Biogas Production from Sugarcane Waste: Assessment on Kinetic Challenges for Process Designing
Производство биогаза из отходов сахарного тростника: оценка кинетических проблем проектирования процесса
2015-08-31
SCID: 54.1/br38k3q9
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anaerobic digestionbiochemical methane potentialcontinuous stirred-tank reactormethane yieldsugarcane waste
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Abstract (AI)
Biogas production from sugarcane waste has large potential for energy generation, however, to enable the optimization of the anaerobic digestion (AD) process each substrate characteristic should be carefully evaluated. In this study, the kinetic challenges for biogas production from different types of sugarcane waste were assessed. Samples of vinasse, filter cake, bagasse, and straw were analyzed in terms of total and volatile solids, chemical oxygen demand, macronutrients, trace elements, and nutritional value. Biochemical methane potential assays were performed to evaluate the energy potential of the substrates according to different types of sugarcane plants. Methane yields varied considerably (5-181 Nm³·tonFM(-1)), mainly due to the different substrate characteristics and sugar and/or ethanol production processes. Therefore, for the optimization of AD on a large-scale, continuous stirred-tank reactor with long hydraulic retention times (>35 days) should be used for biogas production from bagasse and straw, coupled with pre-treatment process to enhance the degradation of the fibrous carbohydrates. Biomass immobilization systems are recommended in case vinasse is used as substrate, due to its low solid content, while filter cake could complement the biogas production from vinasse during the sugarcane offseason, providing a higher utilization of the biogas system during the entire year.
Key Findings
1
Bagasse and straw require continuous stirred-tank reactors with hydraulic retention times exceeding 35 days for large-scale anaerobic digestion.
2
Filter cake can supplement vinasse digestion during the sugarcane offseason, increasing year-round utilization of biogas facilities.
3
Methane yields from sugarcane wastes varied widely, ranging from 5 to 181 Nm³·tonFM⁻¹, depending mainly on substrate properties and sugar or ethanol production processes.
4
Pretreatment is needed to improve degradation of the fibrous carbohydrates in bagasse and straw.
5
Vinasse’s low solids content makes biomass immobilization systems advisable when it is used as an anaerobic digestion substrate.
Research Object
Different types of sugarcane waste substrates (vinasse, filter cake, bagasse, straw) used for biogas production via anaerobic digestion
Research Subject
Kinetic behavior, methane yield, substrate characteristics, and process-design requirements for optimizing anaerobic digestion of sugarcane waste
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2015-08-31
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