Department of Chemical Engineering, Dr. B.R. Ambedkar National Institute of Technology, Jalandhar, India.
Department of Biotechnology, New Horizon College of Engineering, Bangalore, India.
Environ Technol. 2022 Jun;43(16):2430-2442. doi: 10.1080/09593330.2021.1882582. Epub 2021 Feb 11.
In the present study, removal of pollutants in greywater was investigated using a novel bacterial-fungal consortium. Response surface methodology was used for the optimization of process variables like pH, temperature, inoculum size, and Carbon/Nitrogen (C/N ratio) for degradation of pollutants. Experiments were based on Box Behnken statistical design and the results show a good fit with the quadratic model, coefficient of determination () value of 0.9499. The reliability of the model was established by various statistical parameters like lack of fit, pure error, and residual sum of squares. The optimized conditions for maximum reduction in chemical oxygen demand, oil & grease and sulphate were found to be 78.7%, 82.6% and 89.7%, respectively after 96 h of incubation of the reaction mixture at pH 7; temperature 35°C; inoculum size 150 µl and C/N ratio of 1:2. Our results clearly demonstrate that the developed novel bacterial-fungal consortium can be a cost-effective, safe, and environment-friendly alternative for remediation of greywater.
在本研究中,使用新型细菌-真菌联合体来研究去除灰水中的污染物。采用响应面法对工艺变量(如 pH 值、温度、接种量和碳/氮 (C/N) 比)进行优化,以降解污染物。实验基于 Box-Behnken 统计设计,结果表明该模型与二次模型拟合良好,决定系数 () 值为 0.9499。通过缺乏拟合、纯误差和残差平方和等各种统计参数来确定模型的可靠性。在反应混合物在 pH 值为 7、温度为 35°C、接种量为 150µl 和 C/N 比为 1:2 的条件下孵育 96 小时后,发现化学需氧量、油和油脂以及硫酸盐的最大去除率分别为 78.7%、82.6%和 89.7%。我们的研究结果清楚地表明,开发的新型细菌-真菌联合体可以作为修复灰水的一种具有成本效益、安全且环保的替代方法。