Browsing by Author "Huong P.T."
Now showing items 1-4 of 4
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Ag-doped graphitic carbon nitride photocatalyst with remarkably enhanced photocatalytic activity towards antibiotic in hospital wastewater under solar light
Minh Tri N.L.; Kim J.; Giang B.L.; Al Tahtamouni T.M.; Huong P.T.; Lee C.; Viet N.M.; Quang Trung D.... more authors ... less authors ( Korean Society of Industrial Engineering Chemistry , 2019 , Article)In this study a novel Ag-doped graphitic carbon nitride (g-C3N4) photocatalyst was synthesized and applied as high efficient material under solar light towards emerging antibiotic pollutant in hospital wastewater. The ... -
Improvement of hydrogen production under solar light using cobalt (II) phosphide hydroxide co-doped g-C3N4 photocatalyst
Thang P.Q.; Jitae K.; Nguyen T.D.; Huong P.T.; Viet N.M.; Al Tahtamouni T.M.... more authors ... less authors ( Springer , 2019 , Article)Graphitic carbon nitride (g-C3N4) has been extensively studied as a model of photocatalyst material for water splitting. This study investigates potential of cobalt (II) phosphide hydroxide co-doped g-C3N4 (Co-P/C3N4) for ... -
Selective flotation separation of ABS/PC from ESR plastic wastes mixtures assisted by ultrasonic catalyst/H2O2
Nguyen T.D.; Al Tahtamouni T.M.; Huong P.T.; Thang P.Q. ( Elsevier Ltd , 2019 , Article)The present study investigated the potential recycles of acrylonitile butadiene styrene terpolymers (ABS) from their blends with polymethylmehtacrylate (PMMA), polyCarbonate (PC) and high impact polyStyrene (HIPS) using ... -
Synthesis of iron modified rice straw biochar toward arsenic from groundwater
Nham N.T.; Tahtamouni T.M.A.; Nguyen T.D.; Huong P.T.; Jitae K.; Viet N.M.; Noi N.V.; Phuong N.M.; Anh N.T.H.... more authors ... less authors ( Institute of Physics Publishing , 2019 , Article)The potential of Fe modified biochar (BC) as an alternative, inexpensive adsorbent for removing As(V) from wastewater was investigated. BC was synthesized from the slow pyrolysis of rice straw and then modified with FeCl3. ...