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1)  p-toluidine
对甲苯胺
1.
Using ammonia nitrogen as control parameter for treatment synthetic p-toluidine wastewater in SBR;
以氨氮作为SBR处理对甲苯胺废水的控制参数
2.
Study on enhancing treatment of p-toluidine synthetic wastewater by immobilized microorganism;
固定化微生物强化处理对甲苯胺模拟废水的研究
3.
Separation of p-toluidine by activated carbon adsorption from 4B acid solutions;
活性炭吸附法分离4B酸溶液中的对甲苯胺
2)  p-methylaniline
对甲苯胺
1.
Adsorption behavior of aminated polymeric resin for adsorptingp-methylaniline from aqueous solution
胺基化树脂对水溶液中对甲苯胺的吸附性能
2.
Non-carcinogenic dye intermediate 2′-methyl-4,5′-diaminobenzene sulfonanilide(Ⅳ) was synthesized from p-methylaniline and p-aminoacetanilide by acetylation,chlorosulfonation,amidation and deacetylation.
对甲苯胺、对氨基乙酰苯胺为主要原料,经乙酰化、氯磺化、酰胺化、脱乙酰化等步骤,合成了无致癌性染料中间体2′-甲基-4,5′-二氨基苯磺酰替苯胺。
3.
his paper states the prepatation andelectrochemical response characteristics of the poly( p-methylaniline)film modified Pt electrode as a potentialsensor,A good linear relationship between themodified electrode potential and pH is obtained in therange of pH2~13.
本文叙述了聚对甲苯胺修饰电极的制备及其电化学响应特性。
3)  4-methylaniline
对甲苯胺
1.
Compared with Amberlite XAD-4,new polymeric adsorbent modified with acetylaniline(ZH-05) was prepared and used for adsorbing 4-methylaniline in aqueous solution,including the static equilibrium adsorption and desorption characteristics at different temperature,and the adsorption mechanism was further investigated.
合成了一种用乙酰苯胺修饰的新型超高交联吸附树脂ZH-05,并用Amberlite XAD-4作对照,比较了它们对水溶液中对甲苯胺的静态吸附和脱附行为。
2.
The static adsorption and desorption performance for 4-methylaniline onto them and Amberlite XAD-4 at different temperature were studied and their adsorption mechanism were further investigated.
合成了用苯甲酰基修饰的新型吸附树脂ZH-03和ZH-04,同时研究了它们和AmberliteXAD-4对不同温度下水溶液中对甲苯胺的静态吸附和脱附性能,并对吸附机理进行了探讨。
3.
The adsorption capacities of new H and NK to 4-methylaniline are obviously much higher than that of Amberlite XAD-4,which is attributed to micropore mechanism and partial polarity.
对比 Amberlite XAD-4与两种新型吸附树脂 NK和新 H对对甲苯胺的静态吸附行为 ,根据吸附等温线研究并讨论吸附热力学性质 。
4)  4-Toluidine
对甲苯胺
5)  p-toluidine
对甲基苯胺
1.
Studies on Thermochemistry of Coordination Reaction of Cadmium Chloride with p-toluidine;
氯化镉与对甲基苯胺配位反应的热化学研究
2.
Synthesize 2-methyl-5-acetamino benzene sulfochloride using p-toluidine as primer reactant by aceylation and chlorosulfonation.
以对甲基苯胺为起始原料,通过乙酰化和氯磺化反应合成2-甲基-5-乙酰氨基苯磺酰氯(Ⅰ)。
3.
Determination of 2-Toluidine and impurity(2-nitrotoluene, m-Toluidine, p-Toluidine) in process of industry produce by gas chromatography was introduced.
气相色谱法测定工业生产过程中邻甲基苯胺及其杂质邻硝基甲苯、间甲基苯胺、对甲基苯胺的含量。
6)  o-(p-)toluidine
邻(对)甲苯胺
补充资料:对甲苯胺
  分子式  CH3C6H4NH2
  CAS号  106-49-0
  性质  白色有光泽的片状结晶。可燃。相对密度0.9619(20/4℃)。熔点44~45℃。沸点200.2℃。闪点87.2℃。折射率nD(45℃)1.5534。微溶于水,溶于乙醇、乙醚、二硫化碳和油类。溶于稀无机酸并生成盐。
    用途  用于染料、农药及医药工业
  毒性   有毒。有致癌性。家兔中枢神经系统最低中毒浓度0.04mg/L。在皮肤接触40分钟后,即呈中毒症状。空气中最高容许浓度3mg/m3。毒性和邻甲苯胺相似。参见“邻甲苯胺”。 
  包装储运  采用铁桶包装,每桶净重180kg。贮存于干燥、通风处,防热、防潮、防晒。按有毒物品规定贮运。
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