1)  Chlorobenzene
氯苯系物
2)  chlorobenzene
氯苯
1.
Toxic effect of chlorobenzene on Rhodobacter sphacroides growth;
氯苯对球形红细菌的毒性效应研究
2.
Determination of Chlorobenzene and Its Electrocatalysis Degradation Intermediates by HPLC;
氯苯及其电催化降解中间产物的高效液相色谱测定
3.
Influence on chlorobenzene production from benzene quality;
苯质量对氯苯生产的影响
3)  chlorobenzenes
氯苯
1.
Market analysis and development trend of chlorobenzenes;
氯苯系列产品市场的分析及发展趋势
2.
A method for determination of chlorobenzenes in water by headspace single-drop liquid-phase microextraction with GC-MS detection was investigated.
研究了用顶空液相微萃取GC-MS法测定水中的痕量氯苯类有机污染物。
3.
Five chlorobenzenes(CBs)including 12-dichlorobenzene(12-DCB),13-dichlorobenzene(13-DCB),14-dichlorobenzene(14-DCB),124-trichlorobenzene(124-TCB),and hexachlorobenzene(HxCB)in eleven selected municipal sludges from varied cities of China were determined by GC/MS.
应用GC/MS对我国 1 1个城市污泥中的 5种氯苯化合物 (CBs)进行了研究 。
4)  p-chlorophenol
对氯苯酚
1.
Synthesis of Mesoporous Titania and Photodegradation of p-chlorophenol in Bleaching Wastewater;
介孔TiO_2的制备及其对漂白废水中对氯苯酚的降解研究
2.
Study on resonance enhanced multiphoton ionization of p-chlorophenol;
对氯苯酚的共振增强多光子电离研究
3.
Determination of p-phenoxyphenol and p-chlorophenol by reverse-phase high performance liquid chromatography;
反相高效液相色谱法同时测定对苯氧基苯酚和对氯苯酚
5)  Pentachlorophenol
五氯苯酚
1.
On the research advances in China for degradating pentachlorophenol;
五氯苯酚的降解研究进展
2.
Treatment of pentachlorophenol wastewater appling EGSB reactor;
应用EGSB反应器处理五氯苯酚废水
3.
Electrocatalytic dechlorination of pentachlorophenol by using extended cathode;
阴极扩展电催化还原法对五氯苯酚的脱氯特性
6)  p-dichlorobenzene
对二氯苯
1.
The study of simulating p-dichlorobenzene emission and effect factors using environmental test chamber;
对二氯苯释放及影响因素的环境测试舱模拟研究
2.
Hygienic Survey and Evaluation of the P-Dichlorobenzene in the Indoor Air;
室内空气中对二氯苯卫生学调查与评价
3.
Analysis of p-dichlorobenzene by GC;
气相色谱法分析对二氯苯
参考词条
补充资料:聚对苯二甲酸丁二酯/乙烯系共聚物共混物
分子式:
CAS号:

性质: 采用各种改性的乙烯共聚物与PBT共混以增加相容性。从缺口冲击强度来看,一般比PBT提高1~2倍(添加量20%时)。所用乙烯系共聚物如LLDPE、MA-g-LLDPE、EVA等。使用MA-g-LLDPE得到的相畴变细,改性效果更好。使用机械共混法制备。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。