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增强超声预处理软木生物炭的活化作用以实现从水中高效去除重金属。

Enhanced activation of ultrasonic pre-treated softwood biochar for efficient heavy metal removal from water.

机构信息

I2E3 - Institut d'Innovations en Écomatériaux, Écoproduits et Écoénergies, à base de biomasse, Université du Québec à Trois-Rivières, 3351, boul. des Forges, Trois-Rivières, Québec, G8Z 4M3, Canada.

I2E3 - Institut d'Innovations en Écomatériaux, Écoproduits et Écoénergies, à base de biomasse, Université du Québec à Trois-Rivières, 3351, boul. des Forges, Trois-Rivières, Québec, G8Z 4M3, Canada.

出版信息

J Environ Manage. 2021 Jul 15;290:112569. doi: 10.1016/j.jenvman.2021.112569. Epub 2021 Apr 14.

Abstract

Physical and chemical modification on biochar is an interesting approach to enhance the properties and make them potential candidates in adsorption of heavy metals from water. Studies have shown that ultrasound treatments as well as alkali activations on biochar has positive impact on adsorption behaviour of the material. Base activation on biochar derived from ultrasound pre-treated woodchips were studied to understand the influence of ultrasound pre-treatment on chemical modification of biochar and the adsorption properties emerged from it. 40 and 170 kHz ultrasound pre-treated softwood woodchips were subjected to laboratory scale pyrolysis and the resulted biochars were treated with NaOH. The physicochemical properties were examined, and the adsorption experiments revealed that ultrasound pre-treatment assisted biochars have better adsorption capacity as compared to untreated biochar samples after activation. 170 kHz pre-treated sample exhibited an equilibrium adsorption capacity of 19.99 mg/g which is almost 22 times higher than that of corresponding non-activated sample. The ultrasound pre-treated samples showed improved competitive adsorption behaviour towards copper ions in comparison with nickel or lead. The overall study suggests that ultrasound pre-treated biochars combined with alkali activation enhances the heavy metal removal efficiency and these engineered biochars can be used as an effective adsorbent in the field of wastewater treatment.

摘要

对生物炭进行物理和化学改性是一种增强其性能的有效方法,并使生物炭成为从水中吸附重金属的潜在候选材料。研究表明,超声处理以及对生物炭的碱活化对材料的吸附行为有积极影响。本研究对源于超声预处理木屑的碱活化生物炭进行了研究,以了解超声预处理对生物炭化学改性的影响,以及由此产生的吸附特性。对 40 和 170 kHz 的超声预处理软木木屑进行实验室规模的热解,然后用 NaOH 处理得到的生物炭。对其物理化学性质进行了研究,并通过吸附实验发现,与未经过处理的生物炭样品相比,经超声预处理后的生物炭经活化后具有更好的吸附能力。170 kHz 预处理后的样品的平衡吸附容量为 19.99 mg/g,几乎比相应的非活化样品高 22 倍。与镍或铅相比,超声预处理后的样品对铜离子表现出更好的竞争吸附行为。总的来说,这项研究表明,超声预处理生物炭与碱活化相结合可以提高重金属去除效率,这些工程化生物炭可作为废水处理领域的有效吸附剂。

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