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1)  chloroanilines
氯苯胺
1.
Start-up,formation and microbial community analysis of aerobic granules in SABR for treatment of organic wastewater containing aniline and chloroanilines;
降解苯胺和氯苯胺类污染物好氧污泥颗粒化及微生物种群结构分析
2.
Granulation of aerobic sludges in sequencing airlift bioreactor(SABR) for the treatment of chloroanilines-containing organic wastewater;
序批式气提生物反应器(SABR)处理氯苯胺类有机废水好氧污泥颗粒化研究
3.
Study on Succession of Microbial Population in Granulation of Aerobic Chloroanilines-Degrading Sludge;
降解氯苯胺类化合物好氧污泥颗粒化过程微生物种群演替的研究
2)  Chloroaniline [,klɔ:rə'ænili:n]
氯苯胺
1.
Granulation and Microbial Molecular Ecology of Aerobic Sludge for Degrading Aniline and Chloroaniline;
降解苯胺和氯苯胺好氧污泥颗粒化及其微生物分子生态特性研究
3)  chloroaniline [,klɔ:rə'ænili:n]
氯代苯胺
1.
Recent progress in selective catalytic hydrogenation of chloronitrobenzene to chloroaniline;
氯代硝基苯催化加氢制备氯代苯胺的研究进展
2.
Degradation of chloroanilines by dominant mixed bacteria;
高效复合菌降解氯代苯胺类化合物的特性研究
3.
The advance of electrochemical method for synthesis of chloroaniline;
氯代苯胺的电化学合成进展
4)  o-chloroaniline
邻氯苯胺
1.
MOCA is prepared with o-chloroaniline and paraformaldehyde as materials.
以邻氯苯胺和多聚甲醛为反应原料制备MOCA。
2.
The cheap available starting material,O-chloroaniline,reacted with trichloroacetaldehyde monohydrate and hydroxylamine hydrochloride to produe N-(2-chlorophenyl)-2-(hydroxyimino) acetamide;which was treated with concentrated sulfuric acid to obtained 3-chlorolisatin,then 3-chlorolisatin was oxidized by hydrogen peroxide to afford 2-amino-3-chlorobenzoic acid.
以邻氯苯胺为原料,与水合三氯乙醛、盐酸羟胺反应先制得邻氯基(N-肟基乙酰)苯胺,用浓硫酸关环生成3-氯靛红。
3.
A series of titania-supported nickel catalysts with different Ni loadings (10%~40%) were prepared by the incipient impregnation method and applied in the hydrogenation of o-chloronitrobenzene to o-chloroaniline.
用等体积浸渍法制备了一系列不同镍负载量的负载型Ni/TiO2催化剂,并将其应用于邻氯硝基苯加氢制邻氯苯胺的反应。
5)  m-chloroaniline
间氯苯胺
1.
The Adsorption Behavior of m-chloroaniline on NKA-II Resins by Online Spectrophotometer Measure System;
紫外分光光度测量系统在线跟踪研究NKA-II树脂吸附间氯苯胺的行为
2.
Using o-nitrotoluene as an oxidant,the improved preparation of 7-chloroquinldine was studied by classical Skraup reaction of m-chloroaniline and crotonaldehyde.
研究了以邻硝基甲苯为氧化剂,间氯苯胺和巴豆醛通过经典的Skraup反应制备7-氯喹哪啶的改进方法。
3.
The separation of m-chloroaniline and p-chloroaniline was carried out by countercurrent dissociation extraction(CDE).
逆流解离萃取通过套用萃取酸分离间氯苯胺及对氯苯胺
6)  4-chloroaniline
对氯苯胺
1.
Finally,reaction of 4-chloroaniline with 1-adamantoyl chloride afforded N-(4-chlorophenyl)-1-admantanecarboxamide,an important bifunctional pharmaceutical intermediate.
以金刚烷为原料,在H2SO4作用下与HCOOH反应生成1-金刚烷甲酸,再与SOCl2回流1 h反应生成1-金刚烷甲酰氯,通过与对氯苯胺(PCA)的胺化反应制得最终产物N-(4-氯苯基)金刚烷甲酰胺,总收率为83。
2.
00 mol·L~(-1),current density=600 A·m~(-2) and 70 ℃,the yield of 4-chloroaniline was up to 84.
在以螺旋状的铂丝为阳极、螺旋状的铜丝为阴极的无隔膜电解池中,考察了乙醇为溶剂时,4-氯硝基苯质量浓度、电流密度、温度、盐酸浓度对电解还原4-氯硝基苯合成对氯苯胺产率的影响。
3.
0,The yield of 4-chloroaniline is 84.
0,对氯苯胺的收率为84。
补充资料:氯苯胺
分子式:
CAS号:

性质:有邻位(o-)、间位(m-),对位(p-)三种异构体.邻氯苯胺为琥珀白色液体,露置空气中变黑;熔点-2℃;沸点208.84℃,84.6℃(L333kPa);相对密度1.213;折射率1.5895。间氯苯胺为无色到亮琥珀色液体,贮藏后变黑,有毒,熔点-10.4℃,沸点230.5℃,相对密度1.2161,折射率1.5941,闪点-10.4℃。邻、间位氯苯胺可溶于一般有机溶剂和酸中,不溶于水;对氯苯胺为白色至微黄色固体,从乙醇或石油醚中得片状晶体,熔点70℃,沸点232℃,相对密度1.429,折射率nD871.5546,可溶于热水、乙醇、乙醚、丙酮及二硫化碳。三种异构体均可用盐酸与锡或铁屑还原相应的硝基氯苯而得。常用作染料、医药、农药等的中间体。

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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