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Valorization of Microalgae Biomass by Its Use for the Removal of Paracetamol from Contaminated Water

机译:微藻生物质的增值作用,用于从污染水中去除扑热息痛

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Microalgae are aquatic photosynthetic prokaryotic or eukaryotic microorganisms which cultivation for the fixation of CO 2 and the production of biofuels has received large attention. However, the sustainable development of an algal biorefinery is still a challenge. In this context, the valorization of microalgae biomass for a wastewater adsorptive treatment may be an option to explore. Recently, the presence of emerging contaminants (ECs) in natural waters and the associated risks have led to a great concern, especially in the case of pharmaceuticals. In the present work, the elimination of paracetamol from water by biosorption onto microalgae, namely Synechocystis sp., has been studied. Kinetic and equilibrium parameters have been determined and compared with those obtained when using a commercial activated carbon under the same experimental conditions. Although the adsorption kinetics are very similar onto both materials, at the equilibrium, the Langmuir maximum capacity of the activated carbon (278 mg g ?1 ) is five times higher than that of Synechocystis sp. (53 mg g ?1 ). In any case, it must be considered that the utilization of microalgae may be considered an environmentally friendly process with important associated savings.
机译:微藻是水生光合原核或真核微生物,其用于固定CO 2和生产生物燃料的栽培已引起广泛关注。但是,藻类生物精炼厂的可持续发展仍然是一个挑战。在这种情况下,用于废水吸附处理的微藻生物质的增值可能是探索的选择。近来,天然水中存在的新兴污染物(EC)及其相关风险引起了人们的极大关注,尤其是在药物方面。在目前的工作中,已经研究了通过生物吸附到微藻即Synechocystis sp。上从水中消除扑热息痛的方法。确定了动力学和平衡参数,并将其与在相同实验条件下使用市售活性炭时获得的参数进行了比较。尽管两种材料的吸附动力学非常相似,但在平衡状态下,活性炭的朗缪尔(Langmuir)最大容量(278 mg g?1)比Synechocystis sp。高出5倍。 (53mg g±1)。在任何情况下,都必须考虑到微藻的利用可以被认为是对环境无害的过程,并具有重要的节约作用。

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