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Effect of aluminium and sulphate on anaerobic digestion of sludge from wastewater enhanced primary treatment

机译:铝和硫酸盐对废水强化初处理厌氧消化污泥的影响

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The combined and individual effects of aluminium and sulphate at concentrations of 1,000 mg/l as Al(OH)(3) and 150 mgSO(4) (2-)/L as K2SO4, respectively, on the anaerobic digestion of sludge from enhanced primary treatment (EPT) were evaluated in 1 L capacity semi continuous reactors. It was found that at 59 days, aluminium inhibits the specific methanogenic activity (SMA) of methanogenic and acetogenic bacteria resulting in a 50% to 72% decrease. Sulphate also inhibits (48% to 65%) the SIVIA of the same type of bacteria. Methanogenic and acetogenic bacteria were able to adapt, to a different extent, to the assayed concentrations of aluminium and sulphate. However, the combination of aluminium and sulphate resulted in a higher inhibition, especially of the hydrogenophilic methanogenic bacteria. Indeed, this effect remained during the time of the experiment, maintaining an inhibition of 44% at 114 days. Feeding with EPT sludge led to a bigger decrease in SIVIA of each bacterial group, with respect to the other treatments with time. It is concluded that the acidification of anaerobic reactors fed with EPT sludge is due, among other causes, to the concurrent presence of aluminium and sulphate. [References: 10]
机译:铝和硫酸盐分别以Al(OH)(3)和150 mgSO(4)(2-)/ L(以K2SO4)的浓度对厌氧消化污泥的综合作用和个别作用在1 L容量的半连续反应器中评估处理(EPT)。发现在第59天,铝抑制产甲烷菌和产乙酸菌的比产甲烷活性(SMA),导致降低50%至72%。硫酸盐还抑制(48%至65%)相同类型细菌的SIVIA。产甲烷和产乙酸细菌能够在不同程度上适应铝和硫酸盐的测定浓度。然而,铝和硫酸盐的结合导致更高的抑制,特别是对嗜氢的产甲烷细菌的抑制。实际上,该效果在实验期间一直保持,在114天时保持44%的抑制率。与其他处理方法相比,用EPT污泥进料导致每个细菌组的SIVIA下降幅度更大。得出的结论是,除其他原因外,由于同时存在铝和硫酸盐,使带有EPT污泥的厌氧反应器发生酸化。 [参考:10]

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