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活性氮化硼的制备及其对烟气中锌、铜和镉的吸附特性

Preparation of Activated Boron Nitride and Its Adsorption Characteristics for Zn, Cu, and Cd in Flue Gas.

作者信息

Gai Anjun, Li Yanlong, Zhan Fengqi, Zhang Junzhong, Li Rundong

机构信息

College of Energy and Environment, Liaoning Province Key Laboratory of Clean Energy, Shenyang Aerospace University, Shenyang, Liaoning 110136, China.

出版信息

ACS Omega. 2023 Jul 22;8(30):27612-27620. doi: 10.1021/acsomega.3c03348. eCollection 2023 Aug 1.

Abstract

Developing non-carbon-based adsorbents is essential for removing heavy metals from post-incineration flue gas. In this study, a new high-temperature-resistant adsorbent-activated boron nitride (BN) was prepared using precursors combined with a high-temperature activation method. The adsorption characteristics of BN for Zn, Cu, and Cd in simulated flue gas and sludge incineration flue gas were investigated using gas-phase heavy metal adsorption experiments. The results showed that BN prepared at 1350 °C for 4 h had defect structures, abundant pores, functional groups, and a high specific surface area of 658 m/g. The adsorption capacity of BN in simulated flue gases decreases with increasing adsorption temperature, whereas it is always higher than that of activated carbon (AC). The total adsorption capacities for Zn, Cu, and Cd were the highest at 50 °C with 48.3 mg/g. BN had strong adsorption selectivity for Zn, with a maximum adsorption capacity of 54.45 mg/g, and its adsorption process occurred mainly on the surface. Cu and Cd inhibited Zn adsorption, leading to a decrease in the Zn adsorption capacity. In sludge incineration flue gas, BN can quickly reach adsorption equilibrium. The BN had a synergistic disposal capacity for heavy metals and fine particulate matter. The maximum adsorption capacity was reduced compared to the simulated flue gas adsorption capacity, which was 5.1 mg/g. However, BN still exhibited a strong adsorption selectivity for Zn, and its adsorption capacity was always greater than that of AC. The rich functional groups and high specific surface area enable BN to physically and chemically double-adsorb heavy metals.

摘要

开发非碳基吸附剂对于从焚烧后烟道气中去除重金属至关重要。在本研究中,采用前驱体结合高温活化法制备了一种新型耐高温吸附剂——活化氮化硼(BN)。通过气相重金属吸附实验研究了BN对模拟烟道气和污泥焚烧烟道气中锌、铜和镉的吸附特性。结果表明,在1350℃下制备4小时的BN具有缺陷结构、丰富的孔隙、官能团以及658 m/g的高比表面积。BN在模拟烟道气中的吸附容量随吸附温度升高而降低,但其始终高于活性炭(AC)。锌、铜和镉的总吸附容量在50℃时最高,为48.3 mg/g。BN对锌具有较强的吸附选择性,最大吸附容量为54.45 mg/g,其吸附过程主要发生在表面。铜和镉抑制锌的吸附,导致锌吸附容量下降。在污泥焚烧烟道气中,BN能快速达到吸附平衡。BN对重金属和细颗粒物具有协同处理能力。与模拟烟道气吸附容量相比,最大吸附容量降低,为5.1 mg/g。然而,BN对锌仍表现出较强的吸附选择性,其吸附容量始终大于AC。丰富的官能团和高比表面积使BN能够对重金属进行物理和化学双重吸附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab49/10399184/4d3394a74273/ao3c03348_0002.jpg

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