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Titlebook: Handbook of Bioenergy; Bioenergy Supply Cha Sandra D. Eksioglu,Steffen Rebennack,Panos M. Pard Book 2015 Springer International Publishing

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Evaluating Supply Chain Design Models for the Integration of Biomass Co-firing in Existing Coal Plaonsidering the impact of emissions reduction, logistic-related costs, plant efficiency and incentive savings. The literature on mathematical programming models for co-firing can be grouped in two categories: supply chain network design and determination of optimal fuel combination. Our literature re
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Biofuel Lifecycle Energy and Environmental Impacts: The Challenges of Co-product Allocation,ts co-products by calculating that co-products substitute for other products. We illustrate the issues of co-product allocation with a case study of corn-derived ethanol, and show that the choice of allocation procedure and parameters can significantly influence the results. This is an open issue in
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Life-Cycle Assessment of Bio-Fuel Production Using Syngas from Biomass,n the mass balance and input/output of the two steps of the 10-ton biofuel production per day. By using OpenLCA, an open-source licensed LCA software package, and the NREL and databases, this LCA shows that the system producing the syngas from biomass has very similar emissions to natural gas and th
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The Role of Biofuels in Achieving a National Energy Independence Plan,he past four decades it has gained remarkable achievements in terms of economic development and energy independence. The aim of this study is to show how Brazil has achieved its goal of energy independence by implementing and updating its renewable fuel policies over the past 40 years. We adopt an e
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https://doi.org/10.1007/978-3-031-56572-4el sources and mitigate the harmful environmental impacts of these systems. One of the major challenges in establishing efficient renewable energy systems is the complex supply chain structure in an uncertain decision environment, various decisions to be made and different conflicting criteria/objec
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https://doi.org/10.1057/9781137318145ic challenges, characteristics and issues related to this type of model. The technological details, variability in supply and demand, and uncertainty in virtually all aspects of the supply chain require advanced modeling techniques. Our model provides a broad modeling approach that addresses the ent
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https://doi.org/10.1057/9780230375963io of eight types of biowastes, including crop residues, municipal wastes, and forest residues, is considered and a multilayer biofuel supply chain system is developed based on a systems optimization technique. A case study of converting lignocellulosic biomass to biofuel in California is presented.
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