[1] SPROCATI R A, ALISI C, TASSO F, et al. Effectiveness of a microbial formula, as a bioaugmentation agent, tailored for bioremediation of diesel oil and heavy metal co-contaminated soil [J]. Process Biochemistry, 2012,47(11):1649-1655.
[2] NALINI S, PARTHASARATHI R. Production and characterization of rhamnolipids produced by Serratia rubidaea SNAU02 under solid-state fermentation and its application as biocontrol agent [J]. Bioresource Technology, 2014,173:231-238.
[3] 余旺,黄绍松,孙水裕,等.接种菌剂和外加能源对污泥生物干化效果的影响[J].环境污染与防治,2012,34(8):39-43. YU W, HUANG S S, SUN S Y, et al. Effect of microbial inoculants and additional energy on bio-drying of dewatered sludge [J]. Environmental Pollution & Control,2012,34(8):39-43 (in Chinese).
[4] TAYA C, GUISASOLA A, BAEZA A J. Assessment of a bioaugmentation strategy with polyphosphate accumulating organisms in a nitrification/denitrification sequencing batch reactor [J]. Bioresource Technology, 2011,102(17):7678-7684.
[5] GNANAMANI A, KAVITHA V, RADHAKRISHNAN N, et al. Microbial products (biosurfactant and extracellular chromate reductase) of marine microorganism are the potential agents reduce the oxidative stress induced by toxic heavy metals [J]. Colloids and Surfaces B: Biointerfaces, 2010, 79(2):334-339.
[6] LIU YE, MAITE P J, YUAN Z G. The effect of free nitrous acid on key anaerobic processes in enhanced biological phosphorus removal systems[J]. Bioresource Technology,2013,130:382-389.
[7] KAPAGIANNIDIS A G, ZAFIRIADIS I, AIVASIDIS A. Comparison between aerobic and anoxic metabolism of denitrifying-EBPR sludge: Effect of biomass poly-hydroxyalkanoates content[J]. New Biotechnology, 2013,30(2):227-236.
[8] 马放, 杨菲菲, 李昂,等. 1株高效反硝化聚磷菌的生物学特性研究[J]. 环境科学,2011,32(9):2711-2715. MA F, YANY F F, LI A, et al. Biological Characteristics of denitrifying polyphosphate-accumulating organisms[J]. Environmental Science,2011,32(9):2711-2715 (in Chinese).
[9] 刘立, 汤兵, 黄绍松,等. 反硝化聚磷菌快速富集、培养及其荧光原位杂交技术鉴别[J]. 环境科学,2013,37(7):2869-2875. LI L, TANG B, HANG S S, et al. Rapid enrichment and cultivation of denitrifying phosphate-removal bacteria and its identification by fluorescence in situ hybridization technology[J]. Environmental Science, 2011,32(9):2711-2715 (in Chinese).
[10] TAYA C, GARLAPATI V K, GUISASOLA A, et al. The selective role of nitrite in the PAO/GAO competition[J]. Chemosphere,2013,93 (4):612-618.
[11] 郭健,汪佳秀,王国林,等.降解氯嘧磺隆微生物菌剂的制备及稳定性研究[J].安全与环境学报,2012,12(5):34-37. GUO J, WANG J X, WANG G L, et al. Preparation and stability study of chlorimuron-ethyl degrading bacterium composite microor-ganism agent[J].Journal of Safety and Environment,2012,12(5):34-37 (in Chinese).
[12] 张文艺, 陈晶, 邓文,等. 反硝化聚磷菌菌剂种子液制备条件及除磷机理[J]. 土木建筑与环境工程,2014,36(6):99-105. ZHANG W Y, CHEN J, DENG W, et al. Preparation of denitrifying phosphorus accumulating bacterial seed liquid and analysis of phosphorus removal mechanism[J]. Journal of Civil,Architectural & Environmental Engineering,2014,36(6):99-105 (in Chinese).
[13] 陈晶, 张敏特, 陈萍,等. 菌剂强化潜流湿地总氮总磷去除及功能菌特性研究[J]. 环境化学,2015,34(12):2268-2274. CHEN J, ZHANG M T, CHEN P, et al. Nitrogen and phosphorus removal and characteristics of functional microbes in subsurface flow wetland with microbe augmentation[J]. Environmental Chemistry,2015,34(12):2268-2274 (in Chinese).
[14] CHAUDHRY V, NAUTIYAL C S. A high throughput method and culture medium for rapid screening of phosphate accumulating microorganisms[J].Bioresource Technology,2011,102(17):8057-8062.
[15] 张文艺,罗鑫,韩有法,等.下向流曝气生物滤池工艺处理藻浆压滤液特性及微生物种属分析[J].土木建筑与环境工程,2013,35(5):55-61. ZHANG W Y, LUO X, HAN Y F, et al. Biological aerated filter for algae pulp filtrate treatment and the analysis of microbial species[J]. Journal of Civil,Architectural & Environmental Engineering, 2013,35(5):55-61 (in Chinese).
[16] 国家环境保护总局.水和废水检测分析方法(第4版)[M].北京:中国环境科学出版社,2002. State Environmental Protection Administration. Detection and analysis of water and wastewater (Fourth Edition) [M].Beijing: China Environmental Science Press,2002 (in Chinese).
[17] LOPEZ C M, OEHMEN A, HOOIJMANS C M. Modeling the PAO-GAO competition: Effects of carbon source, pH and temperature [J].Water Research,2009,43(2):450-462.
[18] 陈燕, 杨小龙, 曹郁生. 1株高效聚磷节杆菌的分离鉴定及其聚磷特性研究[J]. 安徽农业科学,2011,39(1):447-450. CHEN Y, YANG X L, CAO Y S. Study on isolation,identification and phosphate accumulating capacity of Arthrobacter sp.[J]. Journal of Anhui Agricultural Sciences,2011,39(1):447-450 (in Chinese).
[19] 陈晶, 周新程, 陈萍, 等. 投菌强化序批式反应器(SBR)脱氮除磷效果及微生物种属分析[J]. 环境化学,2016,35(10):2183-2190. CHEN J, ZHOU X C, CHEN P, et al. Enhanced nitrogen and phosphorus removal with addition of microbes in sequencing batch reactor and analysis of microbial specie[J]. Environmental Chemistry,2016,35(10): 2183-2190 (in Chinese).