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Algal biofuels --- Algal biofuels --- Economic aspects. --- Dewatering.
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"Edith Hemmrich, Mark Blaschitz and Jan Wurm discuss the world's first building equipped with an algae bioreactor facade ... Together with three other "Smart Material Houses", the prototypical building by SPLITTERWEK and Arup forms part of the International Building Exhibition (IBA) Hamburg. Microalgae are cultivated in glass photobioreactors to generate energy and, at the same time, to control light and shade. With its innovative floor plan typologies "Hamburg Apartment" and "Milan Apartment", the "Case Study House" presents contemporary refinements of Frank Lloyd Wright's "open plan", Adolf Loos's "Raumplan", and Margarete Shütte-Lihotzky's "Frankfurt Kitchen". The publication with recent essays and initial summary features detailed plans and visuals from the frist hand-drawn sketches, floor plans, cross-sections and details to a photo essay by the import Austrian architectural photographer Paul Ott"--Back cover.
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Algal biofuels --- Biomass energy --- Shipping
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Algal biofuels --- Algae --- Biomass --- Biomass energy
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Algal biofuels --- Algae biofuels --- Algae fuels --- Algal fuels --- Algae products --- Biomass energy --- Algal biofuels.
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Microalgal Biomass for Bioenergy Applications presents current methods, practical applications, and research trends on diverse biofuel products from microalgae. This comprehensive book provides analyses of microalgal biology, chemical and molecular engineering techniques to scale-up algal biomass processes and biofuels conversion, and economic feasibility of value-added bioenergy co-products from a variety of microalgal strains. Sections cover microalgal biomass availability, suitability, potential for biofuel applications, scientific and methodical aspects of biomass harvesting, sustainable and commercial applications of microalgal biofuels, including LCA, and the technological limitations and future perspectives on microalgal biofuels.
Biochemical engineering. --- Chemical engineering. --- Microbiology. --- Algal biofuels. --- Microalgae --- Industrial applications.
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"This unique compendium provides an insight into the role of emerging marine biorefineries based on macroalgae (seaweeds) in the development of a sustainable use of ocean resources for economic growth-blue economy. The useful reference text shows a complete picture on the motivation to develop seaweed technologies, and how the combination of biology, cultivation technologies and downstream processing with economics can address the social challenges through the blue growth"--
Marine algae --- Marine algae industry --- Marine algae culture --- Sustainable aquaculture --- Biochemical engineering --- Biotechnology --- Algal biofuels
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This book presents technoeconomic challenges, recent trends, and developments toward sustainable algal biofuels and biorefinery. The exponential increase in population and thus the demand for energy, the ever-rising threats to climate change with conventional fossil fuels consumption, fluctuations in fossil fuels price and geopolitical instability have made each and every country of the world to think over its energy independence and security by increasing its own domestic energy production and reducing dependence on scarce fossil fuels. The global need to shift towards a sustainable source of energy has led to the discovery of third and fourth generation biofuels, in which microalgae and their genetically modified strains have been exploited. However, these simple photosynthetic organisms are difficult to select and cultivate for the production of biodiesel. Genetic engineering has opened provisions for the introduction of desired traits to such useful strains. There are also scopes for designing of novel photobioreactors (PBRs) having strain-specific physicochemical parameters, adequate CO2 and nutrient supply, and so on. The role of microalgae in CO2 sequestration from the environment is well known fact. Wastewater treatment plants can be used a raceway pond for the microalgal biomass production, and thus, obtained biomass can be used for biofuels and biochemical production. Mathematical modelling can be used to understand the complex phenomena inside the photobioreactor, which can be a great help to overcome the limitations related to design and scale up of PBRs. Flow hydrodynamics in PBRs has significant effect on the microalgae growth. Computational fluid dynamics (CFD) can be used to study operating and geometry factors in PBRs that influence the flow dynamics, such as the inlet gas flow rate, mixing, mass transfer, reactor geometry. The use of artificial intelligence (AI) particularly artificial neural network model (ANN model), statistical and evolutionary learning-based techniques are some innovative approaches in manipulating and optimizing productivity and costs in algal biofuel production. This book is aimed to bring several aspects of algal biorefinery and microalgal biofuel production, challenges, and future perspective of microalgal biofuel production at a single place.
Algal biofuels. --- Biomass energy. --- Biotechnology. --- Renewable energy sources. --- Green chemistry. --- Biodiversity. --- Renewable Energy. --- Green Chemistry.
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