Growth Inhibition Kinetics of Acetonitrile Biodegradation

A. Abubakar, H. Yakasai
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Abstract

As the most pristine and one of the biggest continents in the southern hemisphere, Antarctica has over the decade accumulated hydrocarbon pollution mainly due to human activities related to logistics and transportation in this area. Acetonitrile spills caused by the sinking of the cargo ships call for research into acetonitrile-degrading microorganisms in the form of bioremediation in order to be ready for disasters in the future. The efficiency of a previously isolated acetonitrile-degrading sludge consortium as a bioremediation technique has been demonstrated. However, as the acetonitrile concentration rises, its growth was severely restrained. Acetonitrile's inhibitory effect on this consortium's development rate is modeled in this work using the Luong, Aiba, Haldane, Hans-Levenspiel, Yano, Teissier and Monod models. Statistical evaluations indicated that the most suitable kinetic model to fit the growth rate on acetonitrile was the Teissier-Edwards’s model. The computed values for the Teissier constants like maximal reduction rate (max), half saturation constant for maximal degradation (Ks) and half inhibition constant (Ki) were 0.934 1/H (95% confidence interval 0.301 to 1.567), 1.504 g/L (95% confidence interval 0.877 to 2.131), and 4.574 g/L (95% confidence interval 2.764 to 6.383), respectively. The parameters obtained from this study will be beneficial in acetonitrile biodegradation works.
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乙腈生物降解的生长抑制动力学
作为南半球最原始和最大的大陆之一,南极洲在过去十年中积累了碳氢化合物污染,主要是由于与该地区物流和运输有关的人类活动。由于货船沉没造成的乙腈泄漏,需要对乙腈降解微生物进行生物修复研究,为今后的灾害做好准备。以前分离的乙腈降解污泥联合体作为一种生物修复技术的效率已经被证明。但随着乙腈浓度的升高,其生长受到严重抑制。乙腈对该联盟发育速率的抑制作用在本工作中使用Luong, Aiba, Haldane, Hans-Levenspiel, Yano, Teissier和Monod模型进行了建模。统计评价表明,最适合于乙腈上生长速率的动力学模型是Teissier-Edwards模型。最大还原速率(max)、最大降解半饱和常数(Ks)和半抑制常数(Ki)的Teissier常数计算值分别为0.934 1/H(95%置信区间0.301 ~ 1.567)、1.504 g/L(95%置信区间0.877 ~ 2.131)和4.574 g/L(95%置信区间2.764 ~ 6.383)。所得参数对乙腈的生物降解具有一定的指导意义。
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