Sun Hong-Wei, Chen Cui-Zhong, Wu Chang-Feng, Zhao Hua-Nan, Yu Xue, Fang Xiao-Hang
School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou 730070, China.
Lanzhou Veolia Water(group) Co. Ltd., Lanzhou 730060, China.
Huan Jing Ke Xue. 2017 Nov 8;38(11):4648-4655. doi: 10.13227/j.hjkx.201704270.
In this paper, the long-term effects of temperature on the nitrogen removal performance and the extracellular polymeric substance (EPS) in a sequencing batch reactor (SBR) treating synthetic wastewater was investigated under three temperature conditions (15℃, 25℃, 35℃). The results showed that high temperatures (35℃) could promote the establishment of short-cut nitrification processes and improve nitrogen removal performance greatly. Temperature had a significant impact on the EPS and its composition. With an increased temperature, the EPS and tightly bound EPS (TB-EPS) content decreased, while, loosely bound EPS (LB-EPS) increased slowly. TB-EPS became dominant in the EPS (the percentage of TB-EPS/EPS was 69.0%-79.5%), however, the ratio of TB-EPS/LB-EPS decreased from 3.8 (15℃) to 3.6 (25℃), and then to 2.2 (35℃) with a gradual increase in temperature. Moreover, protein (PN) and DNA in the EPS, TB-EPS, and LB-EPS decreased with an increasing temperature. Carbohydrates (PS) in the EPS and LB-EPS increased as temperature increased, nevertheless, PS in TB-EPS decreased. Furthermore, 25℃ was identified as the breaking-point temperature in the variation of PN, DNA and PS concentrations. At 15℃ and 25℃, PN was the main component in TB-EPS and LB-EPS. PS has the second highest concentration and DNA the least. However, PS were the dominant component at 35℃, with PN having the second highest concentration, and DNA having a subtle concentration. Moreover, at 15℃ and 25℃, the EPS content increased in the nitrification process and reduced in the denitrification process.
本文研究了在三个温度条件(15℃、25℃、35℃)下,温度对序批式反应器(SBR)处理模拟废水时脱氮性能及胞外聚合物(EPS)的长期影响。结果表明,高温(35℃)可促进短程硝化过程的建立,并显著提高脱氮性能。温度对EPS及其组成有显著影响。随着温度升高,EPS和紧密结合型EPS(TB-EPS)含量降低,而松散结合型EPS(LB-EPS)缓慢增加。TB-EPS在EPS中占主导地位(TB-EPS/EPS的百分比为69.0%-79.5%),然而,随着温度逐渐升高,TB-EPS/LB-EPS的比例从3.8(15℃)降至3.6(25℃),然后降至2.2(35℃)。此外,EPS、TB-EPS和LB-EPS中的蛋白质(PN)和DNA随温度升高而降低。EPS和LB-EPS中的碳水化合物(PS)随温度升高而增加,不过,TB-EPS中的PS降低。此外,25℃被确定为PN、DNA和PS浓度变化的转折点温度。在15℃和25℃时,PN是TB-EPS和LB-EPS中的主要成分。PS浓度次之,DNA浓度最低。然而,在35℃时,PS是主要成分,PN浓度次之,DNA浓度较低。此外,在15℃和25℃时,硝化过程中EPS含量增加,反硝化过程中EPS含量降低。