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1.
Sci Total Environ ; 919: 170915, 2024 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-38350561

RESUMO

In recent years, water quality deterioration caused by harmful algal blooms (HABs) has become one of the global drinking water safety issues, and sulfate radical driven heterogeneous advanced oxidation technology has been widely used for algae removal. However, the shortages of low active site exposure, metal leaching, and secondary contamination limit its further application. Therefore, the single-atom Mn anchored on inorganic carbon nitride was constructed to enhance the oxidation and coagulation of algal cells while maintaining cell integrity in this study. The removal efficiency of Microcystis aeruginosa was as high as 100 % within 30 min under the optimal conditions of 400 mg/L single-atom Mn-embedded g-C3N4 (SA-MCN) and 0.32 mM peroxymonosulfate (PMS). Importantly, the K+ release, malondialdehyde concentration, floccules morphology and variation of algal organic matters further showed that the algal cells still maintained high integrity without severe rupture during the catalytic reaction. Furthermore, the catalytic mechanisms of algae removal by moderate oxidation and simultaneous coagulation in this system were explored by quenching experiments, EPR analysis, theoretical calculation, and Zeta potential. In brief, this study highlighted the single-atom heterogeneous catalyst with high-efficiency and environmental-friendliness in harmful algal blooms control.


Assuntos
Proliferação Nociva de Algas , Microcystis , Nitrilas , Peróxidos
2.
J Hazard Mater ; 459: 132191, 2023 10 05.
Artigo em Inglês | MEDLINE | ID: mdl-37544175

RESUMO

Sulfate radical mediated advanced oxidation processes (SR-AOPs) have emerged as a promising alternative for emerging contaminants degradation. However, high activity and great stability are commonly difficult to juggle, and the structure-activity correlations are still ambiguous. This study constructed the cubic CaTiO3 perovskite modified by highly-dispersed cobalt for peroxymonosulfate (PMS) activation to improve the specific lattice plane exposure and reduce the metal leaching simultaneously. 98% of amitriptyline (AMT) degradation was achieved within 60 min under the condition of 200 mg/L Co0.1-CTO and 100 mg/L PMS. The results indicated that surface Co2+/Co3+ redox couple and lattice oxygen were responsible for PMS activation, and the evolution of ·OH, SO4·- and 1O2 were revealed. According to density functional theory (DFT) calculations, the highly-dispersed Co on cubic surface effectively captured PMS and promoted electron transfer for the generation of ·OH and SO4·-, while more oxygen atoms exposed on Co0.1-CTO(200) surface facilitated the generation of 1O2. Briefly, this study provides a novel strategy of catalyst synthesis in PMS activation for water treatment.


Assuntos
Cobalto , Óxidos , Peróxidos , Oxigênio , Preparações Farmacêuticas
3.
Res Vet Sci ; 90(2): 238-40, 2011 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-20591454

RESUMO

Peste des petits ruminants (PPR) is an important viral disease of sheep and goats. The wildlife hosts of PPR, which may play an important role in the epidemiology of this disease, are not well characterized. The research was undertaken to study the infection of PPR virus (PPRV) in free-living bharals (Pseudois nayaur) in Tibet, China. In 2007, PPRV infection was confirmed in two bharals in Rutog County of Tibet based on clinical signs and detection of PPRV RNA in tissue samples. In 2008, PPRV infection was found in one bharal in Ge'gyai County of Tibet by competitive ELISA, reverse transcription-polymerase chain reaction, and sequence analysis of PPRV fusion protein (F) and nucleoprotein (N) gene segments. The PPRV variant identified in infected bharal was closely related to other circulating PPRV variants recently identified in sheep and goats from Tibet. This is the first report of PPRV infection in free-living bharals.


Assuntos
Peste dos Pequenos Ruminantes/epidemiologia , Vírus da Peste dos Pequenos Ruminantes/genética , Ruminantes , Animais , Feminino , Masculino , Peste dos Pequenos Ruminantes/virologia , Filogenia , Tibet/epidemiologia
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