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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Advanced oxidation process and biotreatment: Their roles in combined industrial wastewater treatment
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Advanced oxidation process and biotreatment: Their roles in combined industrial wastewater treatment

机译:先进的氧化工艺和生物处理:在联合工业废水处理中的作用

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摘要

The use of Fenton's reagents in destruction of waste material present in Tambla Tributory (Durgapur, India) industrial wastewater has been investigated. Significant drop in COD removal has been observed. Optimisation of process parameters like pH, temperature, H2O2 and FeSO4 has been done. Temperature and pH played a key role in this treatment process, in addition the process initially liberated heat due to reaction between FeSO4 and H2O2. From the experimental results it has been observed that with increasing FeSO4 and H2O2 concentration the degradation of waste increases. At an optimum concentration of FeSO4 (6 gm/l) and H2O2 44.40 gm/l reduced 60% COD, whereas 220gm/l H2O2 was required for 95% COD removal. To reduce cost and the H2O2 concentration for maximum waste degradation, Fenton's oxidation process followed by biochemical treatment was tried at same experimental condition. The treatment enhanced the overall removal efficiency of COD, BOD, salinity and colour significantly. The microbial treatment by Thiobacillus ferrooxidans, following Fenton's reagents treatment, showed that the COD reduction has reached to about 97% compared to 60% with Fenton's reagents and 17% with T. ferrooxidans alone in 24 h, showing the synergistic effect. Thus the combined treatment results indicate the possibility to minimize the Fenton's reagents without compromising the efficiency of the process but ultimately reducing the overall treatment cost This study seems to be very much important and economical by reducing the required H2O2 amount to about five times using a suitable microorganism. This hybrid treatment system showed 97% COD reduction can be achieved within two days.
机译:已经研究了使用Fenton试剂破坏销毁Tambla Tributory(印度Durgapur,印度)工业废水中存在的废料的方法。已观察到COD去除量显着下降。已经完成了工艺参数的优化,例如pH,温度,H2O2和FeSO4。温度和pH在此处理过程中起着关键作用,此外,由于FeSO4和H2O2之间的反应,该过程最初释放了热量。从实验结果可以看出,随着FeSO4和H2O2浓度的增加,废物的降解增加。在FeSO4(6 gm / l)和H2O2的最佳浓度下,44.40 gm / l降低了60%的COD,而220gm / l的H2O2需要95%的COD去除。为了降低成本和降低H2O2的浓度以最大程度地减少废物的降解,在相同的实验条件下尝试了Fenton的氧化过程及其生化处理。该处理显着提高了COD,BOD,盐度和颜色的总体去除效率。 Fenton试剂处理后,铁氧化硫杆菌对微生物的处理表明,在24小时内,COD减少量达到了约97%,相比之下,仅Fenton试剂为60%,T。铁氧化铁为17%,显示出协同作用。因此,综合处理结果表明有可能在不影响工艺效率的情况下将Fenton试剂减至最少,但最终降低了总体处理成本。通过使用适当的方法将所需的H2O2量减少约5倍,这项研究似乎非常重要且经济。微生物。这种混合处理系统显示,两天内可减少97%的COD。

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