Biodegradation and optimization of bilge water in a sequencing batch reactor using response surface methodology.

Jianqiang Shi, Guichen Zhang, Shaojun Zhang, Run Lu, Mengwei Chen

Journal: Chemosphere 2022;307(Pt 1):135654

PMID: 35863410

Abstract

Bilge water is a significant source of pollution in the marine environment and has captured widespread international attention. In this study, a sequencing batch reactor (SBR) combined with strain S2 identified as Bacillus licheniformis was employed to assess the biodegradation of Chemical Oxygen Demand (COD) from bilge water. The influencing variables such as temperature, pH level and inoculum concentration on the performance SBR system were optimized by utilizing response surface methodology (RSM). The experimental results showed that the maximum COD removal of 77.81% was reached at the optimal SBR operation conditions of temperature 35.44 °C pH 8.13, and inoculum concentration 31.47 mL. In the practical application of SBR, it was found that the decrease in hydraulic retention time (HRT) was accompanied by a decrease in COD degradation rate. The biodegradation kinetics of COD in bilge water were well fitted with the first-order equation with a higher R value of 0.98106. In conclusion, COD in bilge water can be efficiently biodegraded by SBR under the optimization of RSM.

Copyright © 2022 Elsevier Ltd. All rights reserved.

Address: College of Merchant Marine, Shanghai Maritime University, Shanghai, 201306, China. Electronic address: [email protected].; College of Merchant Marine, Shanghai Maritime University, Shanghai, 201306, China.; School of Navigation and Shipping, Shandong Jiaotong University, Weihai, 264200, China.

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