rahmani
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引用次数: 0

摘要

等离子体技术被认为是一种高效、副作用小的成功的颗粒污染控制和去除技术。汽车和工业排放的废气中的碳基纳米颗粒是本研究的重点。首先,设计了具有两个可调电极的介质阻挡放电等离子体反应器。为了获得最佳的等离子体对纳米颗粒的影响,将电极与污染源的距离从2 cm改变为32 cm。对得到的直方图图像进行分析,发现灰度点从62.35%下降到32.26%。此外,白点从37.65%增加到76.74%,这表明纳米颗粒被反应器壁吸收。此外,对等离子体发生器的电压和频率等因素进行了数值分析,揭示了通过去除这些因素来降低污染纳米颗粒浓度。由于碳纳米颗粒吸引污染物和化学物质,如重金属和有机污染物,因此研究了它们在等离子体下以德拜长度变化的形式传播。废气中最重要的污染物之一是碳纳米颗粒,需要加以控制。因此,在废气排放中大幅减少这些颗粒将符合世界零碳排放计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pulsed plasma effect in the form of Debye lengths variation on air-suspended carbon nanoparticles
The Plasma technique has been regarded as a successful particle pollution control and removal technology with high efficiency and fewer side effects. Carbon-based nanoparticles in exhaust gases caused by cars and industries are notable pollutants that are focused on in this research. Primarily, dielectric barrier discharge (DBD) plasma reactors with two adjustable electrodes are designed. To acquire the optimum plasma effect on nano particles electrodes distance from pollutant source is changed from 2 cm to 32 cm. Obtained histogram images are analyzed which indicate decreased gray points from 62.35 % to 32.26 %. Additionally, an increase in white points from 37.65 % to 76.74 % is reported, which is a sign of absorbed nano-particles by the reactor wall. Additionally, plasma generator factors such as voltages and frequencies are analyzed numerically, revealing the reduction of the polluting nanoparticle concentration by falling off these factors. As the carbon nanoparticles attract pollutants and chemicals like heavy metals and organic contaminants therefore their propagation in the form of Debye length variation under the plasma is investigated.
One of the most important pollutants in exhaust gases is carbon nanoparticles, which need to be controlled. Therefore, offering a significant reduction of these particles in exhaust emissions will be in line with the world zero carbon emission program.
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来源期刊
Environmental Challenges
Environmental Challenges Environmental Science-Environmental Engineering
CiteScore
8.00
自引率
0.00%
发文量
249
审稿时长
8 weeks
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