32 |
WANG Lukun. Study on nitrogen removal mechanism of anaerobic ammonium oxidation coupled with sulfur autotrophic short-range denitrification process for treating high-salt wastewater[D]. Qingdao: Qingdao University, 2020.
|
33 |
CHEN Wenjing, HU Fan, LI Xueting, et al. Deciphering the mechanism of medium size anammox granular sludge driving better nitrogen removal performance[J]. Bioresource Technology, 2021, 336: 125317.
|
34 |
LAWSON Christopher E, WU Sha, BHATTACHARJEE Ananda S, et al. Metabolic network analysis reveals microbial community interactions in anammox granules[J]. Nature Communications, 2017, 8(1): 15416.
|
35 |
WANG Shaopo, LIU Yuan, NIU Qigui, et al. Nitrogen removal performance and loading capacity of a novel single-stage nitritation-anammox system with syntrophic micro-granules[J]. Bioresource Technology, 2017, 236: 119-128.
|
36 |
ZHANG Zhengzhe, CHENG Yafei, LIU Yingyi, et al. Deciphering the evolution characteristics of extracellular microbial products from autotrophic and mixotrophic anammox consortia in response to nitrogen loading variations[J]. Environment International, 2019, 124: 501-510.
|
37 |
XU Lianzengji, ZHANG Quan, FU Jinjin, et al. Deciphering the microbial community and functional genes response of anammox sludge to sulfide stress[J]. Bioresource Technology, 2020, 302: 122885.
|
38 |
Jesús REYES-AVILA, Elı́as RAZO-FLORES, GOMEZ Jorge. Simultaneous biological removal of nitrogen, carbon and sulfur by denitrification[J]. Water Research, 2004, 38(14/15): 3313-3321.
|
39 |
董颖. 基于厌氧氨氧化和自养反硝化耦合工艺同步脱氮除硫研究[D]. 济南: 山东大学, 2020.
|
|
DONG Ying. The study of the simultaneous removal of nitrogen and sulfide based on Anammox and autotrophic denitrification processes[D]. Jinan: Shandong University, 2020.
|
40 |
DUAN Yuhan, JIANG Zhiwei, WU Zheng, et al. Limnobacter alexandrii sp. nov., a thiosulfate-oxidizing, heterotrophic and EPS-bearing Burkholderiaceae isolated from cultivable phycosphere microbiota of toxic Alexandrium catenella LZT09[J]. Antonie Van Leeuwenhoek, 2020, 113(11): 1689-1698.
|
41 |
HAN Yuchen, PERNER Mirjam. The globally widespread genus Sulfurimonas: versatile energy metabolisms and adaptations to redox clines[J]. Frontiers in Microbiology, 2015, 6: 989.
|
1 |
邵桂霞, 本莲芳. 电化学氧化法处理化肥废水工艺研究[J]. 山东化工, 2018, 47(21): 189-190, 193.
|
|
SHAO Guixia, Lianfang BEN. Study on treatment of chemical fertilizer wastewater by electrochemical oxidation[J]. Shandong Chemical Industry, 2018, 47(21): 189-190, 193.
|
2 |
郑小发, 杨丽, 刁月, 等. 基于反向传播神经网络模型优化冶金废水单级脱氮试验研究[J]. 湿法冶金, 2021, 40(2): 167-173.
|
|
ZHENG Xiaofa, YANG Li, DIAO Yue, et al. Optimization of single-stage denitrification of metallurgical wastewater based on back propagation neural network[J]. Hydrometallurgy of China, 2021, 40(2): 167-173.
|
3 |
王长青, 张西华, 宁朋歌, 等. 含油废水处理工艺研究进展及展望[J]. 化工进展, 2021, 40(1): 451-462.
|
|
WANG Changqing, ZHANG Xihua, NING Pengge, et al. Research advances and perspective on treatment processes for oily wastewater[J]. Chemical Industry and Engineering Progress, 2021, 40(1): 451-462.
|
4 |
张懿文, 罗建中, 陈宇阳. 我国水体中硝酸盐的污染现状及危害[J]. 广东化工, 2015,42(14): 99-100.
|
|
ZHANG Yiwen, LUO Jianzhong, CHEN Yuyang. The pollution situation and harm of nitrate in water of China[J]. Guangdong Chemical Industry, 2015, 42(14): 99-100.
|
5 |
ZHOU Xu, JIN Wenbiao, SUN Cuifang, et al. Microbial degradation of N,N-dimethylformamide by Paracoccus sp. strain DMF-3 from activated sludge[J]. Chemical Engineering Journal, 2018, 343: 324-330.
|
6 |
XU Lianzengji, XIA Wenjing, YU Minjie, et al. Merely inoculating anammox sludge to achieve the start-up of anammox and autotrophic desulfurization-denitrification process[J]. Science of the Total Environment, 2019, 682: 374-381.
|
7 |
STROUS M, HEIJNEN J J, KUENEN J G, et al. The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms[J]. Applied Microbiology and Biotechnology, 1998, 50(5): 589-596.
|
8 |
STROUS Marc, PELLETIER Eric, MANGENOT Sophie, et al. Deciphering the evolution and metabolism of an anammox bacterium from a community genome[J]. Nature, 2006, 440(7085): 790-794.
|
9 |
DING Shuzhe, BAO Peng, WANG Bo, et al. Long-term stable simultaneous partial nitrification, anammox and denitrification (SNAD) process treating real domestic sewage using suspended activated sludge[J]. Chemical Engineering Journal, 2018, 339: 180-188.
|
10 |
KALYUZHNYI S V, GLADCHENKO M A, KANG H, et al. Development and optimisation of VFA driven DEAMOX process for treatment of strong nitrogenous anaerobic effluents[J]. Water Science and Technology, 2008, 57(3): 323-328.
|
11 |
LEE Dong Uk, Sung Hoon WOO, SVORONOS Spyros, et al. Influence of alternating oxic/anoxic conditions on growth of denitrifying bacteria[J]. Water Research, 2010, 44(6): 1819-1824.
|
12 |
ZHANG Lei, NARITA Yuko, GAO Lin, et al. Maximum specific growth rate of anammox bacteria revisited[J]. Water Research, 2017, 116: 296-303.
|
13 |
邓旭亮, 王爱杰, 荣丽丽, 等. 硫自养反硝化技术研究现状与发展趋势[J]. 工业水处理, 2008, 28(3): 13-16.
|
|
DENG Xuliang, WANG Aijie, RONG Lili, et al. Present state of the sulfur-autotrophic denitrification technique and its developing trend[J]. Industrial Water Treatment, 2008, 28(3): 13-16.
|
14 |
SAHINKAYA Erkan, DURSUN Nesrin. Use of elemental sulfur and thiosulfate as electron sources for water denitrification[J]. Bioprocess and Biosystems Engineering, 2015, 38(3): 531-541.
|
15 |
杨世东, 祝彦均, 刘涵, 等. 不同氮硫浓度及氮硫比对硫酸盐还原厌氧氨氧化脱氮效果的影响[J]. 农业工程学报, 2021, 37(16): 199-204.
|
|
YANG Shidong, ZHU Yanjun, LIU Han, et al. Effects of N/S and ammonia concentrations on the process of sulfate reduction anaerobic ammonium oxidation[J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(16): 199-204.
|
16 |
张星星, 张钰, 王超超, 等. 短程反硝化耦合厌氧氨氧化工艺及其应用前景研究进展[J]. 化工进展, 2020, 39(5): 1981-1991.
|
|
ZHANG Xingxing, ZHANG Yu, WANG Chaochao, et al. Research advances in application prospect of partial denitrification coupled with anammox: a review[J]. Chemical Industry and Engineering Progress, 2020, 39(5): 1981-1991.
|
17 |
LIU Shiyi, XIANG Yu, ZHOU Tengzhi, et al. Insight into thiosulfate-driven denitrification and anammox process: Bigger aggregates driving better nitrite utilization on ammonium and nitrate contained wastewater[J]. Journal of Water Process Engineering, 2022, 47: 102669.
|
18 |
刘锋, 张雪智, 王苏琴, 等. 硫代硫酸盐驱动自养反硝化耦合厌氧氨氧化强化总氮去除[J]. 化工进展, 2022, 41(2): 990-997.
|
|
LIU Feng, ZHANG Xuezhi, WANG Suqin, et al. Thiosulfate-driven denitrification coupled with anammox to enhance total nitrogen removal[J]. Chemical Industry and Engineering Progress, 2022, 41(2): 990-997.
|
19 |
QIAN Jin, ZHANG Mingkuan, WU Yaoguo, et al. A feasibility study on biological nitrogen removal(BNR) via integrated thiosulfate-driven denitratation with anammox[J]. Chemosphere, 2018, 208: 793-799.
|
20 |
SUN Xinbo, DU Lingfeng, HOU Yuqian, et al. Endogenous influences on anammox and sulfocompound-oxidizing autotrophic denitrification coupling system (A/SAD) and dynamic operating strategy[J]. Bioresource Technology, 2018, 264: 253-260.
|
21 |
DENG Yangfan, EKAMA George A, CUI Yanxiang, et al. Coupling of sulfur(thiosulfate)-driven denitratation and anammox process to treat nitrate and ammonium contained wastewater[J]. Water Research, 2019, 163: 114854.
|
22 |
秦嘉伟, 信欣, 鲁航, 等. 连续流SNAD工艺处理猪场沼液启动过程中微生物种群演变及脱氮性能[J]. 环境科学, 2020, 41(5): 2349-2357.
|
|
QIN Jiawei, XIN Xin, LU Hang, et al. Bacterial community shifts and nitrogen removal characteristics for a SNAD process treating anaerobic digester liquor of swine wastewater (ADLSW) in a continuous-flow biofilm reactor (CFBR)[J]. Environmental Science, 2020, 41(5): 2349-2357.
|
23 |
QIN Yujie, CAO Yan, REN Junyi, et al. Effect of glucose on nitrogen removal and microbial community in anammox-denitrification system[J]. Bioresource technology, 2017, 244: 33-39.
|
24 |
国家环境保护总局《水和废水监测分析方法》编委会. 水和废水监测分析方法[M]. 4版. 北京: 中国环境科学出版社, 2002.
|
|
Editorial Board of Water and Wastewater Monitoring and Analysis Method, State Environmental Protection Administration. Methods for monitoring and analysis of water and wastewater[M]. 4th ed. Beijing: China Environmental Science Press, 2002.
|
25 |
王威, 毕志浩, 张若晨, 等. 自养反硝化脱氮耦合沼气同步脱硫效能研究[J]. 环境科学学报, 2019, 39(10): 3291-3301, 3565.
|
|
WANG Wei, BI Zhihao, ZHANG Ruochen, et al. The study on efficiency of autotrophic denitrification coupling biogas desulfurization simultaneously[J]. Acta Scientiae Circumstantiae, 2019, 39(10): 3291-3301, 3565.
|
26 |
CHEN Chongjun, SUN Faqian, ZHANG Haiqing, et al. Evaluation of COD effect on anammox process and microbial communities in the anaerobic baffled reactor (ABR)[J]. Bioresource Technology, 2016, 216: 571-578.
|
27 |
WU Chenglong, QIN Yujie, YANG Lan, et al. Effects of loading rates and N/S ratios in the sulfide-dependent autotrophic denitrification (SDAD) and Anammox coupling system[J]. Bioresource Technology, 2020, 316: 123969.
|
28 |
王衫允. 低氨氮浓度厌氧氨氧化工艺强化及颗粒污泥菌群特性研究[D]. 哈尔滨: 哈尔滨工业大学, 2016.
|
|
WANG Shanyun. Study on nitrogen removal enhancement and microbial characteristics of anammox in low-ammonia sewage treatment[D]. Harbin: Harbin Institute of Technology, 2016.
|
29 |
XING Wei, LI Desheng, LI Jinlong, et al. Nitrate removal and microbial analysis by combined micro-electrolysis and autotrophic denitrification[J]. Bioresource Technology, 2016, 211: 240-247.
|
30 |
YANG Zh H, XIAO Y, ZENG G M, et al. Comparison of methods for total community DNA extraction and purification from compost[J]. Applied Microbiology and Biotechnology, 2007, 74(4): 918-925.
|
31 |
姚松. 磷氮比对高氨氮废水短程硝化—反硝化处理效能及微生物种群分布的影响研究[D]. 北京: 北京交通大学, 2018.
|
|
YAO Song. Effect of P/N ratio on the treatment efficiency and microbial population communities of short-cut nitrification-denitrification treating high ammonia nitrogen wastewater[D]. Beijing: Beijing Jiaotong University, 2018.
|
32 |
王路坤. 厌氧氨氧化耦合硫自养短程反硝化工艺处理高盐废水的脱氮机制研究[D]. 青岛: 青岛大学, 2020.
|