[1] |
郑俊田, 郑俊, 程洛闻, 等. 混合液回流比对多点进水新型A/O/A/A/O泥膜耦合工艺脱氮除磷的影响[J]. 环境工程学报, 2021, 15: 1744-52. doi: 10.12030/j.cjee.202011119
|
[2] |
ZHANG M, WANG Y, FAN Y, et al. Bioaugmentation of low C/N ratio wastewater: effect of acetate and propionate on nutrient removal, substrate transformation, and microbial community behavior[J]. Bioresource Technology, 2019, 306: 122465.
|
[3] |
朱启荣, 操家顺, 张腾, 等. 污水厂反硝化传统及可供替代碳源研究进展[J]. 应用化工, 2021, 50: 1600-6. doi: 10.3969/j.issn.1671-3206.2021.06.033
|
[4] |
尹亚云, 蒲文鹏, 陈永娟, 等. 污水处理厂外加碳源模拟优化研究[J]. 给水排水, 2021, 57: 156-9. doi: 10.13789/j.cnki.wwe1964.2021.S1.032
|
[5] |
张岳, 葛铜岗, 孙永利, 等. 基于城镇污水处理全流程环节的碳排放模型研究[J]. 中国给水排水, 2021, 37: 65-74. doi: 10.19853/j.zgjsps.1000-4602.2021.09.011
|
[6] |
JIN P, CHEN Y, XU T, et al. Efficient nitrogen removal by simultaneous heterotrophic nitrifying-aerobic denitrifying bacterium in a purification tank bioreactor amended with two-stage dissolved oxygen control[J]. Bioresource Technology, 2019, 281: 392-400. doi: 10.1016/j.biortech.2019.02.119
|
[7] |
赵智超, 黄剑明, 李健, 等. 间歇曝气连续流反应器同步硝化反硝化除磷[J]. 环境科学, 2019, 40: 799-807. doi: 10.13227/j.hjkx.201807093
|
[8] |
LIU X, HU S, SUN R, et al. Dissolved oxygen disturbs nitrate transformation by modifying microbial community, co-occurrence networks, and functional genes during aerobic-anoxic transition[J]. Science of The Total Environment, 2021: 790.
|
[9] |
XU G, ZHANG Z, GAO F. Effect of COD/N ratios and DO concentrations on the NOB suppression in a multi-cycle SBR[J]. Journal of Environmental Chemical Engineering, 2021, 9(4).
|
[10] |
池玉蕾, 石烜, 任童, 等. 溶解氧对低碳源城市污水处理系统脱氮性能与微生物群落的影响[J]. 环境科学, 2021, 42: 4374-82. doi: 10.13227/j.hjkx.202012261
|
[11] |
国家环境保护总局. 水和废水监测分析方法 第4版 [M]. 北京: 中国环境科学出版社, 2002.
|
[12] |
姚丽婷, 梁瑜海, 陈漫霞, 等. 高溶解氧条件下不同曝气量对短程硝化性能及微生物特征的影响[J]. 环境科学学报, 2021, 41: 3258-67. doi: 10.13671/j.hjkxxb.2021.0188
|
[13] |
陈思宇, 张绍青, 陈鹏, 等. 基于短程反硝化的生物脱氮技术研究进展[J]. 环境工程, 2021, 39: 38-44. doi: 10.13205/j.hjgc.202105006
|
[14] |
王东, 王小东, 朱引, 等. 生物吸附-多级A/O-活性焦组合工艺对污水中氮磷及有机污染物的去除[J]. 环境工程学报, 2018, 12: 1907-16. doi: 10.12030/j.cjee.201712110
|
[15] |
朱明璇, 李梅, 王洪波, 等. 污泥对有机物的去除效果及荧光特性研究[J]. 应用化工, 2020, 49: 1457-62. doi: 10.3969/j.issn.1671-3206.2020.06.029
|
[16] |
WANG J, RONG H, ZHANG C. Evaluation of the impact of dissolved oxygen concentration on biofilm microbial community in sequencing batch biofilm reactor[J]. Journal of Bioscience and Bioengineering, 2018, 125(5): 532-42. doi: 10.1016/j.jbiosc.2017.11.007
|
[17] |
XIN X, QIN J. Rapid start-up of partial nitritation in aerobic granular sludge bioreactor and the analysis of bacterial community dynamics[J]. Bioprocess and Biosystems Engineering, 2019, 42(12): 1973-81. doi: 10.1007/s00449-019-02190-x
|
[18] |
YANG N, ZHAN G, LI D, et al. Performance and microbial community of a novel non-aeration-based up-flow bioelectrochemical filter (UBEF) treating real domestic wastewater[J]. Chemical Engineering Journal, 2018, 348: 271-80. doi: 10.1016/j.cej.2018.04.200
|
[19] |
徐翩翩, 孟佳, 汪聪, 等. 限氧废水处理系统的再启动与ANAMMOX功能恢复[J]. 哈尔滨工业大学学报, 2019, 51: 32-8. doi: 10.11918/j.issn.03676234.201801014
|
[20] |
OEHMEN A, CARVALHO G, LOPEZ-VAZQUEZ C M, et al. Incorporating microbial ecology into the metabolic modelling of polyphosphate accumulating organisms and glycogen accumulating organisms[J]. Water Research, 2010, 44(17): 4992-5004. doi: 10.1016/j.watres.2010.06.071
|
[21] |
CHU G, YU D, WANG X, et al. Comparison of nitrite accumulation performance and microbial community structure in endogenous partial denitrification process with acetate and glucose served as carbon source[J]. Bioresource Technology, 2021, 320(Pt B): 124405.
|
[22] |
ZHANG F, PENG Y, LIU Z, et al. Development of a novel partial nitrification, fermentation-based double denitrification bioprocess (PN-F-Double/DN) to simultaneous treatment of mature landfill leachate and waste activated sludge[J]. Water Research, 2021, 203: 117540. doi: 10.1016/j.watres.2021.117540
|
[23] |
王朱珺, 王尚, 刘洋荧, 等. 宏基因组技术在氮循环功能微生物分子检测研究中的应用[J]. 生物技术通报, 2018, 34: 1-14. doi: 10.3969/j.issn.1002-5464.2018.02.001
|
[24] |
ASAMOTO C K, REMPFERT K R, LUU V H, et al. Enzyme-specific coupling of oxygen and nitrogen isotope fractionation of the nap and nar nitrate reductases[J]. Environmental Science & Technology, 2021, 55(8): 5537-46.
|