Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311543906> ?p ?o ?g. }
- W4311543906 endingPage "122909" @default.
- W4311543906 startingPage "122909" @default.
- W4311543906 abstract "In this study, a dual-oxidant advanced oxidation process (AOP) system containing calcium peroxide (CaO2) and peroxymonosulfate (PMS) was developed for the first time to efficiently degrade refractory organic pollutants. It was found that the system with 0.1 g/L CaO2 and 0.3 g/L PMS could degrade more than 91% of 50 mg/L tetracycline (TC) within 4 min at room temperature, and the degradation process much followed the pseudo second-order kinetic model. The presented AOP system exhibited strong anti-interference capabilities towards coexisting inorganic anions (Cl−, SO42–, NO3–, HCO3– and HPO42–) and humic acid (HA), even at high concentrations. Moreover, the system could efficiently work in a wide pH (3−12) range, suitable for natural waterbodies and various organic pollutants. The results of quenching experiments and electron paramagnetic resonance (EPR) tests demonstrated that singlet oxygen (1O2) was the dominate reactive oxygen species (ROS) responsible for organics degradation. A synergistic mechanism of the dual-oxidant system was confirmed by a series of comparative experiments, where CaO2 continuously provided OH− and H2O2, and then combined with PMS to produce predominant 1O2 and inferior O2•–, respectively. Further, the possible pathways of TC degradation were deduced based on analyses of the intermediates." @default.
- W4311543906 created "2022-12-27" @default.
- W4311543906 creator A5003933338 @default.
- W4311543906 creator A5005904698 @default.
- W4311543906 creator A5032632908 @default.
- W4311543906 creator A5039955581 @default.
- W4311543906 creator A5046597133 @default.
- W4311543906 creator A5067815336 @default.
- W4311543906 creator A5076508243 @default.
- W4311543906 creator A5090133014 @default.
- W4311543906 creator A5090822480 @default.
- W4311543906 date "2023-03-01" @default.
- W4311543906 modified "2023-10-13" @default.
- W4311543906 title "A dual-oxidant advanced oxidation process system containing CaO2 and peroxymonosulfate for organic pollutant degradation: High adaptability and synergistic effect" @default.
- W4311543906 cites W1969272269 @default.
- W4311543906 cites W1977211568 @default.
- W4311543906 cites W1977486808 @default.
- W4311543906 cites W1979217665 @default.
- W4311543906 cites W1992411968 @default.
- W4311543906 cites W1999336879 @default.
- W4311543906 cites W2033629159 @default.
- W4311543906 cites W2092482540 @default.
- W4311543906 cites W2300158998 @default.
- W4311543906 cites W2315726222 @default.
- W4311543906 cites W249197861 @default.
- W4311543906 cites W2566048126 @default.
- W4311543906 cites W2582904845 @default.
- W4311543906 cites W2736371272 @default.
- W4311543906 cites W2765371117 @default.
- W4311543906 cites W2770125280 @default.
- W4311543906 cites W2772029075 @default.
- W4311543906 cites W2776848533 @default.
- W4311543906 cites W2786611210 @default.
- W4311543906 cites W2792444842 @default.
- W4311543906 cites W2793628589 @default.
- W4311543906 cites W2795041955 @default.
- W4311543906 cites W2801208774 @default.
- W4311543906 cites W2887927433 @default.
- W4311543906 cites W2898810201 @default.
- W4311543906 cites W2902493574 @default.
- W4311543906 cites W2929000725 @default.
- W4311543906 cites W2943718481 @default.
- W4311543906 cites W2954934427 @default.
- W4311543906 cites W2971144778 @default.
- W4311543906 cites W2979523756 @default.
- W4311543906 cites W3002994943 @default.
- W4311543906 cites W3006695758 @default.
- W4311543906 cites W3024240015 @default.
- W4311543906 cites W3033087167 @default.
- W4311543906 cites W3083196081 @default.
- W4311543906 cites W3092049841 @default.
- W4311543906 cites W3118714997 @default.
- W4311543906 cites W3154206570 @default.
- W4311543906 cites W3171382880 @default.
- W4311543906 cites W3182469023 @default.
- W4311543906 cites W3184197505 @default.
- W4311543906 cites W3186141652 @default.
- W4311543906 cites W3193787070 @default.
- W4311543906 cites W3201125308 @default.
- W4311543906 cites W3203225616 @default.
- W4311543906 cites W3203622720 @default.
- W4311543906 cites W3215416224 @default.
- W4311543906 cites W4200156602 @default.
- W4311543906 cites W4200347791 @default.
- W4311543906 cites W4210585018 @default.
- W4311543906 cites W4210981055 @default.
- W4311543906 cites W4213254991 @default.
- W4311543906 cites W4226002492 @default.
- W4311543906 cites W4226377076 @default.
- W4311543906 cites W4281803622 @default.
- W4311543906 cites W4293051401 @default.
- W4311543906 cites W4297499139 @default.
- W4311543906 cites W4300862094 @default.
- W4311543906 cites W4304084158 @default.
- W4311543906 cites W4304128004 @default.
- W4311543906 doi "https://doi.org/10.1016/j.seppur.2022.122909" @default.
- W4311543906 hasPublicationYear "2023" @default.
- W4311543906 type Work @default.
- W4311543906 citedByCount "9" @default.
- W4311543906 countsByYear W43115439062023 @default.
- W4311543906 crossrefType "journal-article" @default.
- W4311543906 hasAuthorship W4311543906A5003933338 @default.
- W4311543906 hasAuthorship W4311543906A5005904698 @default.
- W4311543906 hasAuthorship W4311543906A5032632908 @default.
- W4311543906 hasAuthorship W4311543906A5039955581 @default.
- W4311543906 hasAuthorship W4311543906A5046597133 @default.
- W4311543906 hasAuthorship W4311543906A5067815336 @default.
- W4311543906 hasAuthorship W4311543906A5076508243 @default.
- W4311543906 hasAuthorship W4311543906A5090133014 @default.
- W4311543906 hasAuthorship W4311543906A5090822480 @default.
- W4311543906 hasConcept C107872376 @default.
- W4311543906 hasConcept C121332964 @default.
- W4311543906 hasConcept C121745418 @default.
- W4311543906 hasConcept C178790620 @default.
- W4311543906 hasConcept C179104552 @default.
- W4311543906 hasConcept C185592680 @default.
- W4311543906 hasConcept C187961010 @default.
- W4311543906 hasConcept C2777516457 @default.