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生物炭和高岭土填充床吸附柱对水相亚甲基蓝(MB)染料去除的性能和动态建模。

Performance and dynamic modelling of biochar and kaolin packed bed adsorption column for aqueous phase methylene blue (MB) dye removal.

机构信息

Department of Chemical Engineering, Curtin University, Perth, Australia.

出版信息

Environ Technol. 2019 Dec;40(28):3762-3772. doi: 10.1080/09593330.2018.1491065. Epub 2018 Jun 26.

DOI:10.1080/09593330.2018.1491065
PMID:29916334
Abstract

A practical continuous adsorption study in a packed-bed column was conducted by using two separate layers of kaolin and pine cone based biochar packed bed adsorbents for the removal of methylene blue (MB) dye from its aqueous solution. A series of column experiments were performed to determine the breakthrough curves (BTCs) by varying bed height (3-7 cm), inlet flow rate (13-17 ml/min) and initial dye concentration (50-150 mg/L). The Thomas, Yoon-Nelson, Bed Depth Service Time (BDST) and Dose response (DR) dynamic models were applied to column experimental data under various operational conditions to predict the column breakthrough curves (BTC) using both nonlinear regression and linear regression and to determine various characteristic parameters such as percentage removal of dye, breakthrough time, used bed length, mass transfer zone (MTZ) and dye adsorption density that are useful for process design. The MB dye adsorption was found to be most favourable under low flow rate, high adsorbent bed height and high initial dye concentrations. The experimental column breakthrough data were in good agreement with the various dynamic models and the results of various model characteristic parameters could be used to scale up the process to an actual industrial column operation. Also, this column study revealed the feasibility of pine cone biochar and kaolin adsorbents as alternative sustainable adsorbents for dye-bearing wastewater treatment.

摘要

采用两层分别由高岭土和松果基生物炭填充的吸附床,在填充床柱中进行了亚甲基蓝(MB)染料去除的实际连续吸附研究。通过改变床层高度(3-7 cm)、入口流速(13-17 ml/min)和初始染料浓度(50-150 mg/L),进行了一系列柱实验来确定穿透曲线(BTC)。在各种操作条件下,将 Thomas、Yoon-Nelson、Bed Depth Service Time(BDST)和 Dose response(DR)动力学模型应用于柱实验数据,使用非线性回归和线性回归来预测柱穿透曲线(BTC),并确定各种特征参数,如染料去除百分比、穿透时间、使用床层长度、传质区(MTZ)和染料吸附密度,这些参数对于工艺设计很有用。发现低流速、高吸附床层高度和高初始染料浓度有利于 MB 染料的吸附。实验柱穿透数据与各种动力学模型吻合良好,各种模型特征参数的结果可用于将该过程扩展到实际工业柱操作。此外,该柱研究表明松果基生物炭和高岭土吸附剂作为替代可持续吸附剂用于处理含染料废水是可行的。

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