High efficient styrene mineralization through novel NiO-TiO2-Al2O3 packed pre-treatment/treatment/post-treatment dielectric barrier discharge plasma

2018 
Abstract A pre-treatment/treatment/post-treatment multiple functional dielectric barrier discharge (DBD) plasma is developed with different γ -Al 2 O 3 based catalysts packed in this research to deeply mineralize styrene and reduce by-products generation. NiO/ γ -Al 2 O 3 is packed in the first pre-treatment cell to effectively destroy the branched chains in styrene and weaken the benzene rings. TiO 2 / γ -Al 2 O 3 is packed in the second treatment cell due to their high catalytic oxidation activity to mineralize the generated aromatic compounds thoroughly. Finally, bare γ -Al 2 O 3 is packed in the last post-treatment cell to reduce the concentrations of by-products including O 3 and NO generated by air over oxidation. The combinations of these three catalysts are optimized through the treatment of 3000 mg m −3 styrene at specific input energy of 189 J L −1 . In comparison with single TiO 2 / γ -Al 2 O 3 packed reactor with the total discharge length of 8 cm, the selectivity of CO 2 can be significantly improved from 33% to 62% when the first 2 cm TiO 2 / γ -Al 2 O 3 is replaced by NiO/ γ -Al 2 O 3 . Furthermore, the concentrations of O 3 and NO in outlet can also be effectively reduced from 8.44 mg L −1 and 81 mg m −3 to 3.72 mg L −1 and 25 mg m −3 , respectively, when the last 2 cm TiO 2 / γ -Al 2 O 3 is replaced by bare γ -Al 2 O 3 . The effects of specific input energy and styrene initial concentration are also investigated.
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