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This paper reviews the most recent research and development in heterotrophic microalgae covering different carbon sources (wastewater, non-sugar materials, and lignocellulosic feedstocks), design of bioreactor, and production of liquid transportation fuels, in particular, biodiesel and bio-oils from algal biomass through biochemical or thermochemical pathways.
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There is a growing body of work that has demonstrated several genetic engineering strategies that, when coupled with an integrated approach to conversion, hold significant promise for the development of tailored feedstocks designed for biofuel production.
Techno-economic analysis for production process with feedstock design capacity of 100 kg/h showed that production costs varied from 0.06 to 0.11€/g soluble BG.
Within this contribution, a special emphasis was made on a broad-brush approach over the potential opportunities and drawbacks concerning the use of renewable feedstock in the design of some commonly used networks such as phenolics, epoxy, polyester and polyurethane resins.
His research included not only the synthesis of polymeric materials based on a sustainable feedstock, but also the design of polymers for biological applications.
Results of this study demonstrate that the bio-oil yields for hydrothermal liquefaction of sugars, proteins and lipids may be maximized by selective design of feedstock composition.
Polyethylene glycol (PEG) is a well-known component in design of feedstock formulations due to its low viscosity, solubility in the water, eco-friendly nature and commercial availability.
A proper understanding of the physical and the chemical properties of biomass feedstock is essential for the design of a biomass gasifier to be reliable.
A proper understanding of the physical and the chemical properties of biomass feedstock is essential for the design of a reliable biomass conversion system.This chapter discusses some important properties of biomass that are relevant to such processes.
The design of the trimodal powder feedstock and its feasibility for micro powder injection molding (μ-PIM) were investigated.
This paper, integrating the economic and environmental dimensions of sustainable development, develops a bi-objective 0 1 integer programming model for optimal locations and corresponding feedstock supply chain designs of biomass power plants.
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