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1)  4-Chlorophenol(4-CP)
对氯苯酚(4-CP)
2)  4-chlorophenol
4-氯苯酚
1.
Degradation of 4-chlorophenol by TiO_2 photocatalysis;
TiO_2光催化降解水溶液中的4-氯苯酚
2.
Degradation of 4-chlorophenol in aqueous solution by contact glow discharge electrolysis;
接触辉光放电等离子体降解水溶液中4-氯苯酚
3.
Degradation of 4-chlorophenol in a new electrochemical oxidation system;
新型电化学体系对4-氯苯酚的降解
3)  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
4)  parachlorophenol
对氯苯酚
1.
Detecting parachlorophenol content by gas chromatography;
气相色谱法测定对氯苯酚含量
2.
The photoconversion of parachlorophenol in water ice under the condition of the presence of H_2O_2;
H_2O_2存在下冰相中对氯苯酚的光转化
3.
Aiming at low concentration parachlorophenol wastewater discharged from a chemical works in Pearl River Delta,the biodegradation efficiency of parachlorophenol by aerated bio-packing tower and influencing factors were studied.
针对珠江三角洲地区化工厂排出的低浓度对氯苯酚废水,研究了曝气生物填料塔对对氯苯酚的降解,并对降解效果的影响因素进行了分析。
5)  4-chlorophenol
对氯苯酚
1.
Reduction of Fe~(3+)during 4-chlorophenol degradation by Fenton-like process:Role of two reduction pathways;
类Fenton降解对氯苯酚中Fe~(3+)的还原——两种途径及其作用
2.
Study on Degradation of 4-chlorophenol by Ultrasonic Technology;
超声技术降解对氯苯酚的研究
3.
The Physical Design of the Air-lift Inner Circulation Biomicrocapsules Fluidized Bed and its Application in the 4-chlorophenol Wastewater Treatment
气升式内循环生物微胶囊流化床的结构设计及对氯苯酚废水处理
6)  p-chlorphenol
对氯苯酚
1.
Kinetic studies of p-chlorphenol wastewater treatment by UV/Fenton oxidation;
UV/Fenton光催化氧化降解对氯苯酚废水反应动力学
2.
The degradation of p-chlorphenol in the wastewater by electrochemical oxidation using graphite electrode was studied and the influence of the concentration of supporting electrolytes,initial p-chlorphenol concentration,and initial pH were investigated.
目的研究电化学氧化法对水体中的对氯苯酚的降解效果。
补充资料:对氯苯酚
   分子式  HOC6H4Cl
     CAS号 106-48-9
   性质  纯品为白色晶体(工业品为黄色或粉红色晶体)。有不愉快的刺激性气味。易燃。几乎不溶于水,溶于苯、乙醇、乙醚、甘油、氯仿、固定油和挥发油。蒸气易挥发。1%溶液使石蕊显酸性。相对密度1.2651(40/4℃)。熔点43~44℃。沸点220℃。折射率nD(40℃)1.5579。闪点121℃。
   用途  用于制药工业和染料工业
     毒性   毒性强烈。经皮肤吸收或吸入、吞咽本品后呈现高的毒性,对生物体组织有强烈刺激性。大鼠经口LD50为670mg/kg。吞咽后,需立即洗胃。溅着皮肤后,应用大量水冲洗。车间应通风良好。生产设备要密闭,防止跑、冒、滴、漏。操作人员应配戴好防护用具。 
    包装储运  铁桶包装。按易燃有毒品规定贮运。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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