[1] 戴晓虎. 我国城镇污泥处理处置现状及思考[J]. 给水排水, 2012, 38(2): 1-5. doi: 10.3969/j.issn.1000-4602.2012.02.001
[2] LEE W S, CHUA A S M, YEOH H K, et al. A review of the production and applications of waste-derived volatile fatty acids[J]. Chemical Engineering Journal, 2014, 235(1): 83-99.
[3] 郝晓地, 李季, 曹达啟. 污水处理碳中和运行需要污泥增量[J]. 中国给水排水, 2016, 32(12): 1-6.
[4] 潘宁, 石淑倩, 柯崇宜, 等. 吸附生物降解法(AB工艺)A段反应机理分析[J]. 环境工程, 2000, 18(4): 21-23. doi: 10.3969/j.issn.1000-8942.2000.04.006
[5] 张闻多, 余雷, 刘和, 等. 工程规模下碱类型对污泥预处理效果及发酵产酸的影响[J]. 环境工程学报, 2018, 12(5): 1517-1527.
[6] KUBA T, LOOSDRECHT M C M V, HEIJNEN J J. Biological dephosphatation by activated sludge under denitrifying conditions pH influence and occurrence of denitrifying dephosphatation in a full-scale wastewater treatment plant[J]. Water Science & Technology, 1997, 36(12): 75-82.
[7] ZENG W, WANG X, LI B, et al. Nitritation and denitrifying phosphorus removal via nitrite pathway from domestic wastewater in a continuous MUCT process[J]. Bioresource Technology, 2013, 143: 187-195. doi: 10.1016/j.biortech.2013.06.002
[8] ZHANG Y, LI M, ZHANG Q, et al. Start-up performance of anaerobic/aerobic/anoxic-sequencing batch reactor (SBR) augmented with denitrifying polyphosphate-accumulating organism (DPAO) and their gene analysis[J]. Water Science Technology, 2018, 78(3/4): 523-533.
[9] ZHANG M, YANG Q, ZHANG J, et al. Enhancement of denitrifying phosphorus removal and microbial community of long-term operation in an anaerobic anoxic oxic-biological contact oxidation system[J]. Journal of Bioscience and Bioengineering, 2016, 122(4): 456-466. doi: 10.1016/j.jbiosc.2016.03.019
[10] 张淼, 彭永臻, 张建华, 等. 进水C/N对A2/O-BCO工艺反硝化除磷特性的影响[J]. 中国环境科学, 2016, 36(5): 1366-1375. doi: 10.3969/j.issn.1000-6923.2016.05.014
[11] LIU H, CHEN P, CHEN Z. Role of influent split ratio in a two-line BNR process performing denitrifying phosphorus removal[J]. Chemical Engineering Journal, 2015, 267: 266-273. doi: 10.1016/j.cej.2015.01.036
[12] 国家环境保护总局. 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.
[13] SUN L, ZHAO X, ZHANG H, et al. Biological characteristics of a denitrifying phosphorus-accumulating bacterium[J]. Ecological Engineering, 2015, 81(1): 82-88.
[14] LU Q, QIAN W, LIU W, et al. A fluorescence in situ hybridization method for the measurement of denitrifying phosphorus-accumulation organisms and study on the metabolisms of activated sludge[J]. Journal of Cleaner Production, 2017, 152(1): 28-37.
[15] 黄剑明, 赵智超, 郑隆举, 等. 低温下A2/O-BAF反硝化除磷脱氮特性[J]. 环境科学, 2018, 39(10): 4621-4627.
[16] CECH J S, HARTMAN P. Competition between polyphosphate and polysaccharide accumulating bacteria in enhanced biological phosphate removal system[J]. Water Research, 1993, 27(7): 1219-1225. doi: 10.1016/0043-1354(93)90014-9
[17] 宋志伟. 水污染控制工程[M]. 北京: 中国矿业大学出版社, 2013.
[18] LV X, LI J, SUN F, et al. Denitrifying phosphorus removal for simultaneous nitrogen and phosphorus removal from wastewater with low C/N ratios and microbial community structure analysis[J]. Desalination and Water Treatment, 2014, 57(4): 1890-1899.
[19] ONG Y H, CHUA A S M, HUANG Y T, et al. The microbial community in a high-temperature enhanced biological phosphorus removal (EBPR) process[J]. Sustainable Environment Research, 2016, 26(1): 14-19. doi: 10.1016/j.serj.2016.04.001
[20] KIM M G, NAKHLA G. Comparative performance of A2/O and a novel membrane-bioreactor-based process for biological nitrogen and phosphorus removal[J]. Water Environment Research, 2010, 82(1): 69-76. doi: 10.2175/106143009X447966
[21] VANDEKERCKHOVE T G L, DE MULDER C, BOON N, et al. Temperature impact on sludge yield, settleability and kinetics of three heterotrophic conversions corroborates the prospect of thermophilic biological nitrogen removal[J]. Bioresource Technology, 2018, 269(1): 104-112.
[22] 田文德. BBSNP工艺性能及反硝化聚磷菌除磷特性研究[D]. 哈尔滨: 哈尔滨工业大学, 2013.
[23] WANG Y, PENG Y, STEPHENSON T. Effect of influent nutrient ratios and hydraulic retention time (HRT) on simultaneous phosphorus and nitrogen removal in a two-sludge sequencing batch reactor process[J]. Bioresource Technology, 2009, 99(14): 3506-3512.
[24] KERRN J, JENS P, HENZE M. Biological phosphorus uptake under anoxic and aerobic conditions[J]. Water Research, 1993, 27(4): 617-624. doi: 10.1016/0043-1354(93)90171-D
[25] 罗富金. 螺旋升流式反应器脱氮除磷效果及污泥特性的试验研究[D]. 重庆: 重庆大学, 2004.
[26] 曾薇, 李博晓, 王向东, 等. MUCT短程硝化和反硝化除磷系统中Candidatus Accumulibacter的代谢活性和菌群结构[J]. 中国环境科学, 2013, 33(7): 1298-1308.
[27] 戴娴, 王晓霞, 彭永臻, 等. 进水C/N对富集聚磷菌的SNDPR系统脱氮除磷的影响[J]. 中国环境科学, 2015, 35(9): 2636-2643. doi: 10.3969/j.issn.1000-6923.2015.09.011