1 |
朱明安. 城市污水处理存在的问题及预防对策[J]. 城市道桥与防洪, 2010, (2): 52- 55.
doi: 10.3969/j.issn.1009-7716.2010.02.017
|
2 |
Sharma V K , Burnett C R , Rivera W , et al. Heterogeneous Photocatalytic Reduction of Ferrate(Ⅵ) in UV-Irradiated Titania Suspensions[J]. Langmuir, 2001, 17 (15): 4598- 4601.
doi: 10.1021/la010242s
|
3 |
Sharma V K , Yngard R A , Cabelli D E , et al. Ferrate(Ⅵ) and ferrate (Ⅴ) oxidation of cyanide, thiocyanate, and copper(Ⅰ) cyanide[J]. Radiation Physics and Chemistry, 2008, 77 (6): 761- 767.
doi: 10.1016/j.radphyschem.2007.11.004
|
4 |
彭勃. 城市污水的深度处理工艺[J]. 工程建设与设计, 2010, (8): 78- 82.
doi: 10.3969/j.issn.1007-9467.2010.08.022
|
5 |
左玉俊. 城市污水深度处理及中水回用[J]. 科技经济市场, 2016, (5): 112.
doi: 10.3969/j.issn.1009-3788.2016.05.088
|
6 |
许春华, 高宝玉, 卢磊, 等. 城市纳污河道废水化学强化一级处理的研究[J]. 山东大学学报:理学版, 2006, 41 (2): 116- 120.
URL
|
7 |
吴志皓, 唐尧基, 李桂敏, 等. 荧光分析法在环境有机污染物分析中的应用[J]. 分析仪器, 2005, 1 (3): 13- 19.
doi: 10.3969/j.issn.1001-232X.2005.03.003
|
8 |
Jiang Jiaqian . Advances in the development and application of ferrate(Ⅵ) for water and wastewater treatment[J]. Journal of Chemical Technology & Biotechnology, 2014, 89 (2): 165- 177.
|
9 |
Sun Xuhui , Zhang Qi , Liang He , et al. Ferrate(Ⅵ) as a greener oxidant:Electrochemical generation and treatment of phenol[J]. Journal of hazardous materials, 2015, 319:130- 136.
|
10 |
Han Qi , Wang Hongjie , Dong Wenyi , et al. Degradation of bisphenol A by ferrate(Ⅵ) oxidation:Kinetics, products and toxicity assessment[J]. Chemical Engineering Journal, 2015, 262:34- 40.
doi: 10.1016/j.cej.2014.09.071
|
11 |
Sharma V K . Ferrate(Ⅵ) and ferrate(Ⅴ) oxidation of organic compounds:Kinetics and mechanism[J]. Coordination Chemistry Reviews, 2013, 257 (2): 495- 510.
doi: 10.1016/j.ccr.2012.04.014
|
12 |
Jiang Jiaqian . Research progress in the use of ferrate(Ⅵ) for the environmental remediation[J]. Journal of Hazardous Materials, 2007, 146 (3): 617- 623.
doi: 10.1016/j.jhazmat.2007.04.075
|
13 |
Gulyas H . Processes for the removal of recalcitrant organics from industrial wastewaters[J]. Water Science and Technology, 1997, 36 (2/3): 9- 16.
URL
|
14 |
曹可心.污水中溶解性有机污染物三维荧光与紫外吸光特性研究[D].北京:北京工业大学, 2006.
|
15 |
郝瑞霞, 曹可心, 邓亦文. 三维荧光光谱法表征污水中溶解性有机污染物[J]. 分析试验室, 2007, 26 (10): 41- 44.
doi: 10.3969/j.issn.1000-0720.2007.10.011
|
16 |
马挺, 张捷, 李军, 等. 河网水溶解性有机物和氨氮在净水过程中的去除[J]. 给水排水, 2015, 41 (增刊1): 157- 162.
URL
|
17 |
韩琦, 董文艺. 新型高效水处理剂高铁酸钾的研究进展[J]. 环境科学与技术, 2012, 35 (增刊2): 200- 205.
URL
|
18 |
Sharma V K . Potassium ferrate(Ⅵ):an environmentally friendly oxidant[J]. Advances in Environmental Research, 2002, 6 (2): 143- 156.
doi: 10.1016/S1093-0191(01)00119-8
|
19 |
王利平, 薛勇, 罗真, 等. 高铁酸钾预氧化处理微污染原水的效能[J]. 水资源保护, 2007, (增刊1): 103- 106.
|
20 |
汪德家.高铁酸钾在水处理中的应用与研究[D].上海:同济大学, 2005.
URL
|
21 |
朱开金, 李敏, 任晓莉, 等. SiO32-作用下Ag+对K2FeO4氧化焦化废水的有效催化[J]. 工业水处理, 2018, 38 (2): 59- 62.
URL
|
22 |
Norcross B E , Lewis W C , Gai H , et al. The oxidation of secondary alcohols by potassium tetraoxoferrate(Ⅵ)[J]. Canadian Journal of Chemistry, 2011, 75 (2): 129- 139.
|
23 |
Schroyer J M , Ockerman L T . Stability of Ferrate(Ⅵ) Ion in Aqueous Solution[J]. Analytical Chemistry, 1951, 23 (9): 1312- 1314.
doi: 10.1021/ac60057a028
|
24 |
Li Cong , Li Xiangzhong , Graham N . A study of the preparation and reactivity of potassium ferrate[J]. Chemosphere, 2005, 61 (4): 537- 543.
doi: 10.1016/j.chemosphere.2005.02.027
|
25 |
Kolár M , Novák P , Sisková K M , et al. Impact of inorganic buffering ions on the stability of Fe(Ⅵ)in aqueous solution:role of the carbonate ion[J]. Phys. Chem. Chem. Phys., 2016, 18 (6): 4415- 4422.
doi: 10.1039/C5CP07543B
|
26 |
王立立, 曲久辉, 王忠秋, 等. 高铁稳定性及其影响因素的研究[J]. 东北电力大学学报, 1999, (1): 6- 10.
URL
|
27 |
刘菲, 赵胜勇, 王晓毅. 高铁酸钾氧化处理废水中邻氯苯酚的研究[J]. 工业用水与废水, 2018, 49 (2): 35- 37.
URL
|