TY - JOUR
T1 - Ultrasonic-assisted degradation of a triarylmethane dye using combined peroxydisulfate and MOF-2 catalyst
T2 - Synergistic effect and role of oxidative species
AU - Sisi, Abdollah Jamal
AU - Khataee, Alireza
AU - Fathinia, Mehrangiz
AU - Vahid, Behrouz
N1 - Publisher Copyright:
© 2019 Elsevier B.V.
PY - 2020/1/1
Y1 - 2020/1/1
N2 - Combination of various advanced oxidations processes (AOPs) for effective water treatment is significant from a practical viewpoint. In this study, metal-organic framework-2 (MOF-2) nanomaterial (NM) was synthesized and then coupled with ultrasound (US) process in the presence of peroxydisulfate (S2O8 2−) for Acid Blue 7 (AB7) degradation as a triarylmethane model dye. The XRD, FT-IR, SEM, TEM, BET, and DRS analyses were utilized to confirm the appropriate formation of nanoporous flake-like MOF-2 with a high specific surface area of 942.6 m2/g. The combined US/MOF-2/S2O8 2− process demonstrated the highest performance compared to the US and US/S2O8 2− processes in the same operational conditions. The mentioned processes obeyed pseudo-first-order kinetic and their synergistic effect for the AB7 degradation was determined according to the obtained apparent rate constants (kapp) as 63.4%. Radical quenching experiments using various scavengers revealed the oxidative species role for the AB7 treatment, which were generated during the sonolysis and sonolycatalytic process in the presence of the S2O8 2− based on the hot spot explanation. Consequently, the dominant reactive species were hydroxyl ([rad]OH), sulfate (SO4[rad]-), superoxide (O2[rad]-) and singlet oxygen (1O2[rad]) radicals. The GC–MS method was carried out to identify the main degradation intermediates, and five intermediates were detected.
AB - Combination of various advanced oxidations processes (AOPs) for effective water treatment is significant from a practical viewpoint. In this study, metal-organic framework-2 (MOF-2) nanomaterial (NM) was synthesized and then coupled with ultrasound (US) process in the presence of peroxydisulfate (S2O8 2−) for Acid Blue 7 (AB7) degradation as a triarylmethane model dye. The XRD, FT-IR, SEM, TEM, BET, and DRS analyses were utilized to confirm the appropriate formation of nanoporous flake-like MOF-2 with a high specific surface area of 942.6 m2/g. The combined US/MOF-2/S2O8 2− process demonstrated the highest performance compared to the US and US/S2O8 2− processes in the same operational conditions. The mentioned processes obeyed pseudo-first-order kinetic and their synergistic effect for the AB7 degradation was determined according to the obtained apparent rate constants (kapp) as 63.4%. Radical quenching experiments using various scavengers revealed the oxidative species role for the AB7 treatment, which were generated during the sonolysis and sonolycatalytic process in the presence of the S2O8 2− based on the hot spot explanation. Consequently, the dominant reactive species were hydroxyl ([rad]OH), sulfate (SO4[rad]-), superoxide (O2[rad]-) and singlet oxygen (1O2[rad]) radicals. The GC–MS method was carried out to identify the main degradation intermediates, and five intermediates were detected.
KW - Metal-organic frameworks
KW - Oxidative species role
KW - Peroxydisulfate
KW - Sonocatalyst
KW - Synergistic effect
UR - http://www.scopus.com/inward/record.url?scp=85075395991&partnerID=8YFLogxK
U2 - 10.1016/j.molliq.2019.111838
DO - 10.1016/j.molliq.2019.111838
M3 - Article
AN - SCOPUS:85075395991
SN - 0167-7322
VL - 297
JO - Journal of Molecular Liquids
JF - Journal of Molecular Liquids
M1 - 111838
ER -