A GIS based national assessment of algal bio-oil production potential through flue gas and wastewater co-utilization
暂无分享,去创建一个
[1] Mark A. White,et al. Environmental impacts of algae-derived biodiesel and bioelectricity for transportation. , 2011, Environmental science & technology.
[2] George Tchobanoglous,et al. Small and decentralized wastewater management systems , 1998 .
[3] J. Benemann,et al. Look Back at the U.S. Department of Energy's Aquatic Species Program: Biodiesel from Algae; Close-Out Report , 1998 .
[4] Yoojeong Kim,et al. Air-Lift Bioreactors for Algal Growth on Flue Gas: Mathematical Modeling and Pilot-Plant Studies , 2005 .
[5] Johan U Grobbelaar,et al. Factors governing algal growth in photobioreactors: the “open” versus “closed” debate , 2009, Journal of Applied Phycology.
[6] Arnaud Hélias,et al. Life-cycle assessment of biodiesel production from microalgae. , 2009, Environmental science & technology.
[7] Deog-Keun Kim,et al. Effects of SO2 and NO on growth of Chlorella sp. KR-1. , 2002, Bioresource technology.
[8] Mark A. White,et al. Environmental life cycle comparison of algae to other bioenergy feedstocks. , 2010, Environmental science & technology.
[9] Y. Chisti. Biodiesel from microalgae. , 2007, Biotechnology advances.
[10] W. R. G. Atkins,et al. Photoelectric measurements of the luminous efficiency of daylight , 1936 .
[11] Kathryn G. Zeiler,et al. The use of microalgae for assimilation and utilization of carbon dioxide from fossil fuel-fired powe , 1995 .
[12] Andres F. Clarens,et al. Algae biodiesel has potential despite inconclusive results to date. , 2012, Bioresource technology.
[13] J. Noüe,et al. Algae and waste water , 1992, Journal of Applied Phycology.
[14] J. R. Benemann,et al. Utilization of carbon dioxide from fossil fuel-burning power plants with biological systems , 1993 .
[15] Nigel W.T. Quinn,et al. A Realistic Technology and Engineering Assessment of Algae Biofuel Production , 2010 .
[16] Hiroyo Matsumoto,et al. Carbon dioxide fixation by microalgae photosynthesis using actual flue gas discharged from a boiler , 1993 .
[17] A. Richmond. Handbook of microalgal culture: biotechnology and applied phycology. , 2004 .
[18] Andre M. Coleman,et al. National microalgae biofuel production potential and resource demand , 2011 .
[19] C. Howe,et al. Life-Cycle Assessment of Potential Algal Biodiesel Production in the United Kingdom: A Comparison of Raceways and Air-Lift Tubular Bioreactors , 2010 .
[20] Kiran L. Kadam,et al. Power plant flue gas as a source of CO2 for microalgae cultivation: Economic impact of different process options , 1997 .
[21] W. Oswald,et al. Advanced integrated wastewater pond systems for nitrogen removal , 1996 .
[22] W. Oswald. Advanced Integrated Wastewater Pond Systems , 1990 .
[23] F B Green,et al. Low cost reclamation using the Advanced Integrated Wastewater Pond Systems Technology and reverse osmosis. , 2002, Water science and technology : a journal of the International Association on Water Pollution Research.
[24] M Maurer,et al. Nutrients in urine: energetic aspects of removal and recovery. , 2003, Water science and technology : a journal of the International Association on Water Pollution Research.
[25] T. Lundquist,et al. Algae Grown on Dairy and Municipal Wastewater for Simultaneous Nutrient Removal and Lipid Production for Biofuel Feedstock , 2009 .
[26] Yuyu Zhou,et al. High resolution fossil fuel combustion CO2 emission fluxes for the United States. , 2009, Environmental science & technology.
[27] Rolf A. Deininger,et al. Modelling regional waste water treatment systems , 1973 .
[28] Hee-Mock Oh,et al. Selection of microalgae for lipid production under high levels carbon dioxide. , 2010, Bioresource technology.