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Seyed Mojtaba Seyedi
Seyed Mojtaba Seyedi
M.Sc. of Sharif University of Technology
Verified email at our.ecu.edu.au
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Cited by
Year
Superhydrophobic dual layer functionalized titanium dioxide/polyvinylidene fluoride-co-hexafluoropropylene (TiO2/PH) nanofibrous membrane for high flux membrane distillation
SMS Shahabadi, H Rabiee, SM Seyedi, A Mokhtare, JA Brant
Journal of Membrane Science 537, 140-150, 2017
1292017
Biodegradation kinetics and interactions of styrene and ethylbenzene as single and dual substrates for a mixed bacterial culture
H Hazrati, J Shayegan, SM Seyedi
Journal of environmental health science and engineering 13, 1-12, 2015
352015
Synthesis of zero‐valent iron nanoparticles via electrical wire explosion for efficient removal of heavy metals
SM Seyedi, H Rabiee, SMS Shahabadi, SM Borghei
CLEAN–Soil, Air, Water 45 (3), 1600139, 2017
262017
Experimental and theoretical study on liquid–liquid equilibrium of 1-butanol+ water+ NaNO3 at 25 and 35° C
F Pirahmadi, MR Dehghani, B Behzadi, SM Seyedi, H Rabiee
Fluid phase equilibria 299 (1), 122-126, 2010
252010
The effect of HRT and carriers on the sludge specifications in MBR to remove VOCs from petrochemical wastewater
H Hazrati, J Shayegan, S Mojtaba Seyedi
Desalination and Water Treatment 57 (46), 21730-21742, 2016
222016
Preparation and characterization of PVC/PAN blend ultrafiltration membranes: effect of PAN concentration and PEG with different molecular weight
H Rabiee, SM Seyedi, H Rabiei, N Alvandifar, A Arya
Desalination and Water Treatment 58, 1-11, 2017
142017
Improvements in permeation and fouling resistance of PVC ultrafiltration membranes via addition of Tetronic-1107 and Triton X-100 as two non-ionic and hydrophilic surfactants
H Rabiee, SM Seyedi, H Rabiei, N Alvandifar
Water Science and Technology 74 (6), 1469-1483, 2016
142016
Biokinetic coefficients determination of a MBR for styrene and ethylbenzene as substrate base on Andrews model
SM Seyedi, H Hazrati, J Shayegan
Advances in Environmental Technology 2 (4), 207-214, 2017
2017
Engineered iron oxide nanoparticle-polymer composites for the removal of dissolved arsenic and antimony
SM Seyedi
Edith Cowan University, 2017
2017
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