Kinetics of Cyanide Degradation by Azotobacter vinelandii

M. Manogaran, H. Yakasai, K. I. Karamba
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Abstract

Cyanide is extremely toxic to living organisms. It is utilized in industries for gold and silver extraction, pharmaceuticals, plastic processing, electroplating, and agricultural chemistry. Cyanide can persevere for a long time in the soil and its bio-degradation is the best economical practice. A formerly isolated cyanide-degrading bacterium Azotobacter vinelandii exhibited substrate inhibition to degradation rate. Significant degradation inhibition constants were achieved reliably by means of non-linear regression modeling of the degradation rate profile utilizing models for substrate inhibition like Haldane, Teissier-Edward, Monod, Yano and Koga, Luong, Edward (Webb) Luong and Aiba models. Aiba model was selected as the top model established on statistical assessments like root mean square error, adjusted coefficient of determination, bias factor and accuracy factor. The calculated values for the Aiba constants qmax (the maximum specific substrate degradation rate (h−1), Ks (concentration of substrate at the half maximal degradation rate (mM) and Ki (inhibition constant (mM)) were 0.060 (95% CI, 0.024 to 0.096), 0.302 (95% CI, 0.381 to 0.222) and 0.953 (95% CI, 0.568 to 1.338), respectively. The novel constants gotten from the modeling application can be valuable for advanced secondary modeling implicating the influence of media conditions and some other dynamics on cyanide biodegradation by this bacterium.
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维兰氏固氮菌降解氰化物动力学研究
氰化物对生物体剧毒。它被用于金银提取、制药、塑料加工、电镀和农业化学等行业。氰化物可以在土壤中长期存在,其生物降解是最经济的做法。一种以前分离的氰降解细菌,亚硝唑杆菌vinelandii表现出底物抑制降解率。利用Haldane、Teissier-Edward、Monod、Yano和Koga、Luong、Edward (Webb) Luong和Aiba模型等底物抑制模型对降解速率曲线进行非线性回归建模,获得了显著的降解抑制常数。通过对均方根误差、调整后的决定系数、偏倚因子、精度因子等统计评价,选择Aiba模型作为建立的top模型。Aiba常数qmax(最大特定底物降解率h′1)、Ks(最大一半降解率下底物浓度mM)和Ki(抑制常数mM)的计算值分别为0.060 (95% CI, 0.024 ~ 0.096)、0.302 (95% CI, 0.381 ~ 0.222)和0.953 (95% CI, 0.568 ~ 1.338)。从模拟应用程序中获得的新常数可以为高级二次模拟提供价值,该模拟涉及介质条件和其他动力学对该细菌氰化物生物降解的影响。
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