唐炬,曾福平,梁鑫,等.吸附剂对局部放电下SF 6 分解特征组分的吸附研究[J].中国电机工程学报,2014,34(3):486-494.Tang Ju,Zeng Fuping,Liang Xin,et al.Study on the influence of absorbent on sf6 decomposition characteristics under partial discharge[J].Proceedings of the CSEE,2014,34(3):486-494(in Chinese).
[2]
邱毓昌.GIS装置及其绝缘技术[M].北京:水利水电出版社,1994:101-116.Qiu Yuchang.GIS and its insulation technology [M].Beijing:China WaterPower Press,1994:101-116 (in Chinese).
[3]
苏镇西,赵也.设备吸附剂对SF 6 气体分解产物检测结果影响的试验研究[J].高压电器,2013,49(6):26-37.Su Zhenxi,Zhao Ye.Experimental investigation into effects of absorbents on detection of sf6 decomposition products in SF6 equipment[J].High Voltage Apparatus,2013,49(6):26-37(in Chinese).
[4]
季严松,颜湘莲,王承玉,等.电弧作用下SF 6 气体分解产物的试验研究[J].高压电器,2013,49(6):26-27.Ji Yansong,Yan Xianglian,Wang Chenyu,et al.Experimental study on SF 6 decomposition products under the stress of electrical Arc[J].High Voltage Apparatus,2013,49(6):26-27(in Chinese).
[5]
唐炬,曾福平,梁鑫,等.两种吸附剂对SF 6 分解特征组分吸附的实验与分析[J].中国电机工程学报,2013,33(31):211-219.Tang Ju,Zeng Fuping,Liang Xin,et al.A comparative experimental study on the interaction of SF 6 feature decomposition products with alumina and molecular sieve kdhF-03[J].Proceedings of the CSEE,2013,33(31):211-219(in Chinese).
[6]
Piemontesi M.Analysis of decomposition products of sulfur hexafluoride in negative DC corona with special emphasis on content of H 2 O and O 2 [C]//Conference Record of the 1994 JEEE International Symposium on Electrical Insulation,Pittsburgh,PA,USA,1994:499-503.
[7]
张晓星,姚尧,唐炬,等.SF 6 放电分解气体组分分析的现状和发展[J].高电压技术,2008,34(4):664-669.Zhang Xiaoxing,Yao Yao,Tang Ju,et al.Actuality and perspective of proximate analysis of SF 6 decomposed [J].High Voltage Engineering,2008,34(4):664-669(in Chinese).
[8]
Heise H M,Kurte R,Fischer P.Gas analysis by infrared spectroscopy as a tool for electrical fault diagnostics in SF 6 insulated equipment[J].Journal of Analytical Chemistry,1997,358(7/8):793-799.
[9]
Zhao Yushun,Li Jian,Hu Jianlin,et al.Fabrication of super-hydrophobic surfaces with long-term stability [J].Journal of Dispersion Science and Technology,2011,32(7):969-974.
[10]
徐如人,庞文琴.分子筛与多孔材料化学[M].北京:科学出版社,2004:145-155.Xu Ruren,Pang Wenqing.Molecular sieves and porous materials chemistry[M].Beijing:Science Press,2004:145-155(in Chinese).
[11]
翁强,陈沛,赵凤起,等.多级孔无铝Beta分子筛的合成与表征,高等学校化学学报,2014,35(2):215-223.Weng Qiang,Chen Pei,Zhao Fengqi,et al.Synthesis and characterization of hierarchical aluminum free beta zeolite[J].Chemical Journal of Chinese Universities,2014,35(2):215-223(in Chinese).
[12]
Arshadi M,Salimi Vahid F,Salvacionb J W L,et al.A practical organometallic decorated nano-size SiO 2 -Al 2 O 3 mixed-oxides for methyl orange removal from aqueous solution[J].Applied Surface Science,2013,280(1):726-736.
[13]
汪凤娇,吴秀文,陈树森.硅铝介孔分子筛与膨润土复合吸附剂对Pb(Ⅱ)动态吸附性能的实验研究[J].硅酸盐通报,2012,31(4):759-765.Wang Fengjiao,Wu Xiuwen,Chen Shusen.Dynamic absorption properties of aluminosilica molecular sieves for Pb(Ⅱ)[J].Bulletin of the Chinese Ceramic Society,2012,31(4):759-765.
[14]
邵一敏,孙强强,张秋云,等.镍改性MCM-41介孔分子筛对水中甲基蓝的吸附[J].环境科学学报,2014,34(2):3011-3016.Shao Yimin,Sun Qiangqiang,Zhang Qiuyun,et al.Application of nickel modified MCM-41 as an absorbent to remove methyl blue from aqueous solution [J].Acta Scientiae Circumstantiae,2014,34(2):3011-3016(in Chinese).
[15]
褚效中,徐继明.氢同位素吸附容量与吸附剂比表面积的关系[J].高等学校化学学报,2008,29(4):775-778.Chu XiaoZhong,Xu Jiming.Relationship between the adsorption capacity of hydrogen isotopes and specific surface area of absorbents[J].Chemical Journal of Chinese Universities,2008,29(4):775-778(in Chinese).