the efficiency and mechanism of dibutyl phthalate removal
the efficiency and mechanism of dibutyl phthalate removal
the efficiency and mechanism of dibutyl phthalate removal
the efficiency and mechanism of dibutyl phthalate removal
the efficiency and mechanism of dibutyl phthalate removal
the efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by copper-based metal organic frameworks coupled with persulfate - RSC Advances (RSC Publishing) Maintenance work is planned for Wednesday 17th January 2024 from 9:00am to 10:00am (GMT). We apologise for any inconvenience this might cause and thank you for your patience.

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the efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by copper-based metal organic frameworks coupled with persulfate - PMC Journal List RSC Adv v.8 (69); 2018 Nov 23 PMC9090961 As a library, NLM provides access to scientific literature.

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the efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by

ff and free-radical quenchers have been investigated. The results showed that DBP could be removed in Received 7th October 2018 Accepted 19th November 2018 a wide pH range by Cu-BTC-A via mechanisms of adsorption and heterogeneous catalytic reaction.

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the efficiency and mechanism of dibutyl phthalate removal by

The efficiency and mechanism of dibutyl phthalate removal by

The removal of organic pollutant in wastewater has become a major priority in water treatment. In this study, organic pollutant dibutyl phthalate (DBP) has been biologically and photocatalytically

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removal efficiency and enzymatic mechanism of dibutyl

Removal efficiency and enzymatic mechanism of dibutyl

As one of the most commonly used PAEs, dibutyl phthalate (DBP) was classified as priority pollutants by the EPA and listed as environment priority-controlling pollutants in China. In previous studies, DBP has become widely distributed in water, soil, and atmosphere.

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biodegradation of dibutyl phthalate by the new strain

Biodegradation of Dibutyl Phthalate by the New Strain

DBP Concentration. The experiment results indicated that the initial DBP concentration, which ranged from 5¨C200 mg¡¤L ?1, can affect the DBP degradation rates of DP-2 to a certain extent. Among all the treatments, the maximum DBP degradation rate was 98.89% when the initial DBP concentration was 10 mg¡¤L ?1.

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removal efficiency and enzymatic mechanism of dibutyl

Removal efficiency and enzymatic mechanism of dibutyl

Four vertical-flow constructed wetland systems were set up in the field in order to study the removal efficiency and possible enzymatic mechanism of the constructed wetlands in treating sewage containing different concentrations of dibutyl phthalate (DBP).

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combined biological and photocatalytic degradation of dibutyl

Combined Biological and Photocatalytic Degradation of Dibutyl

The composite removal efficiency was also investigated, and the obtained findings are depicted in Figure 4d. A similar mechanism was observed with 3%Ce/Gd-WS 2. The highest dibutyl phthalate photodegradation efficiency of 75% was depicted with 10 mg catalyst loading, and the lowest photodegradation of 43% was observed with 25 mg catalyst loading.

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phthalates removal from wastewater by different methods ¨c a

Phthalates removal from wastewater by different methods ¨C a

Adsorption and photo catalysis are the most widely used techniques for phthalate removal, according to the literature survey papers. HIGHLIGHTS Listen The existence of phthalates in wastewater are discussed. The aggressive effects due to the combined existence are summarized. Several technologies adopted for their simultaneous removal are reviewed.

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electrochemical degradation performance and mechanism

Electrochemical degradation performance and mechanism

The efficiency of the DBP removal of the three electrodes was in the order: Ti/TiO NTs/PbO NTs/PbO > Ti/PbO. The degradation process followed the pseudo-first-order kinetic model well, with rate constants of 0.1326, 0.1266, and 0.1041 h for the three electrodes, respectively.

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