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1)  trioctylamine
三辛胺
1.
Mutual Action of Di-(2-ethlhexyl)-dithiophosphoric Acid and Trioctylamine and the Mechanism of Zinc Ion Extraction by them;
有机硫代磷酸与三辛胺作用及萃取锌的反应
2.
The results showed that trioctylamine was the ideal extractant,and the combinati.
实验结果表明,三辛胺作萃取剂,通过化学萃取和物理萃取相结合可以有效地萃取副产物氯化氢和氯乙醇,避免了氯化物对环境的污染,在后续分离中降低了能耗,最终得到质量分数98。
3.
Biocompatibility of eight organic solvents for Lactobacillus delbruckii was investigated and the mixture of oleyl alcohol and trioctylamine was selected as the solvent of extractive cultivation.
结果表明,采用油醇和三辛胺混合溶剂时,既能降低对细胞生长的毒性,又保持了较强的萃取能力。
2)  TOA
三辛胺
1.
Preparation of Oxalic Acid and Citric Acid Electrodes Based on Their Complexes with TOA;
基于三辛胺缔合作用的草酸及柠檬酸电极的制备
2.
Oxalic acid recovery in a TOA-based system;
三辛胺萃取草酸的溶剂再生研究
3.
In this paper, phase equilibrium governing the reactive extraction of formic, acetic, propionic, butyric, valeric, monochloroacetic, dichloroacetic, trichloroacetic, glycolic, lactic and glyoxylic acids from aqueous solution into solutions of trioctyl amine (TOA) in the diluents, 1-octanol, chloroform, 4-methyl-2-pentanone (MiBK), n-hexane and tetrachloromethane were investigated.
三辛胺 (TOA)为反应萃取剂 ,正辛醇、甲基异丁基酮 (MiBK)、正己烷、四氯化碳和氯仿为稀释剂 ,甲酸、乙酸、丙酸、丁酸、戊酸、一氯乙酸、二氯乙酸、三氯乙酸、乙醇酸、乙醛酸、乳酸为被萃溶质 ,开展了萃取平衡特性的实验研究 。
3)  tri-n-octylamine
三辛胺
1.
Extraction of carboxylic acid with tri-n-octylamineby reversible chemical complexation;
三辛胺对羧酸的络合萃取
2.
A complex solvent, which was composed of tri-n-octylamine (TOA), n-octane and sulfated kerosene, was used to separate glycolic acid from the hydrolysate.
0mol·L-1羟基乙酸的羟基乙腈硫酸法水解液,采用三辛胺(TOA)、正辛醇和磺化煤油组成的萃取剂,在单级液-液萃取装置中通过实验考察了TOA体积百分数、油水两相体积比、萃取温度等条件对羟基乙酸在油水两相中分配系数的影响,并测定了该系统在25℃下的相平衡数据。
3.
The optimal concentration of tri-n-octylamine is 0.
选用三辛胺 (TOA)萃取L -苯丙氨酸转化液中的丙酮酸 ,研究了萃取时间、稀释剂、萃取剂浓度、水相pH值对平衡常数的影响以及反萃条件。
4)  tri-octylamine
三辛胺
1.
The feasible mixture solvent, tri-octylamine (TOA)-n-octanol-kerosene, was suggested according to the extraction results of aniline-2,5-disulfonic acid by using anime, organophosphate and diluent as solvent.
系统地测定了稀释剂、磷氧类和胺类络合剂对苯胺 2 ,5 双磺酸萃取平衡的影响 ,确定了适宜的萃取剂组成 :三辛胺 (TOA) /正辛醇 /煤油 ;并进行了苯胺 2 ,5 双磺酸工业废水处理的实验研究。
2.
In this paper, tri-octylamine (in octanol) was selected as extractant to extract lactic acid and acetic acid.
选择三辛胺为络合剂、正辛醇为稀释剂、乳酸和醋酸为被萃溶质 ,系统地研究了水相pH值及络合剂含量对单组分乳酸、醋酸及其混合物萃取特性的影响。
5)  Trioctyl Amine
三辛胺
1.
Determination of trioctyl amine by non-aqueous titration;
三辛胺化学测定方法的探讨
2.
The microcapsule containing TOA(Trioctyl Amine)was packed into a column which canact as an extractor for enrichment of Pd(Ⅱ).
微胶囊法对微量Pd(Ⅱ)萃取与洗脱的研究白光月,王玉洁,李永涛,张河哲(东北师范大学化学系,长春,130024)毛北星(吉林省粮油专科学校,长春,130062)关键词:微胶囊,钯的富集,三辛胺利用微胶囊膜对芯材的包埋性能,将油相萃取剂。
6)  tri-n-octylamine
三正辛胺
1.
Study on the separation of tungsten through microemulsion extraction with tri-n-octylamine as mobile carrier;
以三正辛胺为载体的微乳液萃取分离钨(Ⅵ)的研究
2.
Study of Extracting Chromium(Ⅵ) with Tri-n-octylamine-Chloroform;
三正辛胺─CHC_(l3)萃取Cr(Ⅵ)的研究
3.
Studies on Transport and Separation of Mo(Ⅵ) by the Emulsion Liquid Membrane of Tri-n-octylamine-SPAN 80-Oxylene;
以三正辛胺为流动载体的乳状液膜迁移和分离Mo(Ⅵ)的研究
补充资料:三辛胺
      氨分子中的三个氢原子为三个正辛基取代而生成的化合物,分子式(C8H17)3N。三辛胺为无色液体;沸点365℃;不溶于水,溶于乙醇、乙醚等。
  
  三辛胺是以氧化铝作催化剂由正辛醇与氨在 400℃高温下反应制得:
    三辛胺和其他C8~C10的三级(叔)胺在冶金工业中都用于多种金属的萃取分离(见溶剂萃取),如钴、镍、锕系和镧系元素的分离。三辛胺的萃取原理主要是:它在酸性溶液中形成溶于水的盐,进而与金属络合阴离子结合,生成溶于有机溶剂而难溶于水的盐,将金属离子萃取到有机相中,例如三辛胺萃取铀的过程:
  
  
  式中R为烷基。
  

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