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4 edition of Algal biomass technologies, an interdisciplinary perspective found in the catalog.

Algal biomass technologies, an interdisciplinary perspective

Algal biomass technologies, an interdisciplinary perspective

proceedings of a workshop on the present status and future directions for biotechnologies based on algal biomass production, April 5-7, 1984, University of Colorado, Boulder

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Published by J. Cramer in Berlin .
Written in English

    Subjects:
  • Algae culture -- Congresses.,
  • Algae products -- Congresses.,
  • Algae -- Congresses.,
  • Energy crops -- Congresses.,
  • Algae as food -- Congresses.

  • Edition Notes

    Includes bibliographies and index.

    Statementedited by William R. Barclay and Robins P. McIntosh.
    SeriesBeiheft zur Nova Hedwigia -- heft 83., Beihefte zur Nova Hedwigia -- Heft 83.
    ContributionsBarclay, William R., McIntosh, Robins P.
    The Physical Object
    Paginationviii, 273 p. :
    Number of Pages273
    ID Numbers
    Open LibraryOL17916143M
    ISBN 103443510035

    This book discusses the biorefinery of biomass feedstocks. In-depth chapters highlight the scientific and technical aspects and present a techno-economic analysis of such systems. By using a TEA approach, the authors present feasible pathways for conversion of biomass.   The book covers all aspects of fermentation technology such as principles, reaction kinetics, scaling up of processes, and applications. The 20 chapters written by subject matter experts are divided into two parts: Principles and Applications.

    @article{osti_, title = { National Algal Biofuels Technology Review}, author = {Barry, Amanda and Wolfe, Alexis and English, Christine and Ruddick, Colleen and Lambert, Devinn}, abstractNote = {The Bioenergy Technologies Office (BETO) of the U.S. Department of Energy (DOE), Office of Energy Efficiency and Renewable Energy, is committed to advancing the vision of a viable. Book Description. The newest addition to the Green Chemistry and Chemical Engineering series from CRC Press, Biofuels and Bioenergy: Processes and Technologies provides a succinct but in-depth introduction to methods of development and use of biofuels and bioenergy. The book illustrates their great appeal as tools for solving the economic and environmental challenges associated with .

    A systems perspective considering the nexus of technology, economic, environment and policy is at the heart of our research program. Our research is focused on understanding the linkages at the systems level to perform integrated analysis and developing sustainable technologies and resilient strategies.   ABSTRACTThe present article deals with the production of bio-oil from algal biomass as well as the preparation and characterization of noble CaO-based heterogeneous catalyst for upgradation of bio-oil to biodiesel. The bio-oil has been extracted from algal biomass using hexane as solvent in soxhlet apparatus and upgraded to biodiesel by transesterification using noble CaO-based Cited by: 2.


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Algal biomass technologies, an interdisciplinary perspective Download PDF EPUB FB2

Algal biomass technologies: an interdisciplinary perspective: proceedings of a workshop on the present status and future directions for biotechnologies based an interdisciplinary perspective book algal biomass production, April, University of Colorado, Boulder.

Abstract. Ozonolysis has proved its efficiency as a lignocellulosic biomass pretreatment, improving the production of second-generation biofuels such as ethanol, methane and hydrogen.

Ozone is a powerful oxidant, highly reactive toward compounds with high electron densities, such as lignin. Algal biomass is rich in nutrients, especially nitrogen and phosphorus. Therefore a process to recycle algal waste after lipid extraction is desirable.

Algal biomass technologies Anaerobic digestion may be suitable for this because the biotechnological process can mineralize algal waste containing organic nitrogen and phosphorus. The role of algal biofilm based technology in wastewater treatment and transforming waste into bio-products is discussed, and remediation of sewage water through algae is assessed.

The book also describes the production of biohydrogen, bio-oil, biodiesel; and the major bottlenecks in their usage. In order to exchange and discuss the latest achievements towards the realisation of the above described technology, scientists, algaeneers and practitioners gathered for the 1st IWA International Conference on Algal Technologies for Wastewater Treatment and Resource Recovery at the premises of IHE Delft in the Netherlands, on 16–17 March Cited by: 2.

In book: Sustainable Biofuel and Biomass, pp Algal Biomass and Biodiesel Production. T o enable large-scale production of algae biomass, technologies should. An interdisciplinary team of researchers has now deciphered the degradation pathway of algae biomass.

Using this knowledge, algae could soon become an important renewable biomaterial. Even the production of bioplastics should become possible. Algae are multifarious plant organisms.

There are two main cultivation systems used for the production of algal biomass: Open Ponds The average volumetric yield for this system lies between and g/L per.

This book provides data-based scientific information on the most advanced and innovative pretreatment of lignocellulosic and algal biomass for further processing. Pretreatment of biomass is considered one of the most expensive steps in the overall processing in a biomass-to-biofuel program.

Algae Biomass Organization (ABO) is a non-profit organization promoting the development of viable commercial markets for renewable and sustainable commodities derived from algae. Polne-Fuller M, Saga N, Gibor A () Algal cell, callus and tissue culture and selection of algal strains. In: Barclay WR, McIntosh RP (eds) Algal biomass technologies — an interdisciplinary perspective.

Nova Hedwigia 30–36 Google ScholarCited by: 8. Algal Research is an international phycology journal covering all areas of emerging technologies in algae biology, biomass production, cultivation, harvesting, extraction, bioproducts, biorefinery, engineering, and econometrics.

Microalgal Production for Biomass and High-Value Products covers the field from a variety of perspectives with 14 chapters contributed by recognized academic experts and industrial practitioners. The book presents the latest technologies and innovations in algal biomass production, from cultivation in open ponds and photobioreactors, to strain Format: Hardcover.

In recent years, the algae-bacteria symbiotic system has played a significant role in the sustainable development of wastewater treatment. With the continuous expansion of research outputs, publications related to wastewater treatment via algal-bacterial consortia appear to be on the rise.

Based on SCI-EXPANDED database, this study investigated the research activities and tendencies of algae Cited by: 4. In W. Barclay & R. Mcintosh (eds), Algal Biomass Technologies: An Interdisciplinary Perspective, Workshop on the Present Status and Future Directions for Biotechnologies Based on Algal Biomass Production, Boulder, Colo., USA, Apr.

5–7, Cited by: Algae are aquatic and land plant-like organisms that can be used for a huge range of food products and sustainable food production pipelines.

They are one of the most promising and emerging trends for the food industry - join one of our short professional development courses to find out more about how these amazing and versatile organisms can help your research and business.

3 Pathways for Algal Biofuel Production. The set of processes that lead from algae cultivation to collection and harvest, and finally to fuel conversion is termed the pathway for algal biofuel chapter describes several contrasting pathways that lead from algae cultivation to.

Algal Biology - Molecular Engineering and Synthetic Biology of Algae for Biofuels and High Value Products. Algal Biology - Biodiversity and Bioprospecting of Algae for Biofuels and High Value Products.

Algal Biotechnology - Metabolic Regulation of Algae for Biofuels and High Value Products. As a result of algae’s promise as a renewable energy feedstock, numerous studies have used Life Cycle Assessment (LCA) to quantify the environmental performance of algal biofuels, yet there is no consensus of results among them.

Our work, motivated by the lack of comprehensive uncertainty analysis in previous studies, uses a Monte Carlo approach to estimate ranges of expected values of LCA Cited by: PMF TECHNOLOGY BENEFITS ALGAL PROCESSES. INSTALLATION OF WORLD'S FIRST EVER PMF FACILITY TO A RACEWAY ALGAL POND AT BDU, INDIA.

PERC in collboration with Madras Institute of Algology, India, has developed Pulsed Magnetic Field Technology (PMF) which can be optimized for various algal processes with huge benefits. A Pulsed Magnetic Field (PMF) enclosure has been installed in a 35 KL micro algal.

Algal biomass technologies: an interdisciplinary perspective: proceedings of a workshop on the present status and future directions for biotechnologies based on algal biomass production, April, University of Colorado, Boulder by/5.Inwe celebrate the 10th International Conference on Algal Biomass, Biofuels and Bioproducts (AlgalBBB ), which will take place in Pittsburgh, PA, USA.

We hope that you will join us to commemorate this anniversary and help us provide an exciting atmosphere to discuss the latest research and technologies in algal based systems.In an effort to process wet algal biomass directly, eliminate organic solvent use during lipid extraction, and recover nutrients (e.g., N, P, and glycerol) for reuse, we developed a catalyst-free, two-step technique for algal biodiesel production.

In the first step, wet algal biomass (ca. 80% moisture) reacts in subcritical water to hydrolyze intracellular lipids, conglomerate cells into an.