Enhanced palm oil mill effluent treatment and biomethane production by co-digestion of oil palm empty fruit bunches with Chlorella Sp

Ahmad, A. and Shah, S.M.U. and Othman, M.F. and Abdullah, M.A. (2014) Enhanced palm oil mill effluent treatment and biomethane production by co-digestion of oil palm empty fruit bunches with Chlorella Sp. Canadian Journal of Chemical Engineering, 92 (9). pp. 1636-1642.

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Abstract

Palm oil mill effluent (POME) has high chemical oxygen demand (COD) and biological oxygen demand (BOD) and minerals such as nitrogen and phosphorous which can cause severe pollution to the environment and water resources. In this study, aerobic and anaerobic co-digestion of oil palm empty fruit bunches (OPEFB) with Chlorella sp. was developed for POME treatment and biomethane production. Higher removal efficiency (56-98) of COD, BOD, TOC, and TN after 3 and 7 days' treatment were achieved with microalgae than without microalgae. Using response surface methodology, the highest specific biogas production rate (0.128-0.129m3/kgCOD/day) and biomethane yield (5256.8-5295.8mL/L POME/day) were achieved with Chlorella sp. at 2mL/mL POME, and OPEFB at 0.12g/mL POME. Without both microalgae and OPEFB, the methane yield was 1.4-fold lower. The values for optimum conditions were predicted well by the model within 5 error. © 2014 Canadian Society for Chemical Engineering.

Item Type: Article
Impact Factor: cited By 24
Uncontrolled Keywords: Algae; Anaerobic digestion; Biochemical oxygen demand; Effluent treatment; Fruits; Methane; Microorganisms; Oil shale; Surface properties; Water pollution; Water resources, Aerobic; Biomethane; Chlorella sp; Palm oil mill effluents; Response surface methodology, Palm oil
Depositing User: Ms Sharifah Fahimah Saiyed Yeop
Date Deposited: 29 Mar 2022 05:00
Last Modified: 29 Mar 2022 05:00
URI: http://scholars.utp.edu.my/id/eprint/32173

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