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Treatment of chemical-pharmaceutical wastewater in packed bed anaerobic reactors

机译:填充床厌氧反应器中化学制药废水的处理

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Biological degradation in packed bed anaerobic mesophilic reactors with five different support materials was studied for the treatment of chemical-pharmaceutical wastewater with high COD (23-31 g/L), which contains toxic organic compounds. Experimental up-flow bio-filters were operated at different organic loads for a two-year period. Removals of 80-98% were obtained in the reactors with sand, anthracite and black tezontle, but at relatively low organic loads, less than 3.6 kg m(-3) d(-1). The reactor with granular activated carbon (GAC) had a better performance; efficiencies higher than 95% were obtained at loads up to 17kg m(-3) d(-1) and higher than 80% with loads up to 26 kg m(-3) d(-1). Second in performance was the reactor with red tezontle which allows COD removals higher than 80% with loads up to 6 kg m(-3) d(-1). The use of GAC as support material allows greater biodegradation rates than the rest of the materials and it makes the process more resistant to organic load increases, inhibition effects and toxicity. Methanogenic activity was inhibited at loads higher than 21.9 kg m(-3) d(-1) in the GAC-reactor and at loads higher than 3.6 kg m(-3) d(-1) in the rest of the reactors. At loads lower than the previously mentioned, high methane production yield was obtained, 0.32-0.35 m(3)CH(4)/kg CODremoved.
机译:研究了使用五种不同载体材料的填充床厌氧中温反应器的生物降解,以处理高COD(23-31 g / L)的化学制药废水,其中含有有毒的有机化合物。实验性上流式生物滤池在不同的有机负荷下运行了两年。在反应器中,用沙子,无烟煤和黑色tezontle去除80-98%,但在相对较低的有机负荷下,小于3.6 kg m(-3)d(-1)。颗粒状活性炭(GAC)反应器具有较好的性能。负载最大为17kg m(-3)d(-1)时,效率高于95%;负载最大为26 kg m(-3)d(-1)时,效率高于80%。性能第二的是带红色tezontle的反应器,在负载高达6 kg m(-3)d(-1)的情况下,COD去除率超过80%。与其他材料相比,使用GAC作为载体材料可实现更高的生物降解速率,并且使该工艺对有机负荷增加,抑制作用和毒性的耐受性更高。在GAC反应器中,负载量高于21.9 kg m(-3)d(-1)时,甲烷生成活性受到抑制;在其余反应堆中,负载量高于3.6 kg m(-3)d(-1)。在低于前面提到的负荷时,获得了高甲烷产量,去除了0.32-0.35 m(3)CH(4)/ kg COD。

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