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Study on the inhibitory effect of mimosa extract on anaerobic fermentation

机译:含羞草提取物对厌氧发酵的抑制作用研究

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Concerning the treatment of tannery wastewater with high COD (chemical oxygen demand), the effective process is physical-chemical and anaerobic treatment. The core technology of anaerobic treatment is to test the performance of anaerobic degradation of organic matter, clarify the inhibitory effect and inhibitory mechanism of pollutant. In this paper, anaerobic degradation and inhibitory effect of mimosa extract were studied. In the course of the experiment, the production of methane, the activity of sludge, the content of coenzyme F420, the content of extracellular polymeric substances(EPS), the content of extracellular protein(EP) were been tested, the mimosa extract and degradation products were been tested by Fourier transform infrared spectroscopy (FT-IR). The results indicated that the 50% inhibitory concentration of mimosa extract is about 3.85g/L, the anaerobic fermentation has been inhibited is owing to mimosa extract has the inhibition on methanogenic activity of methanogens, the production of methane, the activity of sludge and the content of coenzyme F420 are getting lower and lower with the increase in content of mimosa extract. The characterization of FTIR showed that the mimosa extract has been degraded in anaerobic fermentation. These all indicated that mimosa extract can inhibit the anaerobic fermentation, and the greater amount, resulting in stronger inhibition, in appropriate concentrations, mimosa extract can be degraded by anaerobic fermentation. The results can provide guidance for anaerobic treatment of tannery wastewater with high COD.
机译:对于高化学需氧量(化学需氧量)的制革废水的处理,有效的过程是物理化学和厌氧处理。厌氧处理的核心技术是测试有机物的厌氧降解性能,阐明污染物的抑制作用和抑制机理。本文研究了含羞草提取物的厌氧降解及其抑制作用。在实验过程中,测试了甲烷的产生,污泥的活性,辅酶F420的含量,细胞外聚合物的含量(EPS),细胞外蛋白的含量(EP),含羞草提取物和降解过程。产品通过傅立叶变换红外光谱(FT-IR)进行了测试。结果表明,含羞草提取物抑制50%浓度约为3.85g / L,厌氧发酵被抑制是由于含羞草提取物对产甲烷菌产甲烷活性,甲烷的产生,污泥的活性和微生物的抑制。随着含羞草提取物含量的增加,辅酶F420的含量越来越低。 FTIR的表征表明,含羞草提取物在厌氧发酵中已经降解。这些都表明含羞草提取物可以抑制厌氧发酵,并且其含量更大,从而抑制作用更强,在适当的浓度下,含羞草提取物可以通过厌氧发酵而降解。研究结果可为高COD制革废水的厌氧处理提供指导。

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