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Effect of particle size on the performance of autotrophic nitrogen removal in the granular sludge bed reactor and microbiological mechanisms

机译:粒度对颗粒污泥床反应器自养氮去除性能的影响及微生物学机理

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摘要

The effect of particle size on the performance of autotrophic nitrogen removal in the granular sludge bed reactor (GSB-ANR) and microbiological mechanisms were investigated. The results indicated that performance of GSB-ANR process decreased gradually with the increase of the granular sludge size. Indeed small granules ranging between 0.5 and 0.9 mm had a higher nitrogen removal capacity than large ones. The reasons of this effect were that (i) the aerobic ammonium oxidizing capacity of microorganisms was the bottle neck of nitrogen removal in GSB-ANR process, and the increase of aerobic ammonium oxidizing activity enhances nitrite production in nitrification and promotes subsequent nitrite consumption during anaerobic ammonia oxidation; (ii) the aerobic/anaerobic zone separation in granular sludge was the key factor affecting the aerobic ammonium oxidizing capacity of microorganisms. The small granules had a larger aerobic functional zone (75.1%) which was profitable for up-regulating the expression level of functional gene in aerobic ammonium oxidizing microorganisms.
机译:研究了颗粒大小对颗粒污泥床反应器(GSB-ANR)自养氮去除性能的影响以及微生物机理。结果表明,随着颗粒污泥粒度的增加,GSB-ANR工艺的性能逐渐降低。实际上,介于0.5到0.9毫米之间的小颗粒具有比大颗粒更高的脱氮能力。造成这种影响的原因是:(i)微生物的需氧铵氧化能力是GSB-ANR工艺中脱氮的瓶颈,需氧铵氧化活性的提高可提高硝化作用中亚硝酸盐的产生并促进随后厌氧过程中亚硝酸盐的消耗。氨氧化(ii)颗粒污泥中好氧/厌氧区的分离是影响微生物好氧铵氧化能力的关键因素。这些小颗粒具有较大的需氧功能区(75.1%),有利于上调需氧铵氧化微生物中功能基因的表达水平。

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