Nitrate Removal from Actual Wastewater by Coupling Sulfur-Based Autotrophic and Heterotrophic Denitrification under Different Influent Concentrations

被引:18
作者
Liu, Feng [1 ,2 ]
Wang, Suqin [1 ]
Zhang, Xuezhi [1 ]
Qian, Feiyue [1 ]
Wang, Yaobing [1 ]
Yin, Yao [3 ]
机构
[1] Suzhou Univ Sci & Technol, Sch Environm Sci & Engn, Suzhou 215009, Peoples R China
[2] Natl & Local Joint Engn Lab Municipal Sewage Reso, Suzhou 215009, Peoples R China
[3] Shanghai Municipal Engn Design Inst Grp Co Ltd, Shanghai 200092, Peoples R China
关键词
actual nitrate wastewater; sulfur autotrophic denitrification; coupled denitrification; removal performance; microbial community; MICROBIAL COMMUNITY; NITROGEN REMOVAL; THIOSULFATE; SULFIDE; DRIVEN; SLUDGE;
D O I
10.3390/w13202913
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Contamination of wastewater with organic-limited nitrates has become an urgent problem in wastewater treatment. The cooperating heterotrophic with sulfur autotrophic denitrification is an alternative process and the efficiency has been assessed in many studies treating simulated wastewater under different operating conditions. However, due to the complex and diverse nature of actual wastewater, more studies treating actual wastewater are still needed to evaluate the feasibility of collaborative denitrification. In this study, lab-scale experiments were performed with actual nitrate polluted water of two different concentrations, with glucose and sodium thiosulfate introduced as mixed electron donors in the coupling sulfur-based autotrophic and heterotrophic denitrification. Results showed that the optimum denitrification performance was exhibited when the influent substrate mass ratio of C/N/S was 1.3/1/1.9, with a maximum denitrification rate of 3.52 kg NO3--N/(m(3) day) and nitrate removal efficiency of 93% in the coupled systems. Illumina high-throughput sequencing analysis revealed that autotrophic, facultative, and heterotrophic bacteria jointly contributed to high nitrogen removal efficiency. The autotrophic denitrification maintained as the predominant process, while the second most prevalent denitrification process gradually changed from heterotrophic to facultative with the increase of influent concentration at optimum C/N/S ratio conditions. Furthermore, the initiation of dissimilatory nitrate reduction to ammonium (DNRA) was very pivotal in promoting the entire denitrification process. These results suggested that sulfur-based autotrophic coupled with heterotrophic denitrifying process is an alternative and promising method to treat nitrate containing wastewater.</p>
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页数:13
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共 41 条
[11]   Nitrite accumulation in continuous-flow partial autotrophic denitrification reactor using sulfide as electron donor [J].
Liu, Chunshuang ;
Li, Wenfei ;
Li, Xuechen ;
Zhao, Dongfeng ;
Ma, Bin ;
Wang, Yongqiang ;
Liu, Fang ;
Lee, Duu-Jong .
BIORESOURCE TECHNOLOGY, 2017, 243 :1237-1240
[12]   Effect of iron on enhanced nitrogen removal from wastewater by sulfur autotrophic denitrification coupled to heterotrophic denitrification under different substrate ratios [J].
Liu, Hong ;
Zeng, Wei ;
Fan, Zhiwei ;
Li, Jianmin ;
Zhan, Mengjia ;
Peng, Yongzhen .
CHEMICAL ENGINEERING JOURNAL, 2021, 421
[13]   Study of a combined heterotrophic and sulfur autotrophic denitrification technology for removal of nitrate in water [J].
Liu, Huijuan ;
Jiang, Wei ;
Wan, Dongjin ;
Qu, Jiuhui .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 169 (1-3) :23-28
[14]   Connecting biodiversity and potential functional role in modern euxinic environments by microbial metagenomics [J].
Llorens-Mares, Tomas ;
Yooseph, Shibu ;
Goll, Johannes ;
Hoffman, Jeff ;
Vila-Costa, Maria ;
Borrego, Carles M. ;
Dupont, Chris L. ;
Casamayor, Emilio O. .
ISME JOURNAL, 2015, 9 (07) :1648-1661
[15]   Effect of sulfide concentration on autotrophic denitrification from nitrate and nitrite in vertical fixed-bed reactors [J].
Moraes, B. S. ;
Souza, T. S. O. ;
Foresti, E. .
PROCESS BIOCHEMISTRY, 2012, 47 (09) :1395-1401
[16]   Electron distribution in sulfur-driven autotrophic denitrification under different electron donor and acceptor feeding schemes [J].
Oberoi, Akashdeep Singh ;
Huang, Haiqin ;
Khanal, Samir Kumar ;
Sun, Lianpeng ;
Lu, Hui .
CHEMICAL ENGINEERING JOURNAL, 2021, 404
[17]   Enhancement of nitrate removal in constructed wetlands utilizing a combined autotrophic and heterotrophic denitrification technology for treating hydroponic wastewater containing high nitrate and low organic carbon concentrations [J].
Park, Jong-Hwan ;
Kim, Seong-Heon ;
Delaune, Ronald D. ;
Cho, Ju-Sik ;
Heo, Jong-Soo ;
Ok, Yong Sik ;
Seo, Dong-Cheol .
AGRICULTURAL WATER MANAGEMENT, 2015, 162 :1-14
[18]   Comparison of nitrogen removal and microbial distribution in wastewater treatment process under different electron donor conditions [J].
Park, Sora ;
Seon, Jiyun ;
Byun, Imgyu ;
Cho, Sunja ;
Park, Taejoo ;
Lee, Taeho .
BIORESOURCE TECHNOLOGY, 2010, 101 (09) :2988-2995
[19]   A novel integrated thiosulfate-driven denitritation (TDD) and anaerobic ammonia oxidation (anammox) process for biological nitrogen removal [J].
Qian, Jin ;
Zhang, Mingkuan ;
Pei, Xiangjun ;
Zhang, Zhen ;
Niu, Juntao ;
Liu, Yu .
BIOCHEMICAL ENGINEERING JOURNAL, 2018, 139 :68-73
[20]   A comparative study on denitrifying sludge granulation with different electron donors: Sulfide, thiosulfate and organics [J].
Qian, Jin ;
Wei, Li ;
Wu, Yaoguo ;
Wang, Qilin ;
Fu, Xiaoying ;
Zhang, Xiaochao ;
Chang, Xing ;
Wang, Lianlian ;
Pei, Xiangjun .
CHEMOSPHERE, 2017, 186 :322-330