Richard E. Speece
Affiliations: | Vanderbilt University, Nashville, TN |
Area:
Environmental Engineering, Civil Engineering, Chemical EngineeringGoogle:
"Richard Speece"Cross-listing: E-Tree
Children
Sign in to add traineeDaniel H. Zitomer | grad student | 1991-1994 | Vanderbilt |
Saroch Boonyakitsombut | grad student | 2001 | Vanderbilt |
Moonil Kim | grad student | 2001 | Vanderbilt |
Fifaia T. Matainaho | grad student | 2001 | Vanderbilt |
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Publications
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Takashima M, Shimada K, Speece RE. (2011) Minimum requirements for trace metals (iron, nickel, cobalt, and zinc) in thermophilic and mesophilic methane fermentation from glucose. Water Environment Research : a Research Publication of the Water Environment Federation. 83: 339-46 |
Zitomer DH, Johnson CC, Speece RE. (2008) Metal stimulation and municipal digester thermophilic/mesophilic activity Journal of Environmental Engineering. 134: 42-47 |
Myint M, Nirmalakhandan N, Speece RE. (2007) Anaerobic fermentation of cattle manure: Modeling of hydrolysis and acidogenesis Water Research. 41: 323-332 |
Ahn YH, Speece RE. (2006) Waste lime as a potential cation source in the phosphate crystallization process Environmental Technology. 27: 1225-1231 |
Ahn YH, Speece RE. (2006) A novel process for organic acids and nutrient recovery from municipal wastewater sludge Water Science and Technology. 53: 101-109 |
Speece RE, Boonyakitsombut S, Kim M, et al. (2006) Overview of anaerobic treatment: thermophilic and propionate implications. Water Environment Research : a Research Publication of the Water Environment Federation. 78: 460-73 |
Ahn YH, Speece RE. (2006) Elutriated acid fermentation of municipal primary sludge. Water Research. 40: 2210-20 |
Speece RE, Boonyakitsombut S, Kim M, et al. (2006) Anaerobic Treatment: Thermophilic and Propionate Implications Cheminform. 37 |
Kim M, Bae W, Speece RE. (2004) Improved anaerobic process efficiency using mesophilic and thermophilic elutriated phased treatment Journal of Environmental Engineering. 130: 960-966 |
Kim M, Gomec CY, Ahn Y, et al. (2003) Hydrolysis and acidogenesis of particulate organic material in mesophilic and thermophilic anaerobic digestion. Environmental Technology. 24: 1183-90 |