[1] |
孙宝盛, 单金林, 邵青. 环境分析监测理论与技术. 北京: 化学工业出版社, 2007
|
[2] |
Norio O. Ultraviolet absorbing materials in natural water. Nippon Kagaku Zasshi, 1965, 86 (12): 1286-1288
|
[3] |
王晓萍, 林桢, 金鑫. 紫外扫描式水质COD测量技术与仪器研制. 浙江大学学报(工学版), 2006, 40 (11): 1951-1954 Wang X. P., Lin Z., Jin X. Ultraviolet scanning technique for water COD measurement and its instrument development. Journal of Zhejiang University (Engineering Science), 2006, 40 (11): 1951-1954 (in Chinese)
|
[4] |
周才进. UV法COD检测仪设计. 成都: 电子科技大学硕士学位论文, 2008. 9-11 Zhou C. J. Design of COD detector by UV method. Chengdu: Master Dissertation of University of Electronic Science and Technology, 2008, 9-11(in Chinese)
|
[5] |
张国强, 康戈文. 紫外分光光度法测定水质COD的技术研究. 环境污染与防治, 2007, 17(4): 1-6 Zhang G. Q., Kang G. W. Research on UV spectrophotometry for determination of COD in water. Environmental Pollution and Prevention, 2007, 17(4): 1-6(in Chinese)
|
[6] |
穆秀圣. UV全光谱法在线水质测量仪的技术研究与实现. 成都: 电子科技大学硕士学位论文, 2009, 12-19 Mu X. S. Research and implementation of UV full spectrum online measurement device for water quality. Chengdu: Master Dissertation of University of Electronic Science and Technology, 2009, 12-19 (in Chinese)
|
[7] |
黎国梁, 粟晖, 姚志湘, 等. 多元校正分光光度法快速测定COD. 工业水处理, 2009, 12(5): 69-72 Li G. L., Su H., Yao Z. X., et al. Fast determination of COD by spectrophotometric and multivariate calibration methods. Industrial Water Treatment, 2009, 12(5): 69-72(in Chinese)
|
[8] |
张浩, 孙力平. 双波长紫外分光光度法测定渗滤液COD的研究. 环境工程学报, 2009, 3(10): 1755-1758 Zhang H., Sun L. P. Determination of leach ate COD by double wavelengths ultraviolet spectrophomety. Chinese Journal of Environmental Engineering, 2009, 3(10): 1755-1758(in Chinese)
|
[9] |
Manool, Boghos A., Morgan, Philip G. Organic Pollutant Monitor. United States: USA 5420432, May 30, 1995
|
[10] |
黄松林, 王晓梅, 须文波. 智能COD监测仪的研究与开发. 现代科学仪器, 2003, 5(2): 21-23 Huang S. L., Wang X. M., Xu W. B. Exploitation of COD monitor based on embedded system. The Modern Scientific Instruments, 2003, 5(2): 21-23(in Chinese)
|
[11] |
Charef A., Gunch A., Baussand P., et al. Water quality monitoring using a smart sensing system. Measurement, 2000, 28(2): 219-224
|
[12] |
Fan J. R., Fu C. Spectrophotometry solution of the chemical oxygen demand. Journal of South China University of Science and Technology (Natural Science Edition), 2001, 29(7): 95-98
|
[13] |
周娜, 罗彬, 廖激, 等. 紫外吸收光谱法直接测定化学需氧量的研究进展. 四川环境, 2006, 25(1): 84-87 Zhou N., Luo B., Liao J., et al. Development of determination of chemical oxygen demand (COD) by UV absorption spectrum. Sichuan Environment, 2006,25(1): 84-87(in Chinese)
|
[14] |
严赟. 多光谱污水有机污染物综合指标在线检测装置的设计与开发. 杭州: 浙江大学硕士学位论文, 2011, 43-49 Yan Y. Design and development of the multispectral online measurement device for detecting dissolved organic matter in wastewater. Hangzhou: Master Dissertation of Zhejiang University, 2011, 43-49(in Chinese)
|
[15] |
Matsche N., Stumwohrer K. UV absorption as control-parameter for biological treatment plants. Water Science, 1996, 33(12): 211-218
|
[16] |
Canada A., Guest A., Gras L., et al. New ultra sound assisted chemical oxygen demand determination. Tasronies Sono Chemist, 2002, 12 (9): 143-149
|
[17] |
Bakera A., Spencer R.G.M. Characterization of dissolved organic matter from source to sea using fluorescence and absorbance spectroscopy. Science of the Total Environment, 2004, 333(12): 217-232
|
[18] |
Marhaba T.F., Member P.E. Fluorescence technique for rapid identification of DOM fractions. Journal of Environment Engineering, 2010, 12(3): 145-152
|
[19] |
Ramon Ramona, Francisco Valero, Manuel del Valle. Rapid determination of COD using a focused microwave heating system featuring temperature control. Analytica Chemical, Acta, 2003, 12(1): 99-109
|
[20] |
Shiyun Ai., Jiaing Li., Ya Yang, et al. Study on photo catalytic oxidation for determination of chemical oxygen demand using a nano-TiO2-K2Cr2O7 system. Analytical Chemical Alta, 2004, 22(12): 237-241
|