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Microalgal consortia differentially modulate progressive adsorption of hexavalent chromium

机译:微藻财团差异调节六价铬的逐步吸附

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摘要

A set of experiments was conducted to provide significant insights of micro-algal consortia regarding chromium adsorption. Four monocultures; Scenedesmus dimorphus, Chlorella sp., Oscillatoria sp., and Lyngbya sp., and their synthetic consortia were evaluated initially for chromium bio-adsorption at four different regimes of hexavalent chromium i.e. 0.5, 1.0, 3.0 and 5.0 ppm. Based on findings, only 1.0 and 5.0 ppm were considered for future experiments. Consequently, three different types of monoculture and consortia cells namely; live cells, heat-killed cells, and pre-treated cells were prepared to enhance their adsorption potential. Maximal adsorption of 112% was obtained at the dose of 1.0 ppm with 0.1% SDS pre-treated consortia cells over live consortia cells. In support, atomic absorption spectroscopy, laser induced breakdown spectroscopy, pulse amplitude modulated chlorophyll fluorescence, and scanning electron microscopy were performed to assess the structural and functional changes within consortia and their utilization in mitigation of elevated chromium levels.
机译:进行了一组实验,以提供有关微藻财团对铬吸附的重要见解。四种单一文化;最初评估了吗啡,小球藻,小球藻和Lyngbya菌及其合成菌群在六种六价铬的四种不同浓度下的铬生物吸附,即0.5、1.0、3.0和5.0 ppm。根据发现,将来的实验仅考虑1.0和5.0 ppm。因此,三种不同类型的单一培养和联合体细胞分别是:制备活细胞,热杀死的细胞和预处理的细胞以增强其吸附潜力。在1.0 ppm的剂量下,0.1%SDS预处理的财团细胞比活的财团细胞获得112%的最大吸附。在支持下,进行了原子吸收光谱法,激光诱导击穿光谱法,脉冲幅度调制叶绿素荧光法和扫描电子显微镜法,以评估财团内部的结构和功能变化及其在缓解铬含量升高中的利用。

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