亚冠拟基氏菌对金属的生物修复潜力

IF 0.5 Q4 ENVIRONMENTAL SCIENCES
Mônica Ansilago, Franciéli Ottonelli, E. M. Carvalho
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引用次数: 1

摘要

微藻是单细胞生物,具有细胞成倍复制和对水中营养物的生物吸收能力的光合作用生物。本研究的目的是评价小头伪基氏微藻对金属和盐的生物修复能力。在这方面,对微藻对合成废水中金属和盐的还原进行了评估:(T1)培养基(对照);(T2)被氯化铝污染的培养基;(3)被硫酸亚铁污染的培养基;(T4)受硫酸锌污染的培养基;(T5)氯化铝、硫酸亚铁、硫酸锌复合污染的培养基。通过将悬浮微藻培养基与滤液培养基进行比较,对生物修复过程进行了评价。铁和锌金属以及氮和磷盐在过滤后的培养基中显示出耗尽值,这表明微藻对水的处理效率很高。所有处理的铝含量均低于检出限。微藻生物量累积值由大到小依次为氮、锌、铁、磷,说明微藻生物量对污染物有同化作用。此外,还观察到微藻的高生物量产量。在与金属结合的合成废水中证实了最高的产率,表明污染物之间的协同作用,这可能是减少对微藻的毒性作用的原因。这些结果表明,除了利用藻类生物量进行生物技术应用的可能性外,亚capitata微藻具有很高的生物修复潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metals bioremediation potential using Pseudokirchneriella subcapitata
Microalgae are unicellular organisms, photosynthesizers that present cell duplication exponentially and biosorption capacity of nutrients dissolved in water. The objective of this work was to evaluate the capacity of the microalga Pseudokirchneriella subcapitata for bioremediation of metals and salts. In this aspect, the reduction of the metals and salts in the synthetic effluents by the microalga P. subcapitata was evaluated: (T1) culture medium (control); (T2) culture medium contaminated with aluminum chloride; (T3) culture medium contaminated with ferrous sulfate; (T4) culture medium contaminated with zinc sulfate; (T5) culture medium contaminated with the combination of aluminum chloride, ferrous sulfate and zinc sulfate. The bioremediation process was evaluated by comparing culture media with suspended microalgae to a filtrate version of the same medium. Iron and zinc metals, as well as nitrogen and phosphorus salts, showed depleted values in the filtered medium, indicating efficiency in the treatment of water by microalgae. Aluminum content was below the limit of detection in all treatments. The cumulative values in the microalgae biomass were, in descending order: nitrogen, zinc, iron and phosphorus, thus indicating the assimilation of the contaminants in the algal biomass. In addition, high biomass production of the microalgae was observed. The highest production rate was verified in the synthetic effluent with the association of metals, indicating a synergy between contaminants, which was probably responsible for reducing the toxic effect on the microalgae. These results indicated high potential for bioremediation by microalga P. subcapitata, besides the possibility of using algal biomass for biotechnological applications.
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