2012 ©
             EN, publication_detail
EN, publication_article
EN, publication_article_article_name Effect of Synthesized Conditions of Cu-K-OMS-2 on Toluene Oxidation Performances 
EN, publication_article_accepted_date 25 October 2019 
EN, publication_article_journal
     EN, publication_article_journal_name Applied Environmental Research 
     EN, publication_article_journal_standard SCOPUS 
     EN, publication_article_institute Environmental Research Institute, Chulalongkorn University 
     EN, publication_article_isbn  
     EN, publication_article_year 41 
     EN, publication_article_issue
     EN, publication_article_month December
     EN, publication_article_print_year 2019 
     EN, publication_article_page 83-95 
     EN, publication_article_abstract The objective of this study was to optimize synthesis conditions for the Cu-K-OMS-2 hydrothermal process. The effects of ageing temperature, ageing time and amount of copper (Cu) dopant were considered via using the Box-Behnken design (BBD) method to characterize the conditions for gaseous toluene degradation. In the models studied, the independent variables were ageing temperature (55-145ºC), ageing time (6-18 h) and amount of Cu dopant (2-6% mole). The quadratic model fitted very well with the experimental data (15 runs), which showed a higher value of R2 (0.98) and adjusted R2 (0.95), confirming that the model can explain the results successfully. Ageing temperature was found to be the only significant variable for the Cu-K-OMS-2 transformation phase, with CuO and the bixbyite phase appearing as the highest ageing temperature condition. Furthermore, the effects of ageing temperature, ageing time and amount of Cu dopant on the Cu3+/Cu2+ mole ratio were also investigated. Ageing temperature and amount of Cu dopant displayed a significant effect on both toluene removal and the Cu3+/Cu2+ mole ratio. On the other hand, ageing time was not significant for both responses. The high Cu3+/Cu2+ mole ratio led to enhancement of toluene removal. The optimized conditions for Cu-K-OMS-2 synthesis were determined as 120ºC of ageing temperature, 6 h of ageing time and 6% by mole of Cu on K-OMS-2, which removed 80% of toluene at a reaction temperature of 180ºC. 
     EN, publication_article_keyword Cu3+/Cu2+ ratios; VOC oxidation; Cryptomelane; Hydrothermal conditions; XPS 
EN, publication_article_writer
587040035-9 Miss CHATKAMOL KAEWBUDDEE [EN, publication_article_main_writer]
Engineering Doctoral Degree

EN, publication_article_evaluation มีผู้ประเมินอิสระ 
EN, publication_article_status ได้รับการตอบรับให้ตีพิมพ์ 
EN, publication_article_level นานาชาติ 
EN, publication_article_citation EN, publication_article_citation_false 
EN, publication_article_part_of_thesis EN, publication_article_part_of_thesis_true 
EN, publication_article_part_of_graduate EN, publication_article_part_of_graduate_false 
EN, publication_attachment_file
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