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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Evaluation on nitrogen oxides and nanoparticle removal and nitrogen monoxide generation using a wet-type nonthermal plasma reactor
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Evaluation on nitrogen oxides and nanoparticle removal and nitrogen monoxide generation using a wet-type nonthermal plasma reactor

机译:使用湿式非热血浆反应器评价氮氧化物和纳米颗粒去除和氮一氧化氮产生

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Nitrogen oxides (NOx) emitted from power plants and combustion sources cause air pollution problems. Selective catalytic reduction technology is remarkably useful for NOx removal. However, there are several drawbacks such as preparation of reducing agents, usage of harmful heavy metals, and higher cost. On the other hand, trace NO is a vasodilator agent and employed in inhalation therapies for treating pulmonary hypertension in humans. Considering these factors, in the present study, a wet-type nonthermal plasma reactor, which can control NOx and nanoparticle emissions and generate NO, is investigated. The fundamental characteristics of the reactor are investigated. First, the experiment of nanoparticle removal is carried out. Collection efficiencies of over 99% are achieved for nanoparticles at 50 and 100 ml min(-1) of liquid flow rates. Second, experiments of NOx removal under air atmosphere and NOx generation under nitrogen atmosphere are carried out. NOx-removal efficiencies of over 95% under the air plasma are achieved in 50-200 ml min(-1) liquid flow rates. Moreover, under nitrogen plasma, NOx is generated, of which the major portion is NO. For example, NO concentration is 25 ppm, while NOx concentration is 31 ppm at 50 ml min(-1) liquid flow rate. Finally, experiments of NO generation under the nitrogen atmosphere with or without flowing water are carried out. When water flows on the inner surface of the reactor, approximately 14 ppm of NO is generated. Therefore, NO generation requires flowing water. It is considered that the reaction of N and OH, which is similar to the extended Zeldovich mechanism, could occur to induce NO formation. From these results, it is verified that the wet-type plasma reactor is useful for NOx removal and NO generation under nitrogen atmosphere with flowing water.
机译:从发电厂和燃烧源发出的氮氧化物(NOx)导致空气污染问题。选择性催化还原技术对于NOx去除非常有用。然而,存在几种缺点,例如制备还原剂,有害重金属的使用以及更高的成本。另一方面,痕量NO是血管扩张剂,并用于吸入治疗人类肺动脉高压的疗法。考虑到这些因素,在本研究中,研究了一种湿式非热血浆反应器,可以控制NOx和纳米颗粒排放并产生不产生的。研究了反应器的基本特征。首先,进行纳米颗粒去除的实验。纳米颗粒在50和100mL min(-1)的液体流速下实现超过99%的收集效率。其次,进行空气气氛下NOx和NOx在氮气氛下产生的实验。在空气等离子体下超过95%的NOx除去效率在50-200mL min(-1)液流量速率下实现。此外,在氮等离子体下,产生NOx,其中主要部分是没有的。例如,没有浓度为25ppm,而NOx浓度为31ppm,在50mL min(-1)液体流速下。最后,进行有或不具有流动的氮气氛在没有流动的情况下产生的实验。当水流在反应器的内表面上时,产生约14ppm的否。因此,没有一代需要流动的水。认为N和OH的反应,其类似于延长的塞尔多莫机制,可能发生诱导没有形成。从这些结果来看,验证湿式等离子体反应器可用于NOx去除,在具有流动水的氮气氛下没有发电。

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