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Aim of the study In this thesis, the recovery of biogas from Unsorted Municipal Solid Waste with high methane content was investigated. Special attention was given to unsorted municipal solid waste since its management is posing a big challenge for solid waste management authorities especially in developing countries (e.g. Accra, Ghana). Common solid waste management practice in most of the communities involves having the entire components of the waste mixed together and deposited in bins or on a bare ground at locations within communities and subsequently hauled to the dumpsite by the waste authority. In a laboratory study, a simulated waste was developed representing the real waste situation in Accra, Ghana to leach out the biodegradable organic fraction and subsequent biogas recovery. Method of investigation In order to optimize the biodegradation of Unsorted Municipal Solid Waste, the double-stage anaerobic digester with optimum design capability and with both intra and inter liquid recirculation, and microaerophilic hydrolysis conditions was employed. In order to biomethanize the waste, the following hypotheses were tested: · Effect of water flow rate (dilutions) on the extent of hydrolysis/ liquefaction. · Solid retention time and biodegradation. · Temperature on the extent of hydrolysis. · Effect of preprocessed feeding material on hydrolysis and gas yield. Results and technical applicability The results indicate that the various conditions tested are effective in determining the biogas production from the Unsorted Municipal Solid Waste. Following several runs for the optimization process, volume and mass reduction of 30±19% and 42±13% was achieved respectively. Importantly, almost 42% of the organic total solids reduction with equivalent of methane yield of 232±66 l CH4/kg OTS was obtained. A concept is developed for the application of the double-stage digester for the biomethanization of Unsorted Municipal Solid Waste. This concept involves the appropriate optimum conditions required for the biodegradation process. Finally the potential of using Unsorted Municipal Solid Waste for commercial biogas production was emphasized.