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Full Description
Biomethane through resource circularity: Research, Technology and Practices is an invaluable resource for researchers, policy makers, implementers and PhD and Marsters level students in universities analyzing the present status, waste biomass including agro wastes, success in experimentation & commercial production, future needs and other relevant areas. While huge biomass is wasted by open burning, there is potential of energy generation that can be extracted from the biomass preventing GHG emission and creating business opportunities. Abundance and renewable bioenergy can contribute to a more secure, sustainable, and economically sound future through biomethanation process by selecting followings:
Supply chain sustainability of clean energy sources
Appropriate Anaerobic Digestion technology with different feedstock
Processes Parameter Optimization and best fit conditions,
Productivity, Purification of biogas and end use
Economic feasibility as business case, Commercialization, generating employment and Revitalizing rural economies
This book addresses most of the above issues in lucid manner by experts in the field from different countries which are helpful for the related stakeholders edited by experts in the field.
Contents
Section I: Biomethane: Energy, Society & Circularity Nexus. 1.Changing Focus on Bioenergy through resource circulation: A review for India and Europe. 2.Kinetic modeling of biogas production from organic fractions of Municipal solid waste and projection of energy and energy potentials. 3.Biomass supply chain for anaerobic methane generation: issues and concern. 4.Bioenergy in Germany- Status and Outlook. 5.Feasibility Study of Commercialized Self Circulating Biogas Generators: A Circular Economy Approach. Section II: Biomethane: Research, Development. 6.Improvement in biogas production by direct interspecies electron transfer technique: Current aspects and diverse prospects. 7.Biogas recovery from poultry and piggery waste: a review. 8.Mini Review: SSBR Design for Leaf Litter Digestion. 9.Anaerobic Co-Digestion of Drain Sludge with Fermentescible Municipal Waste of Sokode (Togo). 10.Effect of inoculum concentration and particle size of the substrate on anaerobic digestion of yard waste. 11.Mathematical Modelling of Aerobic Digestion in Activated Sludge Process. 12.Anaerobic co-digestion of landfill leachate and sewage sludge: Role of substrate ratio. Section III: Biomethane: Feedstock, Production, and application. 13.Economic aspects of Waste Valorization with the aid of Anaerobic Digestion and other technologies. 14.Biomass from Agricultural Wastes for Renewable Energy in the Philippines. 15.Utilization of Food processing Waste for Energy Generation. 16.Anerobic digestion of ocimum sanctum (holy basil): effect of inoculum and substrate concentration. 17.Assessment of Biogas Generation Potential of Mixed Fruits Solid Waste. 18.Agricultural waste to biogas energy: Design and simulation using the Anaerobic Digestion Model No. 1. 19.A Review of Operating Parameters, Pre-Treatment Process and Digester Design Effect on Biogas Production in Anaerobic Digestion. 20.Biogas potential of kitchen waste at Visva-Bharati, Santiniketan. 21.A source of Bio-gas Generation and sustainable development in rural India. 22.A study of the Processes, Parameters and Optimization of Anaerobic Digestion for food waste. Index.
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