文章摘要
炭黑表面能与甲苯抽出物透光率的关系
Relationship between Surface Free Energy of Carbon Black and Light Transmittance of Toluene Extract
投稿时间:2020-03-18  修订日期:2020-03-18
DOI:10.12136/j.issn.1000-890X.2020.09.0709
中文关键词: 炭黑  表面能  色散分量  甲苯抽出物  透光率  正烷烃  吸附自由能  反相色谱
英文关键词: carbon black  surface energy  dispersive component  toluene extract  light transmittance  n-alkanes  adsorption free energy  inverse gas chromatography
基金项目:国家重点研发计划项目(2017YFB0307100)
作者单位E-mail
路 明* 怡维怡橡胶研究院有限公司 lum@everi.com.cn 
张红霞 怡维怡橡胶研究院有限公司  
和富金 怡维怡橡胶研究院有限公司  
李 明 怡维怡橡胶研究院有限公司  
张 超 怡维怡橡胶研究院有限公司  
衣黎明 怡维怡橡胶研究院有限公司  
摘要点击次数: 1604
全文下载次数: 206
中文摘要:
      选取具有相同比表面积、不同甲苯抽出物透光率的炭黑N134,采用反相色谱测试其表面能,考察炭黑表面能与甲苯抽出物透光率的关系。结果表明:当甲苯抽出物透光率低时,炭黑N134晶体边缘的高能位点被不完全燃烧的原料油或者烃类物质占据,炭黑N134的表面能色散分量低;当甲苯抽出物透光率为77%时,炭黑N134的表面能色散分量为233.6 mJ·m-2,甚至比甲苯抽出物透过率为92%的炭黑N234低约24%;当甲苯抽出物透光率高于82%时,随着甲苯抽出物透光率的提高,炭黑N134的表面能色散分量呈线性提高;当甲苯透光率为99%时,炭黑N134的表面能色散分量达到511.0 mJ·m-2。炭黑生产企业可通过控制工艺和原材料提高炭黑纯净度,以提高炭黑质量。
英文摘要:
      Surface energy of carbon black(CB) N134 with the same specific surface area and different light transmittance of toluene extract(LTTE) were measured by inverse gas chromatography to investigate the effects of LTTE on surface energy of CB.The results showed that:the dispersive component of surface energy of CB N134 was low when the LTTE was low,because the high energy site of CB crystal edge was occupied by oil and alkanes.When the LTTE was 77%,the dispersive component of surface energy of CB N134 was 233.6 mJ·m-2,which was about 24% lower than that of CB N234 with 92% LTTE.The dispersive component of surface energy of CB N134 increased linearly with LTTE when the LTTE was higher than 82%.The dispersive component of surface energy of CB N134 was 511.0 mJ·m-2 when LTTE was 99%.So,to improve product quality,the manufacturers of CB could improve purity of CB by controlling production process and raw material.
Author NameAffiliationE-mail
LU Ming EVE Rubber Institute Co. Ltd lum@everi.com.cn 
ZHANG Hongxia EVE Rubber Institute Co. Ltd  
HE Fujin EVE Rubber Institute Co. Ltd  
LI Ming EVE Rubber Institute Co. Ltd  
ZHANG Chao EVE Rubber Institute Co. Ltd  
YI Liming EVE Rubber Institute Co. Ltd  
查看全文   查看/发表评论  下载PDF阅读器
关闭