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络合萃取法回收生物油加氢水相中的乙酸 被引量:2

Recovery of acetic acid from aqueous phase of bio-oil hydrogenation by reactive extraction
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摘要 应用络合萃取法对生物油加氢水相中的乙酸进行回收,系统地研究了络合剂和稀释剂的种类、络合剂含量对络合萃取效率的影响,以及化学组分不同的生物油加氢水相的络合提取效果.结果表明,选择三辛胺(TOA)为络合剂,异辛醇为稀释剂,络合剂的用量占萃取剂体系体积分数50%~ 60%,萃取剂与水相体积比为1时,对生物油加氢水相中乙酸的提取效率最高达到84.4%.而且发现水相中其他的有机酸,如丙酸、丁酸和苯酚也被提取了出来.经络合萃取处理后,生物油加氢水相的化学需氧量(COD)大大降低,降低了后续水处理成本. A reactive extraction method is used to recover the acetic acid. The influences of types of extractant and diluents,extractant concentration and acetic acid initial concentration on the extraction efficiency are investigated. The results show that acetic acid extraction efficiency can reach 84. 4% under the following conditions :50% -60% volume ratio of tri-n-octylamine diluted in 2-ethyl-hexanol as the extractant and 1 volume ratio of extractant and aqueous phase. Other organic compounds present in the aqueous phase (propionic acid, butyric acid and phenol) are also co-extracted in the experiment. Furthermore, the COD of the aqueous phase is obviously decreased after extraction treatment, which reduces the subsequent water treatment cost.
出处 《现代化工》 CAS CSCD 北大核心 2014年第9期114-117,共4页 Modern Chemical Industry
基金 国家自然科学基金青年科学基金项目(21201153) 教育部留学回国人员科研启动基金项目(教外司留[2013]1792)
关键词 生物油 加氢 水相 乙酸 络合萃取 bio-oil hydrogenation aqueous phase acetic acid reactive extraction
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  • 1Mortensen P M, Grunwaldt J D, Jensen P A,et al. A review of cata- lytic upgrading of bio-oil to engine fuels [ J]. Applied Catalysis A : General,2011,407:1 - 19.
  • 2Oasmaa A, Kuoppala E, Gust S, et al. Fast pyrolysis of forestry resi- due [ J ]. Energy and Fuels,2003,17 (4) : 1075 - 1084.
  • 3Wasewar K L. Reactive extraction:An intensifying approach for car- boxylic acid separation[ J]. International Journal of Chemical Engi- neering and Applications,2012,3 (4) :249 - 255.
  • 4Mahfud F H, Van Geel F P, Venderbosch R H, et al. Acetic acid re- covery from fast pyrolysis oil:An exploratory study on liquid-liquid reactive extraction using aliphatic tertiary amines [ J ]. Separation Science and Technology,2008,43 : 3056 - 3074.
  • 5Rasrendra C B, Girisuta B, Van de Bovenkamp H H,et al. Recovery of acetic acid from an aqueous phase derived from pyrolysis oil by reactive extraction using tri-n-octylamine [ J ]. Chemieal Engineering Journal ,2010,176/177:244 - 252.
  • 6冯灵芝,俞芬芬.微波消解法与回流法测定COD的比较试验[J].上海环境科学,2010,29(3):137-138. 被引量:3
  • 7Karimi E, Gomez A, Kycia S W, et al. Thermal decomposition of acetic and formic acid catalyzed by red mud implications for the po- tential use of red mud as a pyrolysis bio-oil upgrading catalyst[ J]. Energy & Fuels,2010,24 (4) :2747 - 2757.
  • 8许林妹,华韬.TBP络合萃取醋酸稀溶液的特性[J].江南大学学报(自然科学版),2004,3(3):299-302. 被引量:10
  • 9Caseaval D, Kloetzer L, Galaetion A I. Influence of organic phase polarity on interracial mechanism and efficiency of reactive extrac- tion of acetic acid with tri-n-octylamine [ J ]. Journal of Chemical and Engineering Date ,2011,56 ( 5 ) :2521 - 2526.
  • 10嫡丽巴哈,杨义燕,戴猷元.醋酸稀溶液的络合萃取[J].高校化学工程学报,1993,7(2):174-179. 被引量:49

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  • 1李丽娟,于文国,蒋萃岚,张之东,马丽锋,陈慧.从6-APA和7-ADCA生产废液中回收苯乙酸[J].化工环保,2007,27(3):260-262. 被引量:3
  • 2Dutta M, Baruah R, Dutta N N. Adsorption of 6-aminopenicillanic acid on activated carbon [ J ]. Separation and Purification Technolo- gy,1997,12(2) :99 - 108.
  • 3Chen Dong-Hwang, Wang Sung-Shyong, Huang Ting-Chia. Separa- tion of phenylacetic acid ,6-aminopenicillanic acid and penicillin G with electrodialysis under constant current[ J ]. Journal of Chemical Technology and Biotechnology, 1995,64 (3) :284 - 292.
  • 4Bora M M, Ghosh A C, DUTYA N N ,et al. Reactive extraction of 6- Aminopenicillanic acid with Aliquat-336:Equilibrium and Kinetics [ J]. The Canadian Journal of Chemical Engineering, 1997,75 (6) : 520 - 526.
  • 5Haensel R, Halwachs W, Schggerl K. Reactive extraction of D, L- phenylalanine with trioctyl-methyl-ammanium chloride ( TOMAC ) as a carrier-equilibrium and mass transfer investigations [ J ]. Chem- ical Engineering Science, 1986,41 ( 7 ) : 1811 - 1825.
  • 6Doma~sk U, Walczak K, Kr61ikowski M. Extraction desulfurization process of fuels with ionic liquids [ J ]. The Journal of Chemical Thermodynamics ,2014,77:40 - 45.
  • 7Zhang J,Wang A, Wang Y, et al. Heterogeneous oxidative desulfu- rization of diesel oil by hydrogen peroxide: Catalysis of an am- phipathic hybrid material supported on SiO2 [ J ]. Chemical Engi- neering Journal,2014,245( 1 ) :65 -70.
  • 8Long Z, Yang C, Zeng G, et al. Catalytic oxidative desu|furization of dibenzothiophene using catalyst of tungsten supported on resin D152 [ J ]. Fuel ,2014,130 ( 15 ) : 19 - 24.
  • 9Wang L, Sun B, Yang F H, et al. Effects of aromatics on desulfurization of liquid fuel by ~-complexation and carbon.adsorbents[ J ]. Chemical Engineering Science, 2012, 73 ( 7 ) : 208 - 217.
  • 10Song X,Sun L, He G, et al. Isolated Cu ( I ) sites supported on ,8-cyclodextrin : An efficient ~-complexation adsorbent for thiophene capture[ J]. Chemical Communications ,2011,47:650 - 652.

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