电气石类负离子释放材料的研究进展

刘权, 胡应模*, 侯春燕, 李梦灿, 王雪

化工新型材料 ›› 2018, Vol. 46 ›› Issue (4) : 9 -11.

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化工新型材料 ›› 2018, Vol. 46 ›› Issue (4) : 9-11.
综述与专论

电气石类负离子释放材料的研究进展

    刘权, 胡应模*, 侯春燕, 李梦灿, 王雪
作者信息 +

Research progress of tourmaline negative ion release material

  • Liu Quan, Hu Yingmo, Hou Chunyan, Li Mengcan, Wang Xue
Author information +
文章历史 +
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摘要

电气石是一种可天然释放负离子的矿物材料,受到广泛的关注。简要介绍了电气石的成分、结构及其释放负离子的机理,综述了电气石新型功能材料在汽车内饰、建筑、纺丝和塑料等领域的研究现状及应用。

Abstract

As a natural releasing negative ions and environmentally friendly mineral,tourmaline materials had attracted wide attention.The composition and structure of tourmaline and the mechanism of negative ion releasing were briefly introduced.The research status and application of novel functional materials of tourmaline in automobile interiors,construction,spinning,plastics were reviewed.

关键词

负离子 / 电气石 / 矿物材料 / 功能材料

Key words

negative ion / tourmaline / mineral material / functional material

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电气石类负离子释放材料的研究进展[J]. 化工新型材料, 2018, 46(4): 9-11 DOI:

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参考文献

[1] Fletcher L A,Gaunt L F,Beggs C B,et al.Bactericidal action of positive and negative ions in air[J].BMC Microbiology,2007,7(1):32-41.
[2] Henry D J,Novák M,Hawthorne F C,et al.Nomenclature of the tourmaline-supergroup minerals[J].American Mineralogist,2011,96(5/6):895-913.
[3] Kubo T.Interface activity of water given rise by tourmaline[J].Solid State Physics,1989,24(12):121-123.
[4] Li Y,Hu Y,Liu Y,et al.Preparation of tourmaline-containing functional copolymer p(TUC/BA/MMA) and its performances[J].Soft Materials,2015,14(2):57-63.
[5] 邵海荣,贺庆棠.森林与空气负离子[J].世界林业研究,2000,13(5):19-22.
[6] 展杰,郝霄鹏,刘宏.天然矿物功能晶体材料电气石的研究进展[J].功能材料,2006,37(4):524-527.
[7] 杨如增,杨满珍,廖宗廷.天然黑色电气石红外辐射特性研究[J].同济大学学报(自然科学版),2002,30(2):183-188.
[8] 展杰,郝霄鹏,刘宏.天然矿物功能晶体材料电气石的研究进展[J].功能材料,2006,37(4):524-527.
[9] 康文杰,电气石释放负离子材料的制备及性能研究[D].西安:陕西科技大学,2013.
[10] 马鸿文.工业矿物与岩石[M].北京:化学工业出版社,2011,18-22.
[11] 胡应模,陈旭波,汤明茹.电气石功能复合材料研究进展及前景展望[J].地学前缘,2014,21(5):331-337.
[12] Setkova T V,Shapovalov Y B,Balitskii V S.Experimental groeth and struetural-morphological characteristics of Co-tourmaline[J].Doklady Earth Sciences,2009,424(1):82-85.
[15] Nakamura T,Kubo T.Tourmaline group crystal reaction with water[J].Ferrorlectrics,1992,137:13-31.
[16] 吴瑞华,汤云晖,张晓晖.电气石的电场效应及其在环境领域中的应用前景[J].岩石矿物学杂志,2001,20(4):474-476.
[17] 何婷婷,郑来久.基于释放负离子红麻纤维汽车内饰材料研究[J].中国麻业科学,2011,33(3):122-127.
[18] 邢铁玲,徐霞,盛家镛,等.纳米负离子汽车内装饰面料的制备及其性能[J].纺织学报,2012,33(3):78-82.
[19] 穆锐,代丽丽,朱凤凤.负离子汽车地毯背衬胶黏剂的研究[J].化学与黏合,2011,33(1):33-35.
[20] Se-kyu I M.Material composition using mainly yellow soil for civil engineering and construction:US,7556686[P].2009-07-07.
[21] Van Dyk A C,Heyns A M.Dispersion stability and photo-activity of rutile powders[J].Journal of Colloid and Interface Science,1998,206(2):381-391.
[22] 苍风波,蔡怀福.负离子添加剂在涂料中的应用[J].中国涂料,2003,34(2):60-61.
[23] 陈春云,姚尧,吴永伟,等.环境功能负离子涂料的制备及抗菌性能研究[J].中山大学学报(自然科学版),2007,46(1):171-172.
[24] 禚昌亚.尼龙6负离子纤维的制备与性能研究[D].广州:华南理工大学,2011.
[25] 姜迎娟,葛艳蕊,张瑜.负离子功能PET纤维的研制[J].聚酯工业,2011,24(4):17-19.
[26] 李青山,胡玉洁,任长权,等.负离子丙纶的制备及应用[J].合成纤维工业,2004,27(5):43-44.
[27] 王连军,刘方.聚酯负离子纤维的制备及其性能研究[J].聚酯工业,2007,19(6):14-17.
[28] 杜冰,魏取福,郑来久.基于静电纺丝制备电气石/海藻酸钠/聚乙烯醇复合纤维[J].化工新型材料,2015,43(5):40-42.
[29] Hu Y M,Yang X.The surface organic modification of tourmaline powder by Span60 and its composite[J].Applied Surface Science,2012,258(19):7540-7545.
[30] 任飞,张多.电气石/HDPE复合材料的功能性研究[C].重庆:中国仪器仪表学会仪表功能材料分会,2011.
[31] 郭彬,李青山,吕珍珍,等.梅花电气石改性PBT回收料研究[J].现代塑料加工应用,2011,23(3):17-19.
[32] 钟湖.电气石/聚丙烯酸酯复合乳液的合成及其性能研究[D].延吉:延边大学,2013.
[33] Yeh J T,Wei W,Hsiung H,et al.An investigation of negative air ions releasing properties of tourmaline contained polypropylene resins[J].Journal of Polymer Engineering,2006,26(1):117-132.
[34] Yeh J T,Hsiung H H,Wei W,et al.Negative air ion releasing properties of tourmaline/bamboo charcoal compounds containing ethylene propylene dieneterpolymer/polypropylene composites[J].Journal of Applied Polymer Science,2009,113(2):1097-1110.

基金资助

国家自然科学基金项目(51372233)

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