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首页> 外文期刊>Applied and Environmental Microbiology >Microbiological oxidation of synthetic chalcocite and covellite by Thiobacillus ferrooxidans.
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Microbiological oxidation of synthetic chalcocite and covellite by Thiobacillus ferrooxidans.

机译:氧化亚铁硫杆菌对合成球晶和贝壳石的微生物氧化。

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The microbiological oxidation of synthetic chalcocite and covellite has been investigated using an adapted strain of Thiobacillus ferrooxidans. Biodegradation of chalcocite was found to be 90 to 100% and that of covellite 45 to 60%. Optimum conditions for the oxidation of chalcocite were: pH, 1.7 to 2.3; temperature, 35 C; and ferric iron concentration in the range of 0.004 to 0.01 M. For covellite, the optimum conditions were: pH 2.3; temperature, 35 C; and ferric iron concentration in the range of 0.004 to 0.02 M. The energies of activation were determined to be 16.3 kcal (ca. 6.8 X 10(4) J) per mol and 11.7 kcal (ca. 4.8 X 10(4) J) per mol for chalcocite and covellite, respectively.
机译:已使用合适的亚铁氧化硫杆菌菌株研究了合成菱锰矿和贝壳沸石的微生物氧化。发现方铅矿的生物降解率为90%至100%,而鹅卵石的生物降解为45%至60%。硫矾石氧化的最佳条件是:pH为1.7至2.3; pH为1.7至2.3。温度35℃;对于Covellite而言,最佳条件是:pH值为2.3;铁的浓度为0.004至0.01M。温度35℃;铁的浓度范围为0.004至0.02M。活化能经测定为每摩尔16.3 kcal(约6.8 X 10(4)J)和11.7 kcal(约4.8 X 10(4)J)。每摩尔分别为方铅矿和velovlite。

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