T Marhaba
Affiliations: | New Jersey Institute of Technology, Newark, NJ, United States |
Area:
Civil Engineering, Environmental EngineeringGoogle:
"T Marhaba"Cross-listing: Envirotree
Children
Sign in to add traineeDoanh Van | grad student | 2000 | NJIT |
Vishal V. Gawarikar | grad student | 2005 | NJIT |
Yong Pu | grad student | 2005 | NJIT |
Krit Punburananon | grad student | 2009 | NJIT |
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Publications
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Zhang Y, Cao G, Zhang Z, et al. (2019) Immobilization of Copper from Aqueous Solution and Contaminated Sediment Using Modified Clinoptilolite Water, Air, & Soil Pollution. 230 |
Zhang Y, Zhang H, Zhang Z, et al. (2018) Autohydrogenotrophic Denitrification Using the Membrane Biofilm Reactor for Removing Nitrate from High Sulfate Concentration of Water. Archaea (Vancouver, B.C.). 2018: 9719580 |
Ahmed AKA, Shi X, Hua L, et al. (2018) Influences of Air, Oxygen, Nitrogen, and Carbon dioxide Nanobubbles on Seeds Germination and Plants Growth. Journal of Agricultural and Food Chemistry |
Zhang Y, Zhang H, Zhang Z, et al. (2018) pH Effect on Heavy Metal Release from a Polluted Sediment Journal of Chemistry. 2018: 1-7 |
Ahmed AKA, Marhaba TF. (2016) Review on river bank filtration as an in situ water treatment process Clean Technologies and Environmental Policy. 19: 349-359 |
Zhang Z, Lv Y, Zhang W, et al. (2014) Phosphorus, organic matter and nitrogen distribution characteristics of the surface sediments in Nansi Lake, China Environmental Earth Sciences. 73: 5669-5675 |
Hsieh H, Rodriguez P, Marhaba T. (2012) Challenges of Vessel General Permit Transportation Research Record: Journal of the Transportation Research Board. 2273: 62-68 |
Marhaba TF, Borgaonkar AD, Punburananon K. (2009) Principal component regression model applied to dimensionally reduced spectral fluorescent signature for the determination of organic character and THM formation potential of source water. Journal of Hazardous Materials. 169: 998-1004 |
Kanokkantapong V, Marhaba TF, Panyapinyophol B, et al. (2006) FTIR evaluation of functional groups involved in the formation of haloacetic acids during the chlorination of raw water. Journal of Hazardous Materials. 136: 188-96 |
Kanokkantapong V, Marhaba TF, Wattanachira S, et al. (2006) Interaction between organic species in the formation of haloacetic acids following disinfection. Journal of Environmental Science and Health. Part a, Toxic/Hazardous Substances & Environmental Engineering. 41: 1233-48 |