[1] SIMON B, MARK B D, BRITT-MARIE W, et al. A comparison of aerobic granular sludge with conventional and compact biological treatment technologies[J]. Environmental Technology, 2019, 40(21): 2769-2778. doi: 10.1080/09593330.2018.1452985
[2] NANCHARAIAH Y, REDDY K K G. Aerobic granular sludge technology: Mechanisms of granulation and biotechnological applications[J]. Bioresource Technology, 2018, 247: 1128-1143. doi: 10.1016/j.biortech.2017.09.131
[3] DE KREUK M K, KISHIDA N, VAN LOOSDRECHT M C M. Aerobic granular sludge - state of the art[J]. Water Science & Technology, 2007, 55(8/9): 75-81.
[4] PRONK M, KREUK D M, BRUIN D B, et al. Full scale performance of the aerobic granular sludge process for sewage treatment[J]. Water Research, 2015, 84: 207-217. doi: 10.1016/j.watres.2015.07.011
[5] Projects[EB/OL]//RoyalHaskoningDHV. [2024-04-07]. https://nereda.royalhaskoningdhv.com/en/projects.
[6] 吴瑞馨, 赵彬, 陈宇航, 等. 高有机负荷对好氧颗粒污泥形成和稳定性能的影响[J]. 环境工程学报, 2023, 17(5): 1662-1673. doi: 10.12030/j.cjee.202212058
[7] CALLAHAN B J, MCMURDIE P J, ROSEN M J, et al. DADA2: High-resolution sample inference from Illumina amplicon data[J]. Nature Methods, 2016, 13(7): 581-583. doi: 10.1038/nmeth.3869
[8] EVAN B, RAM J R, R M D, et al. Reproducible, interactive, scalable and extensible microbiome data science using QIIME 2[J]. Nature Biotechnology, 2019, 37(8): 852-857. doi: 10.1038/s41587-019-0209-9
[9] SANG Y L, YUP L, JONGIL C. Production and degradation of polyhydroxyalkanoates in waste environment[J]. Waste Management, 1999, 19: 133-139. doi: 10.1016/S0956-053X(99)00005-7
[10] 鲜文东, 张潇橦, 李文均. 绿弯菌的研究现状及展望[J]. 微生物学报, 2020, 60(9): 1801-1820.
[11] LU H, CHANDRAN K, STENSEL D. Microbial ecology of denitrification in biological wastewater treatment[J]. Water Research, 2014, 64: 237-254. doi: 10.1016/j.watres.2014.06.042
[12] HE Q L, YAN X H, XIE Z Y, et al. Advanced low-strength wastewater treatment, side-stream phosphorus recovery, and in situ sludge reduction with aerobic granular sludge[J]. Bioresource Technology, 2023(386): 129574-129574.
[13] WU L N, JIA C F, HUANG S, et al. Nitrite oxidation in oxygen-deficient conditions during landfill leachate treatment[J]. Environmental Research, 2022, 214(P3): 114090-114090.
[14] 李松亚, 王林裴, 吴俊峰, 等. 城市污水处理厂微生物群落特征与群体感应调控[J]. 环境工程学报, 2022, 16(11): 3705-3715. doi: 10.12030/j.cjee.202207120
[15] ZHAO Y P, BO J, XI T, LIU S T. Metagenomic insights into functional traits variation and coupling effects on the anammox community during reactor start-up[J]. Science of the Total Environment, 2019(68): 68750-68760.
[16] ZHANG L F, FU G K , ZHANG Z, 2018. Simultaneous nutrient and carbon removal and electricity generation in self-buffered biocathode microbial fuel cell for high-salinity mustard tuber wastewater treatment[J]. Bioresource Technology, 272, 105-113.
[17] YU C, WANG K J, ZHANG K Y, et al. Full-scale upgrade activated sludge to continuous-flow aerobic granular sludge: Implementing microaerobic-aerobic configuration with internal separators[J]. Water Research, 2024, 248: 12870.
[18] LI D, ZHANG S, LI S, et al. Aerobic granular sludge operation and nutrients removal mechanism in a novel configuration reactor combined sequencing batch reactor and continuous-flow reactor[J]. Bioresource Technology, 2019, 292122024.
[19] XUE Z X, ZHANG T, SUN Y W, et al. Integrated moving bed biofilm reactor with partial denitrification-anammox for promoted nitrogen removal: Layered biofilm structure formation and symbiotic functional microbes[J]. Science of the Total Environment, 2022, 839156339-156339.
[20] ZHAO W H, BI X J, PENG Y Z, et al. Research advances of the phosphorus-accumulating organisms of Candidatus Accumulibacter, Dechloromonas and Tetrasphaera: Metabolic mechanisms, applications and influencing factors[J]. Chemosphere, 2022, 307(P1): 135675-135675.
[21] 吴志明, 陈学春, 赵欣, 等. Nereda®好氧颗粒污泥工艺的脱氮除磷性能及工程实例[J/OL][J]. 中国给水排水, 2022, 38(22): 16-21.
[22] GIESEN A, DE BRUIN L M M, NIERMANS R P, et al. Advancements in the application of aerobic granular biomass technology for sustainable treatment of wastewater[J/OL][J]. Water Practice and Technology, 2013, 8(1): 47-54. doi: 10.2166/wpt.2013.007
[23] EKHOLM J, PERSSON F, DE BLOIS M, et al. Full-scale aerobic granular sludge for municipal wastewater treatment-granule formation, microbial succession, and process performance[J/OL]. Environmental Science: Water Research & Technology, 2022, 8(12): 3138-3154.
[24] 吴志明, 陈学春, 赵欣, 等. Nereda®好氧颗粒污泥工艺配置及运行性能[J/OL][J]. 中国给水排水, 2023, 39(14): 10-18.
[25] 探秘国内首座好氧颗粒污泥(AGS)技术工业化污水处理厂-北极星水处理网[EB/OL]. [2024-04-14]. https://huanbao.bjx.com.cn/news/20220424/1219974.shtml.