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Bioenergy

Bioenergy. Instructor: Prof. Mainak Das, Department of Biological Sciences and Bioengineering, IIT Kanpur. This course aims to provide an overview of the basic process, by which solar energy is collected and converted to biomass, which is essentially, what we call bioenergy. During the discourse, emphasis will be given on different strategies to convert biomass to biofuels, the review of the available technologies and how these could meet the growing demand for energy in the future. (from nptel.ac.in)

Lecture 34 - Feedstock Properties


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Introduction to Bioenergy
Lecture 01 - Introduction
Lecture 02 - Oil Economy of the World
Lecture 03 - Unit of Energy and Introduction of Bioenergy
Lecture 04 - How Biomass is Formed on Earth
Lecture 05 - Road Map of Bioenergy
Basics of Biomass Technology and Biomass Resources
Lecture 06 - Basic Biomass Technology (Resources and Production)
Lecture 07 - Basics of Mechanism of Light Reaction
Lecture 08 - Exploration of Photosynthesis Process
Lecture 09 - In Photosynthesis Oxygen Comes from Water Molecules
Lecture 10 - Hill Reaction
Biofuels
Lecture 11 - Electron Transport Process in Light Reaction
Lecture 12 - How Carbon Dioxide Converted in Carbohydrate
Lecture 13 - From Carbon Dioxide to Two Molecules of 3 Phosphoglycerate by RUBISCO
Lecture 14 - RUBISCO Enzyme
Lecture 15 - Photorespiration and Calvin Cycle
Lecture 16 - Efficiency Calculation of Photosynthesis Process
Lecture 17 - C3 and C4 Plant Structure and Photosynthesis Process
Lecture 18 - Biomass Production System and their Categorization
Lecture 19 - Important Parameter for Selecting Biomass Groups
Lecture 20 - Factors Determining the Conversion Process I
Lecture 21 - Factors Determining the Conversion Process II
Lecture 22 - Factors Determining the Conversion Process III
Lecture 23 - Conversion Technology
Lecture 24 - Conversion Process (Combustion Process)
Lecture 25 - Pyrolysis Process
Biopower
Lecture 26 - Classification of Pyrolysis
Lecture 27 - Bio Oil - Solution for Thermal Instability and Corrosivity
Lecture 29 - Compression Ignition Engine
Lecture 30 - Carbonization - Preparation of Graphene like Molecule
Lecture 31 - Introduction of Gasification
Lecture 32 - Thermochemical Process of Gasification
Lecture 33 - Feedstock Treatment of Gasification
Lecture 34 - Feedstock Properties
Lecture 35 - Gasification Types - Up Drift Gasifier
Bioenergy Distribution and End Use for a Sustainable Future
Lecture 36 - Down Drift and Cross Flow Gasifier
Lecture 37 - Operation and Performance of Fixed Bed Gasifier
Lecture 38 - Fluidized Bed Gasification
Lecture 39 - Operation and Performance of Fluidized Bed Gasifier
Lecture 40 - Biological Root of Gasification and Summary of Course