[1] |
傅金祥, 陈正洋, 罗迪, 等. 水力停留时间对SBR工艺处理低磷污水的影响[J]. 工业用水与废水, 2020, 51(4): 21 − 24. doi: 10.3969/j.issn.1009-2455.2020.04.005
|
[2] |
彭赵旭, 彭永臻, 桂丽娟, 等. 氨氮冲击负荷对硝化过程的短期影响[J]. 中国给水排水, 2010, 26(11): 9 − 12.
|
[3] |
季民, 刘灵婕, 翟洪艳, 等. 高浓度游离氨冲击负荷对生物硝化的影响机制[J]. 环境科学, 2017, 38(1): 260 − 268.
|
[4] |
DU P, YANG S Y, LI W H, et al. Extraction and structural characteristics of extracellular polymeric substances (EPS), pellets in autotrophic nitrifying biofilm and activated sludge[J]. Chemosphere: Environmental Toxicology and Risk Assessment, 2010, 81(5): 626 − 632.
|
[5] |
ADAV S S, LEE D J. Extraction of extracellular polymetic substances from aerobic granule with compact interior structure[J]. Journal of Hazardous Materials, 2008, 154(1/3): 1120 − 1126.
|
[6] |
赵连梅, 池勇志, 张春青. TTC-脱氢酶活性测定中标准曲线的影响因素研究[J]. 实验室科学, 2009(4): 72 − 74. doi: 10.3969/j.issn.1672-4305.2009.04.028
|
[7] |
MA A, HE J J. Effect of feeding pattern on biochemical storage by activated sludge under anoxic conditions[J]. Water Research: A Journal of the International Water Association, 2007, 41(4): 924 − 934.
|
[8] |
王淑莹, 高春娣, 彭永臻, 等. SBR法处理工业废水中有机负荷对污泥膨胀的影响[J]. 环境科学学报, 2000, 20(2): 129 − 133. doi: 10.3321/j.issn:0253-2468.2000.02.001
|
[9] |
SAJJAD M, KIM K S. A study on TOC and nutrients removal in SBR and CFSTR systems in relation to sludge EPS during granulation process[J]. Desalination and Water Treatment, 2015, 55(6): 1683 − 1689. doi: 10.1080/19443994.2014.943062
|
[10] |
王亚宜, 彭永臻, 王淑莹, 等. 碳源和硝态氮浓度对反硝化聚磷的影响及ORP的变化规律[J]. 环境科学, 2004(4): 54 − 58. doi: 10.3321/j.issn:0250-3301.2004.04.011
|
[11] |
TAY J H, LIU Q S, LIU Y. The role of cellular polysaccharides in the formation and stability of aerobic granules[J]. Letters in Applied Microbiology, 2001, 33(3): 222 − 226. doi: 10.1046/j.1472-765x.2001.00986.x
|
[12] |
王文斌, 丁忠浩, 董有. 同步硝化反硝化的研究与机理分析[J]. 环境科学与技术, 2004, 27(2): 38 − 39. doi: 10.3969/j.issn.1003-6504.2004.02.017
|
[13] |
刘燕, 王越兴, 莫华娟, 等. 有机底物对活性污泥胞外聚合物的影响[J]. 环境化学, 2004, 23(3): 252 − 257. doi: 10.3321/j.issn:0254-6108.2004.03.003
|
[14] |
YANG S F, TAY J H, LIU Y. Inhibition of free ammonia of the formation of aerobic granules[J]. Biochemical Engineering Journal, 2004, 17(1): 41 − 48. doi: 10.1016/S1369-703X(03)00122-0
|
[15] |
周律, 邢秀娟, 彭标, 等. 低水温下悬浮和附着活性污泥胞外多聚物特性[J]. 清华大学学报(自然科学版), 2016, 56(9): 1009 − 1015.
|
[16] |
李静, 严红, 肖本益. 活性污泥活性的表征及其检测方法研究[J]. 工业水处理, 2016, 36(8): 5 − 10. doi: 10.11894/1005-829x.2016.36(8).005
|
[17] |
MATYJA K, MAŁACHOWSKA-JUTSZ A, MAZUR A K, et al. Assessment of toxicity using dehydrogenases activity and mathematical modeling[J]. Ecotoxicology, 2016, 25(5): 924 − 939. doi: 10.1007/s10646-016-1650-x
|
[18] |
洪梅. 脱氢酶活性检测技术在污水处理厂的应用研究[J]. 石油化工环境保护, 2001(4): 30 − 33.
|