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利用巨藻生物质吸附和零价铁纳米颗粒联合去除活性黑 5。

Combined strategy for removal of Reactive Black 5 by biomass sorption on Macrocystis pyrifera and zerovalent iron nanoparticles.

机构信息

Gerencia Química, Comisión Nacional de Energía Atómica, Av. Gral. Paz 1499, 1650, San Martín, Prov. de Buenos Aires, Argentina.

CINDEFI (CCT-La Plata, CONICET, UNLP), 50 y 115, La Plata, Argentina.

出版信息

J Environ Manage. 2018 Feb 1;207:70-79. doi: 10.1016/j.jenvman.2017.11.002. Epub 2017 Dec 12.

Abstract

Reactive Black 5, RB5, has been used as a model azo dye to evaluate the removal efficiency of sorption on Macrocystis pyrifera biomass (Mpyr) and commercial zerovalent iron nanoparticles (nZVI) in individual and combined treatments. The best conditions for the treatment with the isolated materials were first determined, and then, in series and combined treatments were performed under these conditions, achieving removal efficiencies higher than 80% of the initial dye concentration. Strengths and weaknesses of all removal strategies (individual, in series and combined) are analyzed regarding the application on real effluents. Mpyr efficiently adsorbed RB5, but also increased the total organic content by partial dissolution of components of the algal biomass. Removal experiments with commercial nZVI were also efficient but liberated Fe to the solution, and sulfanilic acid was observed after the treatment as a product of RB5 degradation. In contrast, after the Mpyr treatment, no sulfanilic acid was detected, suggesting that sulfanilic acid is efficiently adsorbed by the biomass. The best condition was the integrated use of Mpyr and nZVI, with a remarkable removal efficiency (69-80%) obtained after only 1 h of treatment. Finally, nZVI were successfully immobilized in Mpyr, and the hybrid material was used to remove RB5 in continuous flow experiments at pH 3, obtaining a removal capacity of 39.9 mg RB5 g after a total processed volume of 630 mL of [RB5] = 100 mg L.

摘要

活性黑 5(RB5)已被用作偶氮染料模型,以评估在单独和联合处理中,对巨藻生物质(Mpyr)和商业零价铁纳米颗粒(nZVI)的吸附去除效率。首先确定了用分离材料进行处理的最佳条件,然后在这些条件下进行系列和联合处理,实现了高于初始染料浓度 80%的去除效率。根据实际废水的应用情况,分析了所有去除策略(单独、串联和联合)的优缺点。Mpyr 有效地吸附 RB5,但也通过部分溶解藻生物质的成分增加了总有机含量。用商业 nZVI 进行的去除实验也很有效,但将 Fe 释放到溶液中,并且在处理后观察到磺胺酸作为 RB5 降解的产物。相比之下,在用 Mpyr 处理后,没有检测到磺胺酸,这表明磺胺酸被生物质有效吸附。最佳条件是 Mpyr 和 nZVI 的联合使用,仅在 1 小时的处理后即可获得 69-80%的显著去除效率。最后,nZVI 成功地固定在 Mpyr 中,并且在 pH 3 下的连续流动实验中使用该混合材料去除 RB5,在处理的总体积为 630 mL、[RB5] = 100 mg L 的条件下,获得了 39.9 mg RB5 g 的去除容量。

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