首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancement of pollutants removal from saline wastewater through simultaneous anammox and denitrification (SAD) process with glycine betaine addition
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Enhancement of pollutants removal from saline wastewater through simultaneous anammox and denitrification (SAD) process with glycine betaine addition

机译:通过同时厌氧和反硝化(SAD)加工从盐水废水中从盐水废水中除去污染物的增强

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Enhanced pollutants removal from saline wastewater was investigated in simultaneous anammox and denitrification (SAD) process with glycine betaine (GB) addition. Long-term operation indicated the optimal GB dose was around 0.4 mM, which enhanced both anammox and denitrifying activity by 30% and 45%, respectively. The total nitrogen and organic removal rates were 0.38 +/- 0.2 kgN/m(3)/d and 0.34 +/- 0.3 kgCOD/m(3)/d, respectively, which increased by 34.5% and 20.5%. Independent of GB dose, denitrifying activity was promoted, but anammox activity was drastically deteriorated after excessive GB addition. The optimal GB dose predicated by both Gaussian and Modified-Boltzmann models were 0.42-0.45 mM. Besides, the bacterial activity recovery after excessive GB addition could be analyzed by the Modified-Boltzmann model. With 1.5 mM GB, granular floatation occurred since numerous gas bubbles were inside the granules. In general, exogenous GB addition can mitigate salinity inhibition and promote pollutants removal from saline wastewater.
机译:用甘氨酸甜菜碱(GB)加入,研究了同时厌氧和反硝化(SAD)方法的增强了从盐水废水中除去的污染物。长期操作表明最佳GB剂量约为0.4mm,其分别将厌氧毒素和反硝化活性增强30%和45%。总氮和有机去除率分别为0.38 +/- 0.2kgn / m(3)/ d和0.34 +/- 0.3kgcod / m(3)/ d,增加34.5%和20.5%。独立于GB剂量,促进了反硝化活性,但在过量的GB加入后,厌氧活性急性劣化。高斯和改性-Boltzmann模型预测的最佳GB剂量为0.42-0.45毫米。此外,可以通过改进的-Boltzmann模型分析过多的GB添加后的细菌活性恢复。对于1.5mm GB,由于颗粒内部的气泡在颗粒内部,发生粒状浮选。通常,外源性GB添加可以减轻盐度抑制并促进从盐水废水中去除污染物。

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