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Non-thermal plasma combined with CuO/sepiolite clay catalyst removal NO

机译:非热血浆结合CuO / Sepiolite粘土催化剂去除NO

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The modified sepiolite clay catalyst cleaned by nitric acid, impregnated copper nitrate, drying and then calcinations, combined with non-thermal plasma produced by dielectric barrier discharge reactor to remove NO. With XRD analyzed pattern of original and modified sepiolite, the Mg element and others were effectively removed from the original sepiolite by cleaning with nitric acid; the stable phase CuO was formed in the surface of catalyst after immersion and calcinations; the structure of sepiolite almost did not changed after modification so the sepiolite has a good ability to act as catalyst carrier. SEM micrograph of the sepiolite catalyst indicated the number of micro hole were improved and the surface area was increased by treatment, the active point of CuO was uniformly distributed in the surface without stack mess. The results show the acid concentration, cleaning time has an effect on NO removal ratio. Catalyst activity increased and then decreased with increasing of the acid cleaning time. The ratio increased with the increasing of input voltage. The modified sepiolite catalyst has a good ability to adsorb and store NO and take on Barrier Dielectric for Discharge. The order NO removal ratio is as follows: (plasma+ catalyst with acid cleaning, copper nitrate immersed and calcinations) > (catalyst with acid cleaning, copper nitrate immersed and calcinations) > (plasma+ sepiolite catalyst without acid cleaning, but copper nitrate immersed and calcinations) > (plasma+ original sepiolite) > only plasma. When the input voltage was 35kV, the nitric acid concentration of 1.5mol/L used to immerse original sepiolite for 48h, 8% CuO was loaded in the sepiolite surface and the catalyst was calcinated at 500°C for 5h, the maximum ratio value may reach 71%. The This research has been supported by the National Natural Science Foundation of China (No.21076002) investigation proved that the modified sepiolite catalyst combined with non-ther- - mal plasma had a good ability to remove NO.
机译:通过硝酸,浸渍硝酸铜,干燥然后煅烧清洁改性的海硫酸盐粘土催化剂,与介质阻挡放电反应器产生的非热等离子体结合以去除NO。利用XRD分析的原始和改性海泡石的图案,通过用硝酸清洗,有效地从原始海泡石中得到了Mg元素和其他物质;在浸渍和煅烧后,在催化剂的表面形成稳定相CuO;修饰后Sepiolite的结构几乎没有改变,因此Sepiolite具有良好的充当催化剂载体的能力。 SEM Sem的海泡石催化剂的显微照片表明,微孔的数量得到改善,并且通过处理增加了表面积,CuO的活性点均匀地分布在表面上而没有堆叠混乱。结果表明酸浓度,清洁时间没有效果无去除率。随着酸清洁时间的增加,催化剂活性增加然后降低。该比率随着输入电压的增加而增加。改性的海泡石催化剂具有良好的吸附和储存NO的能力,并占据放电阻挡电介质。无除去比例如下:(血浆+催化剂与酸洗,硝酸铜浸没,煅烧)> (酸洗催化剂,硝酸铜浸没,煅烧)> (血浆+海硫酸盐催化剂而不酸洗,但硝酸铜浸渍和煅烧)> (血浆+原始海泡石)>仅等离子体。当输入电压为35kV时,用于将原始海泡石浸入48小时的硝酸浓度为48小时,在海泡石表面上装载8%CuO,催化剂在500℃下煅烧5小时,最大比率价值可能达到71%。该研究得到了中国国家自然科学基金(No.21076002)调查证明,改性的海硫酸酯催化剂与非含量 - 血浆结合的良好能够去除NO。

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