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首页> 外文期刊>Environmental Science and Pollution Research >A review and investigation of the effect of nanophotocatalytic ozonation process for phenolic compound removal from real effluent of pulp and paper industry
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A review and investigation of the effect of nanophotocatalytic ozonation process for phenolic compound removal from real effluent of pulp and paper industry

机译:纸浆和造纸工业真正流出物酚类化合物去除酚醛复合型臭氧化合物效果的综述与研究

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摘要

Phenol and its derivatives are the major environmental pollutants discharged from paper and pulp industries into water bodies. All these compounds and chlorinated phenolic compounds in particular are very toxic to fauna and flora, even at relatively low concentration. This study aimed to investigate the removal rate of phenolic compounds from the effluent of pulp and paper industries using a combination of ozonation and photocatalytic processes. Firstly, a certain volume from the effluent of paper and pulp industries containing certain phenol concentrations was obtained and fed into a prefabricated reactor at laboratory scale. Then, the combined and separate effects of zinc oxide dosage (ZnO), ozone flow rate (O-3), and pH under ultra violet radiation for 30 min were evaluated. The concentration of phenolic compounds and the produced ozone gas flow rate were measured by a spectrophotometry and iodometric method, respectively. The results showed that the phenolic removal rate increased at acidic PHs compared with alkaline PHs; it was also decreased with the increase in ZnO dosages. Furthermore, the highest phenolic compound's removal rate was 99% at the optimal condition (pH 5, ZnO dosage of 0.1 g L-1 at the 30 min with UV-C illumination of 125 W). Finally, Daphnia toxicity test showed that treated effluent was safe and met the standards to the extent that it can be discharged into the receiving waters.
机译:苯酚及其衍生物是从纸张和纸浆行业排放到水体中的主要环境污染物。甚至在相对较低的浓度下,所有这些化合物和氯化酚类化合物尤其对动物和植物群非常有毒。该研究旨在使用臭氧化和光催化过程的组合研究来自纸浆和纸张工业流出物的酚类化合物的去除率。首先,获得来自纸张的流出物的一定体积和含有某些酚浓度的纸浆行业,并在实验室规模中加入预制反应器中。然后,评价氧化锌剂量(ZnO),臭氧流速(O-3)和超紫辐射30分钟的合并和单独的效果。通过分光光度法和碘量法测量酚类化合物和产生的臭氧气体流速的浓度。结果表明,与碱性pHS相比,酚醛去除率在酸性pH中增加;随着ZnO剂量的增加,它也降低。此外,最高酚类化合物的去除率为99%,在最佳条件下为99%(在30分钟内在30分钟的30分钟的30分钟的pH 5,ZnO剂量为0.1g l-1的ZnO剂量.125W)。最后,Daphnia毒性测试表明,处理过的流出物是安全的,并达到标准,以至于它可以排放到接收水域中。

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