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Mn/sepiolite as the heterogeneous ozonation catalysts applied to the advanced treatment of regenerated-papermaking wastewater

机译:Mn / Sepiolite作为非均相臭氧化催化剂应用于再生造纸废水的先进治疗

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Herein a Mn-deposited sepiolite catalyst was obtained through a facile co-precipitation method, and then used as the heterogeneous ozonation catalysts applied to the tertiary treatment of regenerated-papermaking wastewater. During the process, the as-prepared catalyst was endowed with higher Brunauer-Emmett-Teller specific surface area of 412.3 m(2)/g compared to 124.6 m(2)/g of the natural sepiolite. Hence, in the adsorption of methylene blue, the as-prepared catalyst was observed with a very high removal rate of 96.2% although a little lower than the modified sepiolite of 97.5% in 100 min. And for practical application, the catalyst was used for treating the effluent from regenerated-papermaking industry, via a heterogeneous catalytic ozonation process. Consequently, the highest color removal rate of 99.5%, and the highest chemical oxygen demand (COD) removal efficiency of 73.4% were achieved in 20 and 30 min, respectively. As a result, the treated wastewater was more biodegradable and less toxic; the biochemical oxygen demand (BOD5)/COD value could reach 0.41. Moreover, the catalyst showed superior stability at successive ozonation runs. The main possible reaction pathway is also presented. The results indicate that catalytic ozonation was proved to be effective when Mn/sepiolite was used as catalysts applied to the advanced treatment of regenerated-papermaking wastewater.
机译:这里通过容易共沉淀法获得Mn沉积的海珠沸菌素催化剂,然后用作施加到再生造纸废水的三级处理的非均相臭氧化催化剂。在该过程中,与124.6M(2)/ g的天然海泡石相比,用更高的Brunauer-Emmett-erker比表面积为412.3μm(2)/ g的制备催化剂。因此,在亚甲基蓝的吸附中,以非常高的去除率为96.2%的去除率观察到制备的催化剂,尽管在100分钟内的97.5%的改性海泡石略低。并且对于实际应用,催化剂用于通过非均相催化臭氧化工艺处理从再生造纸工业的流出物。因此,在20至30分钟分别在20和30分钟内实现了99.5%的最高色彩去除率为99.5%,最高的化学需氧量(COD)去除效率为73.4%。结果,处理过的废水更生物降解,毒性较小;生物化氧需求(BOD5)/ COD值可以达到0.41。此外,催化剂在连续的臭氧过程中显示出优异的稳定性。还提出了主要可能的反应途径。结果表明,当Mn / Sepiolite用作应用于再生造纸废水的先进治疗的催化剂时,证明催化臭氧化有效。

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