TY - JOUR
T1 - Fabrication and characterization of novel Fe0@Guar gum-crosslinked-soya lecithin nanocomposite hydrogel for photocatalytic degradation of methyl violet dye
AU - Sharma, Gaurav
AU - Kumar, Amit
AU - Sharma, Shweta
AU - Al-Muhtaseb, Ala'a H.
AU - Naushad, Mu
AU - Ghfar, Ayman A.
AU - Ahamad, Tansir
AU - Stadler, Florian J.
N1 - Funding Information:
The authors extend their appreciation to the Deanship of Scientific Research at King Saud University for funding this work through research group no. RG-1436-034 .
Funding Information:
The authors extend their appreciation to the Deanship of Scientific Research at King Saud University for funding this work through research group no. RG-1436-034.
Publisher Copyright:
© 2018 Elsevier B.V.
PY - 2019/3/18
Y1 - 2019/3/18
N2 - Water pollution is the most threatening issue prevailing in our society these days. Methyl violet is released into the water resources through textile and paint industries. High dye concentration in water inhibits the photosynthesis process thus, affecting the aquatic life. In addition, it indirectly affects the human health also. So for photochemical exclusion of methyl violet from aqueous solution, we have designed zero valent iron @guar gum crosslinked soya lecithin nanocomposite hydrogel (Fe0@GG-cl-SY NCH), synthesized via ultrasonication method. Impregnation of zero valent iron (ZVI) onto the GG-cl-SY was characterized by various modern techniques such as FTIR, XRD, SEM, XPS, TEM and TGA. It was successfully utilized for the photodegradation of methyl violet from aqueous solution. Imprinting of ZVI onto GG-cl-SY and presence of H2O2 greatly enhanced the photodegradation of methyl violet. Neutral pH favoured the maximum methyl violet degradation. 81% degradation of methyl violet was observed within 120 min in the presence of H2O2 and Fe0@GG-cl-SY NCH. Scavenger study showed the reactive degradation species were the hydroxyl radicals which were further confirmed by ESR studies. LC-MS study showed the degradation of methyl violet into smaller fragments followed by complete mineralization.
AB - Water pollution is the most threatening issue prevailing in our society these days. Methyl violet is released into the water resources through textile and paint industries. High dye concentration in water inhibits the photosynthesis process thus, affecting the aquatic life. In addition, it indirectly affects the human health also. So for photochemical exclusion of methyl violet from aqueous solution, we have designed zero valent iron @guar gum crosslinked soya lecithin nanocomposite hydrogel (Fe0@GG-cl-SY NCH), synthesized via ultrasonication method. Impregnation of zero valent iron (ZVI) onto the GG-cl-SY was characterized by various modern techniques such as FTIR, XRD, SEM, XPS, TEM and TGA. It was successfully utilized for the photodegradation of methyl violet from aqueous solution. Imprinting of ZVI onto GG-cl-SY and presence of H2O2 greatly enhanced the photodegradation of methyl violet. Neutral pH favoured the maximum methyl violet degradation. 81% degradation of methyl violet was observed within 120 min in the presence of H2O2 and Fe0@GG-cl-SY NCH. Scavenger study showed the reactive degradation species were the hydroxyl radicals which were further confirmed by ESR studies. LC-MS study showed the degradation of methyl violet into smaller fragments followed by complete mineralization.
KW - Hydroxyl radicals
KW - Methyl violet
KW - Nanocomposite hydrogel
KW - Photocatalytic degradation
KW - Water pollution
KW - Zero valent iron
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U2 - 10.1016/j.seppur.2018.10.028
DO - 10.1016/j.seppur.2018.10.028
M3 - Article
AN - SCOPUS:85055892974
SN - 1383-5866
VL - 211
SP - 895
EP - 908
JO - Separation and Purification Technology
JF - Separation and Purification Technology
ER -