Gao Shan, Liao Yuanru, Zhang Yaoyu, Liu Yue, Wu Zhongbiao
Department of Environmental Engineering, Zhejiang University 866 Yuhangtang Road Hangzhou 310058 P. R. China
Zhejiang Provincial Engineering Research Center of Industrial Boiler & Furnace Flue Gas Pollution Control 866 Yuhangtang Road Hangzhou 310058 P. R. China.
RSC Adv. 2021 Sep 29;11(51):32152-32157. doi: 10.1039/d1ra04034k. eCollection 2021 Sep 27.
The dynamic adsorption/desorption performances of modified hierarchical USY zeolites treated with an ammonia solution (NHOH) at different concentrations were investigated using gas-phase toluene as an indicator. The characterization results indicated that the ammonia treatment could result in the expansion of microporous channels and the formation of a mesoporous structure without evident decrease in crystallinity. The experiment results regarding dynamic adsorption/desorption performances revealed that the mass transfer resistance of modified USY adsorbents were greatly reduced treating with NHOH. Among the modified samples, the 0.1 mol L NHOH treated USY adsorbent exhibited large adsorptive capacity and highest desorption rate, which show good cyclic performance that could preserve its adsorbent capacity after 20 cycles. In contrast, pristine USY samples had lost around 28% of the initial adsorption capacity after 20 cycles. Moreover, the NaOH-treated sample showed great crystallinity decline compared to the NHOH-treated samples due to excessive silicon atom leaching from the USY framework, and had lower adsorption capacity under humid conditions. Therefore, NHOH-modified USY zeolites could be promising adsorbents for the adsorption/desorption process of volatile organic compounds (VOCs).
以气相甲苯为指标,研究了不同浓度氨水溶液(NHOH)处理的改性分级USY沸石的动态吸附/解吸性能。表征结果表明,氨处理可导致微孔通道扩张并形成介孔结构,而结晶度无明显降低。关于动态吸附/解吸性能的实验结果表明,用NHOH处理后,改性USY吸附剂的传质阻力大大降低。在改性样品中,0.1 mol L NHOH处理的USY吸附剂表现出较大的吸附容量和最高的解吸率,具有良好的循环性能,在20次循环后仍能保持其吸附容量。相比之下,原始USY样品在20次循环后损失了约28%的初始吸附容量。此外,由于USY骨架中硅原子过度浸出,与NHOH处理的样品相比,NaOH处理的样品结晶度大幅下降,在潮湿条件下吸附容量较低。因此,NHOH改性的USY沸石有望成为挥发性有机化合物(VOCs)吸附/解吸过程的吸附剂。