Zhang G.Q.,Chen M. Complex fracture shapesin hydraulic fracturing with orientated perforations. Petroleum Exploration and Development, 2009, 36(1):103-107
[2]
Mao J. D., Dan C. Olk, Fang Xiaowen, et al. Influence of animal manure application on the chemical structures of soil organic matter as investigated by advanced solid-state NMR and FT-IR spectroscopy. Geoderma, 2008,146(1-2):353-362
[3]
王松,曹明伟,丁连民,等. 纳米TiO2处理河南油田压裂废水技术研究. 钻井液与完井液.2006,23(4):65-68 Wang S., Cao M.W., Ding Lianmin, et al. Nano TiO2 processing Henan oilfield fracturing wastewater technology research. Drilling Fluid and Completion Fluid, 2006,23(4):65-68(in Chinese)
[4]
钟显,赵立志,杨旭,等. 生化处理压裂返排液的试验研究. 石油与天然气化工,2006,35(1):70-72 Zhun X., Zhao L.Z., Yang X., et al. Biochemical treatment fracturing return discharge the experimental study of liquid. Chemical Engineering of Oil & Gas, 2006,35(1): 70-72(in Chinese)
[5]
万里平,赵立志,孟英峰. Fe/C微电解法处理压裂废水的研究. 西南石油学报,2003,26(5):53-55 Wan L.P., Zhao L.Z., Meng Y.F. Fe/C the power needed to deal with fracturing wastewater. Southwest Oil Journal, 2003,26(5):53-55(in Chinese)
[6]
范青玉,何焕杰,王永红,等. 钻井废水和酸化压裂作业废水处理技术研究进展. 油田化学,2002,19(4):387-390 Fan Q.Y., He H.J., Wang Y.H., et al. Drilling waste water and waste water treatment technology acidification fracturing operation research progress. Oilfield Chemistry, 2002,19(4):387-390(in Chinese)
[7]
安杰,刘宇程,陈明燕. 压裂废液处理技术研究进展. 油气田环境保护,2009,19(2):48-50 An J., Liu C.Y., Chen M.Y. Wastewater treatment technology research progress of fracturing. Environmental Protection of Oil & Gas Field, 2009,19(2):48-50(in Chinese)
[8]
赵立志,曾志农,王碧蓉. 混凝沉降-微电解-催化氧化法处理钻井废水. 油气田环境保护,2001,11(4):17-20 Zhao L.Z., Zeng Z.N., Wang B. R. Coagulation sedimentation-micro a catalytic oxidation method and treatment of drilling wastewater. Environmental Protection of Oil & Gas Field, 2001,11(4):17-20(in Chinese)
[9]
邹东雷,卢查根,隋振英,等. 臭氧催化氧化降解硝基苯的实验研究. 环境科学与技术,2010,33(6):132-134 Zou D.L., Lu C.G., Sui Z.Y., et al. Ozone oxidation catalytic degradation of nitrobenzene in experiment. Environmental Science and Technology, 2010,33(6):132-134(in Chinese)
[10]
刘宏,黄凯,依成武,等. 催化臭氧化降解含微囊藻毒素污水. 环境化学,2012,31(3):341-347 Liu H., Huang K., Yi C.W., et al. O3 catalytic degradation of the microcystins sewage. Environmental Chemistry, 2012,31(3):341-347(in Chinese)
[11]
王海龙,张玲玲,王新力,等. 臭氧氧化工艺在印染废水处理中的应用进展. 工业水处理,2011,31(7):18-21 Wang H. L., Zhang L. L., Wang X. L.,et al. Ozone oxidation process in progress in the application of printing and dyeing wastewater. Industrial Water Treatment, 2011,31(7):18-21(in Chinese)
[12]
刘生,杨德敏,方健,等. 高级氧化技术在造纸废水处理中的应用. 中国造纸学报,2010,25(4): 56-62 Liu S., Yang D.M., Fang J., et al. Advanced oxidation technology in papermaking wastewater treatment of application. Transactions of China Pulp and Paper, 2010,25(4):56-62(in Chinese)
[13]
蔡少卿,戴启洲,王佳裕,等. 非均相催化臭氧处理高浓度制药废水的研究. 环境科学学报,2011,31(7):1440-1449 Cai S. Q., Dai Q. Z., Wang J. Y.,et al. The homogeneous catalysts high concentration ozone treatment pharmaceutical wastewater. Acta Scientiae Circumstantiae, 2011,31(7):1440-1449(in Chinese)
[14]
金鹏康,王晓昌,白帆. 腐植酸臭氧化和过氧化氢催化氧化处理特性比较. 环境化学,2005,24(5):533-537 Jin P.K., Wang X. C., Bai F. Comparison of the characteristics of ozonation and hydrogen peroxide catalytic oxidation on the treatment of humic acids. Environmental Chemistry, 2005,24(5):533-537(in Chinese)
[15]
Tambo N., Kamei T. Treatability evaluation of general organic matter. Matrix conception and its application for a regional water and wastewater system. Water Research, 1978,12(11):931-950
[16]
Klaas G. J. Nierop, Pim F. van Bergen, Peter Buurman,et al. NaOH and Na4P2O7 extractable organic matter in two allophanic volcanic ash soils of the Azores Islands:A pyrolysis GC/MS study. Geoderma, 2005,127(1-2):36-51
[17]
金鹏康,王晓昌. 水中天然有机物的臭氧化处理特性. 环境化学,2002,21(3):259-263 Jin P.K., Wang X.C. Stday on ozonation of aquatic humic substance. Environmental Chemistry, 2002,21(3):259-263(in Chinese)
[18]
Griffini O., Iozzelli P. The influence of H2O2 in ozonation treatment: The experience of the water supply service of florence. Ozone Sci. Eng., 1996,18(2):117-126