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Biodegradability and methane production from secondary paper and pulp sludge: effect of fly ash and modeling

机译:二次纸和纸浆污泥的生物降解性和甲烷生产:粉煤灰和模型的影响

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摘要

The effect of fly ash on biodegradability and methane production from secondary paper and pulp sludge, including its modeling, was evaluated. Three tests with fly ash concentrations of 0, 10 and 20 mg/L were evaluated at 32 degrees C. Methane production was modeled using the modified Gompertz equation. The results show that the doses used produce a statistically significant increase of accumulated methane, giving values greater than 225 mL of CH4 per gram of volatile solids (VS) added, and 135% greater than that obtained in the control assay. Biodegradability of VS increased 143% with respect to the control assays, giving values around 43%. The modified Gompertz model can describe well methane generation from residual sludge of the paper industry water treatment, with parameter values between those reported in the literature. Thus, the addition of fly ash to the process causes a significant increase of accumulated methane and VS removal, improving the biodegradability of paper and pulp sludge.
机译:评估了粉煤灰对二次纸和纸浆污泥可生物降解性和甲烷生产的影响,包括其模型。在32摄氏度下对粉煤灰浓度分别为0、10和20 mg / L的三个测试进行了评估。使用修正的Gompertz方程对甲烷生产进行建模。结果表明,所使用的剂量在统计学上显着增加了甲烷的累积量,使每克添加的挥发性固体(VS)的CH4值大于225 mL,比对照测定高出135%。相对于对照试验,VS的生物降解性提高了143%,值约为43%。改进的Gompertz模型可以描述造纸工业水处理过程中残留污泥产生的甲烷,参数值介于文献报道的值之间。因此,向过程中添加粉煤灰会显着增加累积的甲烷和VS去除量,从而改善纸和纸浆污泥的生物降解性。

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