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Biodiesel Exhaust Treatment with HFAC Plasma supported by Red Mud: Study on DeNOx and power consumption

机译:用红泥支撑的HFAC等离子体的生物柴油排气处理:丹欧省和功耗研究

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The concentration of Nitrogen Oxides (NOx) in engines which use biodiesel as fuel is higher compared to conventional diesel engine exhaust. In this paper, an attempt has been made to treat this exhaust using a combination of High frequency AC (HFAC) plasma and an industrial waste, Red Mud which shows proclivity towards Nitrogen dioxide (NO2) adsorption. The high frequency AC source in combination with the proposed compact double dielectric plasma reactors is relatively more efficient in converting Nitric Oxide (NO) to NO2. It has been shown that the plasma treated gas enhances the activity of red mud as an adsorbent/catalyst and about 60-72% NO_x removal efficiency was observed at a specific energy of 250 J/L. The advantage in this method is the cost effectiveness and abundant availability of the waste red mud in the industry. Further, power estimation studies were carried out using Manley's equation for the two reactors employed in the experiment and a close agreement between experimental and predicted powers was observed.
机译:与传统的柴油发动机排气相比,使用生物柴油作为燃料的发动机中的氮氧化物(NOx)的浓度更高。在本文中,已经尝试使用高频AC(HFAC)等离子体和工业废物,红色泥浆的组合来治疗该排气,所述红色泥浆显示出朝向二氧化氮(NO2)吸附。与所提出的紧凑双介电等离子体反应器组合的高频AC源在将一氧化氮(NO)转化为NO 2时相对较高。已经表明,等离子体处理的气体增强了红色泥浆作为吸附剂/催化剂的活性,并且在250J / L的特定能量下观察到约60-72%的NO_X去除效率。这种方法的优点是业内废红泥的成本效益和丰富可用性。此外,使用Manyey的等式进行功率估计研究,用于实验中使用的两个反应器,并且观察到实验和预测能力之间的密切协议。

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