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Green reclaiming of riboflavin from crystallization mother liquor by macroporous resin and electrodialysis

机译:通过大孔树脂和电渗析从结晶母液中获得核黄素的绿色回收

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摘要

Riboflavin crystallization mother liquor contains a prominent amount of riboflavin which discharged through as a waste material. As a waste, it causes serious environmental pollution. Hence, with the source of environment pollution, it also causes wastage of rich riboflavin resources. The main object of this study is to control environmental pollution by the process of crystallization mother liquor and recovered the purified riboflavin from the waste material. For that purpose, different macroporous resins with different adsorption and desorption properties (HP20, SP207, AB-8, and D290) were firstly investigated. It revealed that SP 207 possessed good separation results as compared to other ones. To optimize the separation process, different adsorption and desorption experiments were carried out on a column packed with SP 207 resin. The Freundlich isotherm model was applied which shows that equilibrium obtained at 20 degrees C. However, with the resin SP 207, the optimum flow rates were observed at these conditions, adsorption 5 BV/h, desorption flow rate 20 BV/h with 6 BV and eluent used (20:80, v/v) hydrochloric acid-ethanol. The hydrochloric acid and ethanol in desorption solution were recovered 80% and 75%, respectively, by electrodialysis and distillation. However, in the final product, the purity of riboflavin was obtained 96.84 +/- 0.21% with the recovery of 80.66 +/- 0.39%. These findings revealed that highly purified riboflavin product can be achieved from the crystallization mother liquor by macroporous resins and by electrodialysis process. The reported method proved experimentally with successful results and observed as a low-cost process and environment-friendly.
机译:核黄素结晶母液含有突出量的核黄素,其作为废料排出。作为浪费,它会导致严重的环境污染。因此,随着环境污染的来源,它也会导致富含核黄素资源的浪费。本研究的主要目的是通过结晶母液的过程来控制环境污染,并从废料中回收纯化的核黄素。为此目的,首先研究了具有不同吸附和解吸性(HP20,SP207,AB-8和D290)的不同大孔树脂。它揭示了与其他良好的分离结果具有良好的分离结果。为了优化分离过程,在用SP 207树脂包装的柱上进行不同的吸附和解吸实验。应用了Freundlich等温模型,其表明,在20摄氏度下获得的平衡。然而,在树脂SP 207,在这些条件下观察到最佳流速,吸附5bv / h,过度流量20 bv / h具有6 bv使用和洗脱液(20:80,v / v)盐酸 - 乙醇。通过电渗析和蒸馏分别将盐酸和解吸溶液中的乙醇分别回收80%和75%。然而,在最终产物中,获得核黄素的纯度96.84 +/- 0.21%,回收率为80.66 +/- 0.39%。这些发现表明,高度纯化的核黄素产品可以通过大孔树脂和电渗析方法从结晶母液中获得。报告的方法通过成功的结果实验证明,并观察为低成本过程和环保。

著录项

  • 来源
    《Environment, development and sustainability》 |2021年第3期|3114-3129|共16页
  • 作者单位

    Beijing Univ Chem Technol State Key Lab Chem Resource Engn Beisanhuan Donglu 15 Hao Beijing Peoples R China;

    Beijing Univ Chem Technol State Key Lab Chem Resource Engn Beisanhuan Donglu 15 Hao Beijing Peoples R China;

    Beijing Univ Chem Technol State Key Lab Chem Resource Engn Beisanhuan Donglu 15 Hao Beijing Peoples R China;

    Beijing Univ Chem Technol State Key Lab Chem Resource Engn Beisanhuan Donglu 15 Hao Beijing Peoples R China;

    Shanghai Acebright Pharmaceut Grp Co Ltd Zhangjiang Hitech Pk Shanghai Peoples R China;

    Chifeng Pharmaceut Co Ltd Chifeng Inner Mongolia Peoples R China;

    Beijing Univ Chem Technol State Key Lab Chem Resource Engn Beisanhuan Donglu 15 Hao Beijing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Macroporous resin; Riboflavin; Crystallization mother liquor; Electrodialysis;

    机译:大孔树脂;核黄素;结晶母液;电渗透;
  • 入库时间 2022-08-19 01:21:02
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