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Microbial detoxification of cyanide solutions: a new biotechnological approach using algae

机译:氰化物溶液的微生物排毒:一种使用藻类的新生物技术方法

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The detoxification of cyanide by algae was examined by exposing cultured suspensions of Arthrospira maxima, Chlorella sp. and Scenedesmus obliquus in growth media to varying concentrations in short-time batch tests. In each experiment, the pH was adjusted to 10.3. The effect of pH, initial concentration of algal cells, temperature and cyanide concentration on microbial detoxification were examined. Under the experimental conditions, initial microbial detoxification rates of 50 and 100 mg/L free cyanide were observed for 25 h. A. maxima did not survive due to its sensitivity to the higher cyanide concentrations in the solutions. & obliquus removed the cyanide to a greater extent than did Chlorella sp. & obliquus detoxified 99 percent of the cyanide, while Chlorella sp. removed about 86 percent in the same time period. For the raised cyanide concentrations between 100 and 400 mg/L, S. obliquus was the only microorganism tested for 67 h. Kinetic studies of cyanide detoxification showed that microbial removal was linearly correlated with concentration.
机译:藻类对氰化物的解毒作用是通过暴露最大的小球藻(Arthrospira maxima)小球藻(Chlorella sp。)在短时的批量测试中,生长培养基中的斜角藻和斜角栅藻浓度不同。在每个实验中,将pH调节至10.3。研究了pH,藻类细胞初始浓度,温度和氰化物浓度对微生物排毒的影响。在实验条件下,观察到25小时的初始微生物解毒速率分别为50和100 mg / L的游离氰化物。由于其对溶液中较高氰化物浓度的敏感性,最大曲霉不能存活。斜线&斜线去除氰化物的程度比小球藻去除的程度大。 &斜解毒了99%的氰化物,而小球藻则解毒。在同一时期内删除了约86%的数据。对于在100至400 mg / L之间升高的氰化物浓度,斜生链球菌是唯一经过67小时测试的微生物。氰化物解毒的动力学研究表明,微生物去除与浓度呈线性关系。

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