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Specific biogas production and role of packing medium in the treatment of rubber thread manufacturing industry wastewater

机译:特定的沼气生产和填充介质在处理橡胶丝制造业废水中的作用

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摘要

Wastewater from three rubber thread manufacturing industries collected from three different sampling points was characterised. The acidic wastewater (pH = 3.6 to 4.7) contains high levels of COD, BOD, nitrogen and zinc. The average COD:N:P ratio was 100:3:8:0.4 whereas the BOD:N:P ratio was 100:4.5:0.4 with more than sufficient amounts of N and P for anaerobic digestion using the up-flow anaerobic filter. The specific biogas yield ranged between 0.250 to 0.069 1 CH_4/g COD added when the organic loading rate was altered from 2.0 to 14.0 g COD/l/d respectively. The biogas production rate and the biogas yield rate increased from 8.2 to 42.7 l/d and 0.97 to 1.50 l CH_4/l/d respectively, for the same organic loading rate. The N and P utilised ranged between 1.53 to 1.20 and 0.3 to 0.26 mg per 100 mg COD consumed respectively when the organic loading rate was increased from 2.0 to 14.0 g COD/l/d. The optimum COD:N:P ration obtained for steady state operation of the up-flow anaerobic filter in this study for the rubber thread manufacturing wastewater was 100:1.3:0.3. Attached biomass was responsible for the removal of more than 70% of the COD in the wastewater when PU foam was used as the packing media.
机译:表征了来自三个不同采样点的三个橡胶线制造行业的废水。酸性废水(pH = 3.6至4.7)中含有大量的COD,BOD,氮和锌。 COD:N:P的平均比率为100:3:8:0.4,而BOD:N:P的比率为100:4.5:0.4,其中使用上流厌氧滤池进行足够的N和P厌氧消化。当有机负荷率从2.0更改为14.0 g COD / l / d时,比沼气产量介于0.250至0.069 1 CH_4 / g COD之间。在相同的有机负荷率下,沼气生产速率和沼气产率分别从8.2增加到42.7 l / d,从0.97增加到1.50 l CH_4 / l / d。当有机负载量从2.0 gCOD / l / d增加到100 mg COD时,所使用的N和P分别在1.53至1.20和0.3至0.26 mg之间。对于橡胶丝生产废水,本研究中用于上流厌氧滤池稳态运行的最佳COD:N:P比为100:1.3:0.3。当使用PU泡沫作为填充介质时,附着的生物质负责去除废水中超过70%的COD。

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