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利用分离的土著细菌从废水中和土壤中去除和回收铝。

Aluminium removal and recovery from wastewater and soil using isolated indigenous bacteria.

机构信息

Department of Environmental Engineering, Faculty of Civil, Environmental and Geo Engineering, Institut Teknologi Sepuluh Nopember, Kampus ITS Sukolilo, Surabaya, 60111, Indonesia.

Study Program of Waste Treatment Engineering, Department of Marine Engineering, Politeknik Perkapalan Negeri Surabaya, Jalan Teknik Kimia, Kampus ITS Sukolilo, Surabaya, 60111, Indonesia.

出版信息

J Environ Manage. 2019 Nov 1;249:109412. doi: 10.1016/j.jenvman.2019.109412. Epub 2019 Aug 21.

Abstract

This paper elucidates the capability of isolated indigenous bacteria to remove aluminium from wastewater and soil. Two indigenous species of Brochothrix thermosphacta and Vibrio alginolyticus were isolated from an aluminium-contaminated site. These two species were used to treat aluminium-containing wastewater and contaminated soil using the bioaugmentation method. B. thermosphacta showed the highest aluminium removal of 57.87 ± 0.45% while V. alginolyticus can remove aluminium up to 59.72 ± 0.33% from wastewater. For aluminium-contaminated soil, B. thermosphacta and V. alginolyticus, showed a highest removal of only 4.58 ± 0.44% and 5.48 ± 0.58%, respectively. The bioaugmentation method is more suitable to be used to treat aluminium in wastewater compared to contaminated soil. The produced biomass separation after wastewater treatment was so much easier and applicable, compared to the produced biomass handling from contaminated soil treatment. A 48.55 ± 2.45% and 40.12 ± 4.55% of aluminium can be recovered from B. thermosphacta and V. alginolyticus biomass, respectively, with 100 mg/L initial aluminium concentration in wastewater.

摘要

本文阐述了分离的土著细菌从废水中和土壤中去除铝的能力。从受铝污染的地点分离出两种土著细菌,嗜热放线菌(Brochothrix thermosphacta)和溶藻弧菌(Vibrio alginolyticus)。这两种细菌被用于使用生物增强方法处理含铝废水和污染土壤。嗜热放线菌表现出最高的铝去除率,为 57.87±0.45%,而溶藻弧菌可以从废水中去除高达 59.72±0.33%的铝。对于受铝污染的土壤,嗜热放线菌和溶藻弧菌的最高去除率分别仅为 4.58±0.44%和 5.48±0.58%。与污染土壤相比,生物增强方法更适合用于处理废水中的铝。与从污染土壤处理中产生的生物量处理相比,废水处理后产生的生物量分离更容易且适用。在初始铝浓度为 100mg/L 的废水中,分别可以从嗜热放线菌和溶藻弧菌生物量中回收 48.55±2.45%和 40.12±4.55%的铝。

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