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首页> 外文期刊>Separation and Purification Technology >Physicochemical characteristics and microbial community of cultivated sludge for nitrate-dependent anaerobic ferrous-oxidizing (NAFO) process
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Physicochemical characteristics and microbial community of cultivated sludge for nitrate-dependent anaerobic ferrous-oxidizing (NAFO) process

机译:硝酸盐依赖性厌氧亚铁氧化(NAFO)过程的污泥的理化特性和微生物群落

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The nitrate-dependent anaerobic ferrous oxidizing (NAFO) is a newly discovered bioprocess, which is valuable to develop autotrophic denitrifying technology. In this work, the physicochemical characteristics and microbial community of the cultivated sludge (NAFO sludge) from a lab-scale reactor operating for over 200 days were investigated. A comparison between the seeding sludge and NAFO sludge was also carried out. The results showed that the NAFO sludge possessed distinctly high settleability, and the average settling velocity was 390.1 +/- 161.3 m/h. The increasing particle size and density, with average values of 1469 +/- 65 mu m (surface area-weighed mean diameter, SMD)/2389 +/- 132 mu m (volumetric-weighed mean diameter, VMD) and 1580 +/- 80 kg/m(3), were revealed to the main factors causing the profile of excellent settleability. High content of iron with peak value of 87.5% (wt) was detected in NAFO sludge, which was mainly in the form of oxide compounds, such as hematite and magnetite, endowing unique morphology characteristics of NAFO sludge. After the long-term operation, a microbial succession was supposed to occur in the granular sludge, and the dominant bacterial communities in the NAFO sludge were Gamma-proteobacteria, Thermoleophilia, Clostridia and Alpha-proteobacteria classes. The present work will benefit the development of NAFO technology, and also the separation and iron-recycling processes of the NAFO sludge. (C) 2016 Elsevier B.V. All rights reserved.
机译:硝酸盐依赖性厌氧亚铁氧化(NAFO)是一个新发现的生物过程,对于开发自养反硝化技术具有重要价值。在这项工作中,研究了运行超过200天的实验室规模反应器中培养污泥(NAFO污泥)的理化特性和微生物群落。还对播种污泥和NAFO污泥进行了比较。结果表明,NAFO污泥具有很高的沉降能力,平均沉降速度为390.1 +/- 161.3m / h。不断增加的粒度和密度,平均值分别为1469 +/- 65微米(表面积加权平均直径,SMD)/ 2389 +/- 132微米(体积加权平均直径,VMD)和1580 +/- 80 kg / m(3)是导致出色沉降性的主要因素。在NAFO污泥中检测到高含量的铁,其峰值为87.5%(wt),主要以赤铁矿和磁铁矿等氧化物的形式存在,赋予了NAFO污泥独特的形态特征。长期运行后,应该认为颗粒污泥中会发生微生物演替,而NAFO污泥中的主要细菌群落为γ-变形杆菌,嗜热嗜热菌,梭状芽胞杆菌和α-变形杆菌。目前的工作将有利于NAFO技术的发展,也有利于NAFO污泥的分离和铁回收工艺。 (C)2016 Elsevier B.V.保留所有权利。

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