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负载醋酸铵颗粒的竹基活性炭对低浓度气态甲醛的吸附性能及动力学

Adsorptivity and kinetics for low concentration of gaseous formaldehyde on bamboo-based activated carbon loaded with ammonium acetate particles.

作者信息

Duan Chaomin, Meng Mianwu, Huang Huang, Wang Heng, Ding Hua, Zhang Qi

机构信息

College of Environment and Resources, Guangxi Normal University, Guilin, 541004, China.

Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection, Ministry of Education, China, Guilin, 541004, China; College of Environment and Resources, Guangxi Normal University, Guilin, 541004, China.

出版信息

Environ Res. 2023 Apr 1;222:115364. doi: 10.1016/j.envres.2023.115364. Epub 2023 Feb 1.

Abstract

The highly promising formaldehyde (HCHO)-removing materials are essential for eliminating interior pollution to safeguard the public's health with increasing indoor HCHO contamination situations being recorded on a global scale. In the paper, bamboo charcoal (BC) was activated with boric acid to prepare bamboo-based activated carbon (BAC), and then impregnated with ammonium acetate solution to successfully develop porous adsorbent with ammonium acetate particles (N/BAC), which was applied to remove low concentration of HCHO at room temperature. The adsorption performance for HCHO was systematically investigated while the surface chemical properties and microstructure of the as-prepared adsorbents were described and analyzed. The specific surface area, total pore volume and microporous volume of N/BAC sample were 240.09 m/g, 0.27 cm/g and 0.12 cm/g, which increased by 42.40 m/g, 0.15 cm/g and 0.03 cm/g compared with BAC sample, respectively. The specific surface area and the microporous volume, as well as the content of oxygen- and nitrogen-containing functional groups of N/BAC sample were augmented by contrast with other samples, and numerous ammonium acetate particles were present on the surface. Precisely because of this, the N/BAC sample exhibited a high removal rate of 98.89%, which was 18.38% greater than that of BAC sample. A superior correlation coefficient (0.9999) from the experimental values of the kinetics and the fitted values of the pseudo-second-order kinetic model demonstrated that the adsorption process of HCHO on N/BAC sample was physical-chemical combined adsorption. The adsorption of HCHO on N/BAC sample was investigated under different humidity, and the results showed that the adsorbent yet had excellent adsorption capacity (87.93%) under RH 75%. Moreover, the N/BAC sample was renewable, and the removal rate still reached 82.81% after five cycles of regeneration. Therefore, the as-prepared adsorbent is an effective, economical and sustainable material, and could be used to remove HCHO from real contaminated indoor air.

摘要

随着全球范围内室内甲醛(HCHO)污染情况的不断增加,极具前景的甲醛去除材料对于消除室内污染、保障公众健康至关重要。本文中,竹炭(BC)用硼酸活化制备竹基活性炭(BAC),然后用醋酸铵溶液浸渍,成功制备出含有醋酸铵颗粒的多孔吸附剂(N/BAC),并将其用于室温下去除低浓度的HCHO。系统研究了其对HCHO的吸附性能,同时对制备的吸附剂的表面化学性质和微观结构进行了描述和分析。N/BAC样品的比表面积、总孔容和微孔容分别为240.09 m²/g、0.27 cm³/g和0.12 cm³/g,与BAC样品相比,分别增加了42.40 m²/g、0.15 cm³/g和0.03 cm³/g。与其他样品相比,N/BAC样品的比表面积、微孔容以及含氧和含氮官能团的含量均有所增加,且表面存在大量醋酸铵颗粒。正因为如此,N/BAC样品表现出98.89%的高去除率,比BAC样品高18.38%。动力学实验值与准二级动力学模型拟合值之间具有优异的相关系数(0.9999),表明HCHO在N/BAC样品上的吸附过程为物理化学联合吸附。研究了不同湿度条件下HCHO在N/BAC样品上的吸附情况,结果表明,在相对湿度75%时,该吸附剂仍具有优异的吸附容量(87.93%)。此外,N/BAC样品可再生,经过五次再生循环后,去除率仍达到82.81%。因此,制备的吸附剂是一种有效、经济且可持续的材料,可用于去除实际受污染的室内空气中的HCHO。

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