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利用一氧化碳和蒸汽对焦粉进行活化:碳吸附剂的优化与表征

Activation of Coke Fines Using CO and Steam: Optimization and Characterization of Carbon Sorbents.

作者信息

Ordabaeva Aigul T, Muldakhmetov Zainulla M, Meiramov Mazhit G, Kim Sergey V

机构信息

Institute of Organic Synthesis and Chemistry of Coal of Kazakhstan Republic, Alikhanov Str., 1, Karaganda 100012, Kazakhstan.

出版信息

Molecules. 2025 Jun 10;30(12):2528. doi: 10.3390/molecules30122528.

Abstract

In this study, the characteristics of coal sorbents obtained by the activation of coke fines in an atmosphere of a mixture of gases CO and HO were studied. The experiment was conducted at various temperatures (700-900 °C), activation time (60-180 min), and constant CO supply rate (0.5 L/min). The main parameters such as tinder, ash content, bulk density, sorption capacity, total pore volume, and specific surface area were analyzed to assess the efficiency of the process. The results showed that samples of sorbents obtained at a temperature of 800 °C and an activation time of 120 min have the highest sorption capacity for iodine (up to 64.77%). The specific surface area of the obtained carbon sorbents was ~432.6 m/g. It was found that an increase in temperature to 900 °C leads to a decrease in sorption characteristics, which may be due to partial destruction of the porous structure of the material. It was also found that the duration of activation contributes to an increase in burn-off and ash content, which had an effect on sorption properties. Based on the data obtained, optimal conditions for the production of carbon sorbents have been established and a process model has been developed.

摘要

在本研究中,对在CO和H₂O混合气体气氛中对焦粉进行活化得到的煤吸附剂的特性进行了研究。实验在不同温度(700 - 900℃)、活化时间(60 - 180分钟)和恒定的CO供应速率(0.5 L/min)下进行。分析了诸如着火点、灰分含量、堆积密度、吸附容量、总孔体积和比表面积等主要参数,以评估该过程的效率。结果表明,在800℃温度和120分钟活化时间下获得的吸附剂样品对碘具有最高的吸附容量(高达64.77%)。所获得的碳吸附剂的比表面积约为432.6 m²/g。发现温度升高至900℃会导致吸附特性下降,这可能是由于材料多孔结构的部分破坏。还发现活化持续时间会导致烧失量和灰分含量增加,这对吸附性能有影响。基于所获得的数据,确定了生产碳吸附剂的最佳条件,并开发了一个过程模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a27d/12196482/55d8329ede88/molecules-30-02528-g001.jpg

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