Unveiling the adsorption mechanisms and key influencing factors of cyclic acetals on powdered activated carbon.

IF 2.2 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Qianxi Wu, Tianyang Zhang, Renjie Pan, Zhu Peng, Hengxuan Zhao, Jian Lu, Zhengyu Dong, Chao Zeng, Mohamed Gamal El-Din, Bin Xu
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引用次数: 0

Abstract

Cyclic acetals (CAs), such as 2-ethyl-5,5-dimethyl-1,3-dioxane (2-EDD) and 2-ethyl-4-methyl-1,3-dioxolane (2-EMD), are emerging odourants in drinking water, raising significant concerns due to their extremely low odour thresholds, high stability, and potential health risks. This study investigated 2-EDD and 2-EMD adsorption performance on six powdered activated carbons (PACs). The adsorption isotherms fitted well with Freundlich (R2 = 0.907∼0.996) and Temkin models (R2 = 0.874-0.997). The adsorption efficiency of 2-EDD (the Freundlich constant KF = 0.0847-0.802) was higher than 2-EMD (KF = 0.0435-0.239), because of its greater molecular mass and higher hydrophobicity. All PACs reached equilibrium in about 120 minutes, and the adsorption kinetics fitted better with the pseudo-second-order model (R2 = 0.920∼0.997), indicating that chemical adsorption significantly contributed to CAs' adsorption. The adsorption rates for 2-EDD (k2 = 0.123-1.235) were lower compared to 2-EMD (k2 = 0.245-4.770). Results from correlation analysis revealed that average pore size, pore volume, and mesoporous fraction were the key PAC properties in controlling CAs' adsorption. Diffusion-chemisorption model, Weber and Morris intraparticle diffusion kinetic model, and Boyd kinetic model were employed to elucidate the adsorption mechanism. The results indicated that the two CAs were interacted mainly through chemical adsorption, with film diffusion serving as the step controlling the rate. PACs exhibited effective performance under neutral to slightly alkaline conditions, as well as in source water and tap water. Meanwhile, 20 mg·L-1 PAC could reduce CAs' concentration from 40 ng·L-1 to 5 ng·L-1. This study provides a benchmark for selecting effective carbon to address odour issues caused by CAs.

揭示了环缩醛在粉末活性炭上的吸附机理及主要影响因素。
环缩醛(CAs),如2-乙基-5,5-二甲基-1,3-二恶烷(2-EDD)和2-乙基-4-甲基-1,3-二恶烷(2-EMD),是饮用水中的新兴气味剂,由于其极低的气味阈值、高稳定性和潜在的健康风险而引起了重大关注。研究了6种粉状活性炭(PACs)对2-EDD和2-EMD的吸附性能。吸附等温线符合Freundlich模型(R2 = 0.907 ~ 0.996)和Temkin模型(R2 = 0.874 ~ 0.997)。2-EDD的吸附效率(Freundlich常数KF = 0.0847-0.802)高于2-EMD (KF = 0.0435-0.239),这是由于其更大的分子量和更高的疏水性。所有pac在120 min左右达到平衡,吸附动力学更符合拟二阶模型(R2 = 0.920 ~ 0.997),表明化学吸附对CAs的吸附有显著的促进作用。2-EDD (k2 = 0.123 ~ 1.235)的吸附率低于2-EMD (k2 = 0.245 ~ 4.770)。相关分析结果表明,平均孔径、孔体积和介孔分数是影响活性炭吸附性能的关键因素。采用扩散-化学吸附模型、Weber和Morris颗粒内扩散动力学模型和Boyd动力学模型对吸附机理进行了分析。结果表明,两种CAs的相互作用主要通过化学吸附进行,膜扩散是控制反应速率的步骤。在中性至微碱性条件下,以及在水源和自来水中,pac均表现出良好的性能。同时,20 mg·L-1 PAC可使CAs浓度从40 ng·L-1降低到5 ng·L-1。该研究为选择有效碳来解决由ca引起的气味问题提供了基准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Technology
Environmental Technology 环境科学-环境科学
CiteScore
6.50
自引率
3.60%
发文量
0
审稿时长
4 months
期刊介绍: Environmental Technology is a leading journal for the rapid publication of science and technology papers on a wide range of topics in applied environmental studies, from environmental engineering to environmental biotechnology, the circular economy, municipal and industrial wastewater management, drinking-water treatment, air- and water-pollution control, solid-waste management, industrial hygiene and associated technologies. Environmental Technology is intended to provide rapid publication of new developments in environmental technology. The journal has an international readership with a broad scientific base. Contributions will be accepted from scientists and engineers in industry, government and universities. Accepted manuscripts are generally published within four months. Please note that Environmental Technology does not publish any review papers unless for a specified special issue which is decided by the Editor. Please do submit your review papers to our sister journal Environmental Technology Reviews at http://www.tandfonline.com/toc/tetr20/current
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