首页> 外文期刊>International Journal of Phytoremediation >Potential of Live Spirulina platensis on Biosorption of Hexavalent Chromium and Its Conversion to Trivalent Chromium
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Potential of Live Spirulina platensis on Biosorption of Hexavalent Chromium and Its Conversion to Trivalent Chromium

机译:活螺旋藻对六价铬的生物吸附及其转化为三价铬的潜力

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摘要

Microalga biomass has been described worldwide according their capacity to realize biosorption of toxic metals. Chromium is one of the most toxic metals that could contaminate superficial and underground water. Considering the importance of Spirulina biomass in production of supplements for humans and for animal feed we assessed the biosorption of hexavalent chromium by living Spirulina platensis and its capacity to convert hexavalent chromium to trivalent chromium, less toxic, through its metabolism during growth. The active biomass was grown in Zarrouk medium diluted to 50% with distilled water, keeping the experiments under controlled conditions of aeration, temperature of 30 degrees C and lighting of 1,800 lux. Hexavalent chromium was added using a potassium dichromate solution in fed-batchmode with the aim of evaluate the effect of several additions contaminant in the kinetic parameters of the culture. Cell growth was affected by the presence of chromium added at the beginning of cultures, and the best growth rates were obtained at lower metal concentrations in the medium. The biomass removed until 65.2% of hexavalent chromium added to the media, being 90.4% converted into trivalent chromium in the media and 9.6% retained in the biomass as trivalent chromium (0.931 mg.g(-1)).
机译:微藻生物质已根据其实现有毒金属生物吸附的能力而在世界范围内进行了描述。铬是最有毒的金属之一,可污染浅水和地下水。考虑到螺旋藻生物质在生产用于人类和动物饲料的补品中的重要性,我们评估了活螺旋藻对六价铬的生物吸收及其通过生长过程中的代谢将六价铬转化为毒性较小的三价铬的能力。活性生物质在用蒸馏水稀释至50%的Zarrouk培养基中生长,使实验保持在受控的通气条件,30摄氏度的温度和1,800 lux的光照条件下。使用重铬酸盐分批补料模式使用重铬酸钾溶液添加六价铬,目的是评估几种添加污染物对培养物动力学参数的影响。在培养开始时添加铬的存在会影响细胞的生长,并且在培养基中较低的金属浓度下可获得最佳的生长速率。去除生物质,直到65.2%的六价铬添加到介质中,其中90.4%转化为介质中的三价铬,而9.6%的生物质以三价铬(0.931 mg.g(-1))的形式保留。

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