Guay R, Silver M, Torma A E
Biotechnol Bioeng. 1977 May;19(5):727-40. doi: 10.1002/bit.260190509.
The microbiological oxidation of ferrous iron in batch and continuous systems has been investigated in relation to uranium extraction from a low-grade ore by Thiobacillus ferrooxidans. The influence of the parameters, agitation, and aeration on oxygen saturation concentration, rate of oxygen mass transfer, and rate of ferrous iron oxidation was demonstrated. The kinetic values, Vmax and K were determined using an adapted Monod equation for different dilution rates and initial concentrations of ferrous iron. The power requirements for initial leaching conditions were also calculated. Uranium extraction as high as 68% has been realized during nine days of treatment. Regrinding the leach residue and its subsequent leaching yielded 87% uranium solubilization.
针对氧化亚铁硫杆菌从低品位矿石中提取铀的情况,对分批和连续系统中二价铁的微生物氧化进行了研究。研究了搅拌和曝气等参数对氧饱和浓度、氧传质速率和二价铁氧化速率的影响。使用修正的莫诺德方程,针对不同的稀释率和二价铁初始浓度,确定了动力学值Vmax和K。还计算了初始浸出条件下的功率需求。在九天的处理过程中,铀提取率高达68%。对浸出残渣进行再磨碎并随后浸出,铀的溶解率达到了87%。