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Journal of Environmental Science and Health, Part B
Pesticides, Food Contaminants, and Agricultural Wastes
Volume 53, 2018 - Issue 2
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Original Articles

Aerobic treatment of swine manure to enhance anaerobic digestion and microalgal cultivation

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Pages 145-151 | Received 25 Jul 2017, Accepted 17 Oct 2017, Published online: 13 Nov 2017

References

  • Zhang, R.; El-Mashad, H. M.; Hartman, K.; Wang, F.; Liu, G.; Choate, C.; Gamble, P. Characterization of Food Waste as Feedstock for Anaerobic Digestion. Bioresour. Technol. 2007, 98, 929–935.
  • Ye, Y.; Zamalloa, C.; Lin, H.; Yan, M.; Schmidt, D.; Hu, B. Evaluation of Anaerobic Co-Digestion of Dairy Manure with Food Wastes Via Bio-Methane Potential Assay and CSTR Reactor. J. Environ. Sci. Health, B. 2015, 50, 217–227.
  • Zhu, L.; Wang, Z.; Shu, Q.; Takala, J.; Hiltunen, E.; Feng, P.; Yuan, Z. Nutrient Removal and Biodiesel Production by Integration of Freshwater Algae Cultivation with Piggery Wastewater Treatment. Water Res. 2013, 47, 4294–4302.
  • Qureshi, A.; Lo, K. V.; Mavinic, D. S.; Liao, P. H.; Koch, F.; Kelly, H. Dairy Manure Treatment, Digestion and Nutrient Recovery as a Phosphate Fertilizer. J. Environ. Sci. Health, B. 2006, 41, 1221–1235.
  • Zhang, B.; Wang, L. Anaerobic Digestion of Organic Wastes. In Sustainable Bioenergy Production, Wang, L., Ed.; CRC Press, Taylor & Francis; Boca Raton, FL, 2014; pp 407–421.
  • Mézes, L.; Bai, A.; Nagy, D.; Cinka, I.; Gabnai, Z. Optimization of Raw Material Composition in an Agricultural Biogas Plant. Trends Renewable Energy 2017, 3, 61–75.
  • Rajagopal, R.; Massé, D. I.; Singh, G. A Critical Review on Inhibition of Anaerobic Digestion Process by Excess Ammonia. Bioresour. Technol. 2013, 143, 632–641.
  • Behera, S.; Singh, R.; Arora, R.; Sharma, N. K.; Shukla, M.; Kumar, S. Scope of Algae as Third Generation Biofuels. Fron. Bioeng. Biotechnol. 2014, 2, 90.
  • Chen, J.; Li, Q.; Chang, C.; Bai, J.; Liu, L.; Fang, S.; Li, H. Techno-Economic Analysis of Biodiesel Production from Microalgae: A Review. Trends Renewable Energy 2017, 3, 141–152.
  • Zhang, B.; Wang, L.; Li, R.; Rahman, Q. M.; Shahbazi, A. Catalytic Conversion of Chlamydomonas to Hydrocarbons Via the Ethanol-Assisted Liquefaction and Hydrotreating Processes. Energy & Fuels 2017, DOI: 10.1021/acs.energyfuels.7b02080.
  • Yang, C.; Li, R.; Cui, C.; Liu, S.; Qiu, Q.; Ding, Y.; Wu, Y. Catalytic Hydroprocessing of Microalgae-Derived Biofuels: A Review. Green Chem. 2016, 18, 3684–3699.
  • Hasan, R.; Zhang, B.; Wang, L.; Shahbazi, A. Bioremediation of Swine Wastewater and Biodiesel Production by Using Chlorella vulgaris, Chlamydomonas reinhardtii, and Chlamydomonas debaryana. J. Pet. Environ. Biotechnol. 2014, 5, 175. https://doi.org/10.4172/2157-7463.1000175.
  • Rahman, Q. M.; Wang, L.; Zhang, B.; Xiu, S.; Shahbazi, A. Green Biorefinery of Fresh Cattail for Microalgal Culture and Ethanol Production. Bioresour. Technol. 2015, 185, 436–440.
  • Zhang, B.; Wang, L.; Hasan, R.; Shahbazi, A. Characterization of a Native Algae Species Chlamydomonas Debaryana: Strain Selection, Bioremediation Ability, and Lipid Characterization. BioResouces. 2014, 9, 6130–6140.
  • NREL. Standard Biomass Analytical Procedures, http://www.nrel.gov/biomass/analytical_procedures.html (accessed July 2017).
  • U.S. EPA. Method 1684: Total, Fixed, and Volatile Solids in Water, Solids, and Biosolids. https://www.epa.gov/sites/production/files/2015-07/documents/method_1684_volatile_solids_jana_2001.pdf (accessed July 2017).
  • Zhang, B.; Wang, Y. Biomass Processing, Conversion and Biorefinery; Nova Science Publishers: New York, 2013; p. 467.
  • LaMotte, Lamotte Smart 3 Colorimeter Manual, http://www.geotechenv.com/Manuals/LaMotte_Manuals/smart3_colorimeter_operators_manual.pdf (accessed July 2017).
  • Li, R.; Zhang, B.; Xiu, S.; Wang, H.; Boaten, N. A. B.; Holmes, B. M.; Wang, L.; Shahbazi, A. Characteristics of Pine Gasification Ash and Its Effects on Chlamydomonas Debaryana Growth. BioResources. 2016, 11, 1919–1929.
  • Zupančič, G. D.; Roš, M. Aerobic and Two-Stage Anaerobic-Aerobic Sludge Digestion with Pure Oxygen and Air Aeration. Bioresour. Technol. 2008, 99, 100–109.
  • Pagilla, K. R.; Kim, H.; Cheunbarn, T. Aerobic Thermophilic and Anaerobic Mesophilic Treatment of Swine Waste. Water Res. 2000, 34, 2747–2753.
  • Amini, H.; Wang, L.; Shahbazi, A. Effects of Harvesting Cell Density, Medium Depth and Environmental Factors on Biomass and Lipid Productivities of Chlorella Vulgaris Grown in Swine Wastewater. Chem. Eng. Sci. 2016, 152, 403–412.
  • Béguin, P.; Aubert, J.-P. The Biological Degradation of Cellulose. FEMS Microbiol. Rev. 1994, 13, 25–58.
  • Pérez, J.; Muñoz-Dorado, J.; de la Rubia, T.; Martínez, J. Biodegradation and Biological Treatments of Cellulose, Hemicellulose and Lignin: An Overview. Int. Microbiol. 2002, 5, 53–63.
  • Zhang, B.; Wang, L.; Riddicka, B.; Li, R.; Able, J.; Boakye-Boaten, N.; Shahbazi, A. Sustainable Production of Algal Biomass and Biofuels Using Swine Wastewater in North Carolina, US. Sustainability 2016, 8, 477. https://doi.org/10.3390/su8050477.

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