Books on the topic 'Algal Biomass'
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Doyle, Alisha M., and Jayden A. Bell. Algal biofuels: Where we've been, where we're going (with DVD). Hauppauge, N.Y: Nova Science Publishers, 2011.
Find full textSuliono, W. A. Biosorption of heavy metal ions by nonliving algal biomass. Wolverhampton: University of Wolverhampton, 1997.
Find full textPienkos, Philip T. Algal biofuels can make a difference: Renewable Energy Roundtable. Golden, Colo.]: National Renewable Energy Laboratory, 2012.
Find full textFerell, John. National algal biofuels technology roadmap: A technology roadmap resulting from the National Algal Biofuels Workshop, December 9-10, 2008, University of Maryland. Washington, DC]: U.S. Dept. of Energy, Office of Energy Efficiency and Renewable Energy, Office of the Biomass Program, 2010.
Find full textLowe, Brad S. Occurrence and distribution of algal biomass and its relation to nutrients and selected basin characteristics in Indiana streams, 2001-2005. Reston, Va: U.S. Geological Survey, 2008.
Find full textWychen, S. Van. Determination of total solids and ash in algal biomass: Laboratory analytical procedures (LAP), issue Date: December 2, 2013. Golden, Colorado: National Renewable Energy Laboratory, 2013.
Find full textLaurens, L. M. L. Summative mass analysis of algal biomass, integration of analytical procedures: Laboratory analytical procedures (LAP), issue date December 2, 2013. Golden, Colorado: National Renewable Energy Laboratory, 2013.
Find full textBrightbill, Robin A. Relation of algal biomass to characteristics of selected streams in the Lower Susquehanna River Basin. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.
Find full textBrightbill, Robin A. Relation of algal biomass to characteristics of selected streams in the lower Susquehanna River Basin. Lemoyne, Pa: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.
Find full textBothwell, Max L. Phosphorus control of algal production and biomass in the Thompson River, British Columbia. Saskatoon, Sask: National Hydrology Research Centre, 1989.
Find full textNational Hydrology Research Institute (Canada). Phosphorus control of Algal production and Biomass in the Thompson River, British Columbia. Ottawa: Environment Canada, 1989.
Find full textR, Barclay William, McIntosh Robins P, and University of Colorado Boulder, eds. 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. Berlin: J. Cramer, 1986.
Find full textR, Barclay William, and McIntosh Robins P, eds. 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. Berlin: J. Cramer, 1986.
Find full textBjorklund, Ruth. The pros and cons of algae biofuel. New York: Cavendish Square Publishing, 2016.
Find full textPonader, Karin. Understanding the relationship between natural conditions and loadings on eutrophication: Algal indicators of eutrophication for New Jersey streams : final report, year 2. Philadelphia, PA: Patrick Center for Environmental Research, Academy of Natural Sciences, 2003.
Find full textKarel, Marcus. Utilization of non-conventional systems for conversion of biomass to food components: Recovery optimization and characterization of algal proteins and lipids ; status report (March 1985 to June 1986). Cambridge, MA: Dept. of Applied Biological Sciences, Massachusetts Institute of Technology, 1986.
Find full textZ, Nakhost, and United States. National Aeronautics and Space Administration, eds. Utilization of non-conventional systems for conversion of biomass to food components: Recovery optimization and characterization of algal proteins and lipids ; status report (March 1985 to June 1986). Cambridge, MA: Dept. of Applied Biological Sciences, Massachusetts Institute of Technology, 1986.
Find full textBhat, Rouf Ahmad, Dig Vijay Singh, Fernanda Maria Policarpo Tonelli, and Khalid Rehman Hakeem. Plant and Algae Biomass. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-94074-4.
Full textChojnacka, Katarzyna, Piotr Pawel Wieczorek, Grzegorz Schroeder, and Izabela Michalak, eds. Algae Biomass: Characteristics and Applications. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-74703-3.
Full textBartsch, Annette. Die Eisalgenflora des Weddellmeeres (Antarktis): Artenzusammensetzung und Biomasse sowie Ökophysiologie ausgewählter Arten = Sea ice algae of the Weddell Sea (Antarctica) : species composition, biomass, and ecophysiology of selected species. Bremerhaven: Alfred-Wegener-Institut für Polar- und Meeresforschung, 1989.
Find full textJohansen, Melanie N. Microalgae: Biotechnology, microbiology, and energy. Hauppauge, N.Y: Nova Science Publisher's, 2011.
Find full textKarel, Marcus. Utilization of non-conventional systems for conversion of biomass to food components: Final report. Cambridge, MA: Dept. of Chemical Engineering, Massachusetts Institute of Technology, 1989.
Find full textUnited States. National Aeronautics and Space Administration, ed. Utilization of non-conventional systems for conversion of biomass to food components: Final report. Cambridge, MA: Dept. of Chemical Engineering, Massachusetts Institute of Technology, 1989.
Find full textDale, Alec R. Growth rate and biomass responses of periphytic algae to phosphorus enrichment in experimental flumes, Athabasca River, April and May, 1994. Edmonton, Alta: Northern River Basins Study, 1995.
Find full textZ, Nakhost, and Ames Research Center, eds. Utilization of non-conventional systems for conversion of biomass to food components. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1990.
Find full textZ, Nakhost, and Ames Research Center, eds. Utilization of non-conventional systems for conversion of biomass to food components. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1990.
Find full textDale, Alec R. Growth rate and biomass responses or periphytic algae to phosphorus enrichment in experimental flumes, Athabasca River, seasonal variation, 1993 and 1994. Edmonton, Alta: Northern River Basins Study, 1995.
Find full text1954-, Perrin Christopher John, Chambers P. A, Bothwell M. L, and Northern River Basins Study (Canada), eds. Growth rate and biomass responses of periphytic algae to nutrient enrichment of stable and unstable substrata, Athabasca River. Edmonton: The Study, 1995.
Find full textKarel, Marcus. Utilization of non-conventional systems for conversion of biomass to food components: Potential for utilization of algae in engineered foods. Cambridge, MA: Dept. of Applied Biological Sciences, Massachusetts Institute of Technology, 1985.
Find full textUnited States. National Aeronautics and Space Administration, ed. Utilization of non-conventional systems for conversion of biomass to food components: Potential for utilization of algae in engineered foods. Cambridge, MA: Dept. of Applied Biological Sciences, Massachusetts Institute of Technology, 1985.
Find full textDas, Debabrata. Algal Biorefinery: An Integrated Approach. Springer London, Limited, 2016.
Find full textBux, Faizal, Sanjay Kumar Gupta, and Anushree Malik. Algal Biofuels - Crucial Concerns and Impending Perceptions. Springer, 2017.
Find full textBux, Faizal, Sanjay Kumar Gupta, and Anushree Malik. Algal Biofuels: Recent Advances and Future Prospects. Springer, 2018.
Find full textSustainable Development of Algal Biofuels in the United States. National Academies Press, 2012.
Find full textBoard on Agriculture and Natural Resources, Board on Energy and Environmental Systems, Division on Earth and Life Studies, Division on Engineering and Physical Sciences, and Committee on the Sustainable Development of Algal Biofuels. Sustainable Development of Algal Biofuels in the United States. National Academies Press, 2012.
Find full textBoard on Agriculture and Natural Resources, Board on Energy and Environmental Systems, Division on Earth and Life Studies, National Research Council, and Division on Engineering and Physical Sciences. Sustainable Development of Algal Biofuels in the United States. National Academies Press, 2012.
Find full textBoard on Agriculture and Natural Resources, Board on Energy and Environmental Systems, Division on Earth and Life Studies, National Research Council, and Division on Engineering and Physical Sciences. Sustainable Development of Algal Biofuels in the United States. National Academies Press, 2013.
Find full textMicro-Algal Production for Biomass and High-Value Products. Taylor & Francis Group, 2016.
Find full textMohanty, Kaustubha, and Rahulkumar Maurya. Biorefinery Approach to Algal Biomass Conversation for Biofuels and Bioproducts. Elsevier, 2022.
Find full textThe Science of Algal Fuels Cellular Origin Life in Extreme Habitats and Astrobiology. Springer, 2012.
Find full textMalik, Danish Javed. Algal biomass as adsorbents for heavy metal sorption from aqueous solutions. 1999.
Find full textUnited States. Congress. Senate. Committee on Agriculture, Nutrition, and Forestry. Advanced biofuels: Creating jobs and lower prices at the pump : hearing before the Committee on Agriculture, Nutrition and Forestry, United States Senate, One Hundred Thirteenth Congress, second session, April 8, 2014. 2015.
Find full textRavishankar, Gokare A., and Ranga Rao Ambati. Handbook of Algal Technologies and Phytochemicals: Volume II Phycoremediation, Biofuels and Global Biomass Production. Taylor & Francis Group, 2019.
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