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Salting-out extraction of acetoin from fermentation broths using hydroxylammonium ionic liquids as extractants

机译:用羟基离子液体作为萃取剂从发酵肉汤中盐化萃取丙酮

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The salting-out extraction (SOE) systems based on ionic liquids (ILs) have attracted extensive attention in the separation of bio-based products, in which imidazolium ILs were widely studied. However, the high cost and toxicity have hindered their further industrial application. Hydroxylammonium ILs have the characteristics of cheap raw material, simple synthesis process and low toxicity, but are rarely used in the SOE systems. In this work, five hydroxylammonium ILs (2 cations and 4 carboxylate anions) were synthesized and used in SOE of biochemicals. The phase forming abilities of ILs with K3PO4 and H2O were affected by the hydrophilicity of anions and cations. With the increase of carbon chain length, phase forming abilities of ILs increased, while the temperature had little influence. The partition behaviors of acetoin, ILs and 2,3-butandiol, and the selectivity of acetoin to organic acids were investigated and compared at different concentrations of ethanolammonium butyrate (EOAB) and K3PO4. In a SOE system consisted of 6% EOAB-38% K3PO4 (w/w), the recovery of acetoin, IL and 2,3-butandiol was 92.7%, 76.0% and 86.0%, respectively, and the selectivity of acetoin to lactic acid and acetic acid was 16.46 and 3.85, respectively. The ATR-IR spectra showed the hydrogen bonds formed between acetoin and O-H, N-H, -COO- of hydroxylammonium IL played an important role in the efficient extraction of acetoin from fermentation broths.
机译:基于离子液体(ILS)的盐析萃取(SOE)系统在生物基产品的分离中引起了广泛的关注,其中咪唑鎓ILS被广泛研究。然而,高成本和毒性阻碍了他们的进一步产业应用。羟铵ILS具有廉价原料,合成过程和低毒性的特点,但很少在SOE系统中使用。在这项工作中,合成了五种羟基铵ILS(2个阳离子和4个羧酸盐阴离子)并用于生物化学的SOE中。用K3PO4和H2O的ILS的相形成能力受阴离子和阳离子的亲水性的影响。随着碳链长度的增加,ILS的相形成能力增加,而温度影响不大。研究了丙酮素,ILS和2,3-丁二醇的分区行为,以及乙酰蛋白与有机酸的选择性,并在不同浓度的乙醇氨磺酸丁酸乙酯(EOAB)和K3PO4中进行比较。在SOE系统中,由6%EOAB-38%K3PO4(W / W)组成,分别回收丙酮蛋白,IL和2,3-丁二醇的回收率为92.7%,76.0%和86.0%,以及丙酮蛋白对乳酸的选择性酸和乙酸分别为16.46和3.85。 ATR-IR光谱显示在丙酮蛋白和O-H之间形成的氢键,N-H,羟基铵IL在从发酵肉汤中有效提取丙酮蛋白中起重要作用。

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