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室温下低浓度下单金属活性位点活性炭对SO和NH吸附的实验研究

Experimental Study on Adsorption of SO and NH by Activated Carbon with Monometallic Active Sites at Low Concentration under Room Temperature.

作者信息

Zeng Guozhi, Guo Siyi, Zhai Xiaoqiang

机构信息

School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

ACS Omega. 2024 Jan 26;9(5):5523-5533. doi: 10.1021/acsomega.3c07430. eCollection 2024 Feb 6.

Abstract

SO and NH are toxic compounds and are the main sources of airborne molecular contaminants (AMCs). Even at low concentrations, they can cause equipment corrosion and reduce product yield. Therefore, it is crucial to develop a combined SO and NH capture material with a simple process and a high adsorption capacity. In this study, dynamic adsorption breakthrough experiments were conducted at 23 °C under an air pollutant concentration of 90 ppm. The synergistic adsorption results showed that Cu/AC-0.05 had a high adsorption capacity of 1.03 mmol of SO/g and 1.45 mmol of NH/g. Furthermore, to confirm the rationality of the modification method, characterization methods such as BET, SEM-EDX, XRD, and TG-DSC were used to study the new adsorbent and spent adsorbent. The results showed that copper was successfully attached to the activated carbon and distributed uniformly. In this study, efficient coremoval performance of SO and NH was achieved by modifying single metal active sites. Through a comprehensive analysis of the characterization results, the surface reaction mechanism of SO and NH on the prepared material was further determined. This work provides a feasible option for a highly efficient adsorbent for both SO and NH capture at low concentrations under room temperature.

摘要

SO和NH是有毒化合物,也是空气传播分子污染物(AMC)的主要来源。即使在低浓度下,它们也会导致设备腐蚀并降低产品产量。因此,开发一种工艺简单、吸附容量高的SO和NH联合捕获材料至关重要。在本研究中,在23℃、空气污染物浓度为90 ppm的条件下进行了动态吸附穿透实验。协同吸附结果表明,Cu/AC-0.05对SO的吸附容量为1.03 mmol/g,对NH的吸附容量为1.45 mmol/g。此外,为了证实改性方法的合理性,采用BET、SEM-EDX、XRD和TG-DSC等表征方法对新型吸附剂和废吸附剂进行了研究。结果表明,铜成功附着在活性炭上且分布均匀。在本研究中,通过改性单一金属活性位点实现了对SO和NH的高效协同去除性能。通过对表征结果的综合分析,进一步确定了SO和NH在制备材料上的表面反应机理。这项工作为室温下低浓度SO和NH捕获的高效吸附剂提供了一种可行的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/291c/10851388/cc52be452e8c/ao3c07430_0001.jpg

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