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燃煤厂烟气脱硫废水处理新策略及其作用机制
引用本文:柴小康,黄国和,解玉磊,李薇.燃煤厂烟气脱硫废水处理新策略及其作用机制[J].科学技术与工程,2020,20(19):7958-7962.
作者姓名:柴小康  黄国和  解玉磊  李薇
作者单位:华北电力大学环境科学与工程学院,北京 102206;北京科技大学能源与环境工程学院,北京100083
基金项目:碳市场与电力市场交互作用下我国低碳电力发展研究 编号(71603016)
摘    要:为了探究颗粒污泥对燃煤厂烟气脱硫废水营养型污染物的去除及微生物种群结构的变化特征,建立序批式厌氧/好氧反应器,以预处理后的燃煤厂烟气脱硫废水为研究对象,分析了污泥颗粒化进程中污泥特征,营养型污染去除及微生物群落结构的演变规律。结果表明污泥颗粒化进程中污泥沉降指数(SVI)显著下降,污泥中生物量显著升高,在120 d时,SVI下降至62 mL/g,混合液总悬浮固体(MLTSS)升高至7.1 g/L。此外颗粒污泥胞外聚合物中蛋白质(PN)显著提高,PN/多糖(PS)升高至2.71-2.74。在稳定运行期,颗粒污泥对COD,NH4+-N及总磷(TP)去除效率分别高达89.25-89.56%,93.4%和73.2%。微生物群落结构演变揭示污泥颗粒化进程提高Comamonadaceae及Pseudomonadaceae的相对丰度,从而提高脱氮除磷效率。

关 键 词:颗粒污泥  含硫废水  污泥沉降指数  微生物群落
收稿时间:2020/1/16 0:00:00
修稿时间:2020/3/24 0:00:00

New strategy and mechanism of flue gas desulfurization wastewater treatment in coal-fired plant
Chai Xiaokang,Huang Guohe,Xie Yulei,Li Wei.New strategy and mechanism of flue gas desulfurization wastewater treatment in coal-fired plant[J].Science Technology and Engineering,2020,20(19):7958-7962.
Authors:Chai Xiaokang  Huang Guohe  Xie Yulei  Li Wei
Institution:College of Environmental Science and Engineering, North China Electric Power University
Abstract:In order to investigate the removal of nutrient pollutants from flue gas desulfurization wastewater from coal fired plants and the characteristics of microbial population structure changes in granular sludge, a sequential batch anaerobic/oxic reactor was established to pre-process coal fired plant smoke. The gas desulfurization wastewater was taken as the research object, and the sludge characteristics, nutrient pollution removal, and microbial community structure evolution during sludge granulation were analyzed. The results showed that the sludge volume index (SVI) decreased significantly during sludge granulation, and the biomass in the sludge increased significantly. At 120 d, the SVI decreased to 62 mL / g, and the mixed liquid total suspended solids (MLTSS) increased to 7.1 g/L. In addition, the protein (PN) in the extracellular polymers of granular sludge increased significantly, and PN/PS increased to 2.71-2.74. During the stable operation, the removal efficiencies of COD, NH4+-N and total phosphorus (TP) by granular sludge was 89.25-89.56%, 93.4% and 73.2%, respectively. The evolution of microbial community structure revealed that the sludge granulation process increased the relative abundance of Comamonadaceae and Pseudomonadaceae, thereby improving the efficiency of nitrogen and phosphorus removal.
Keywords:Granular sludge  Sulfur-containing wastewater  Sludge volume index  Microbial community
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