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Hydrolysis technology and kinetics of poultry waste to produce amino acids in subcritical water

机译:家禽粪便的水解技术和动力学在亚临界水中产生氨基酸

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摘要

In order to improve the utilization of bird wastes, the hydrolysis technology optimization and reaction kinetics for amino acid production by extremely low acids in subcritical water have been conducted. In this experiment, the raw material was chicken intestines and the research target was the yield of amino acids. The effects of reaction temperature, reaction time and H2SO4 concentration in reactant system on amino acid yields were investigated using the orthogonal test and the optimum hydrolysis technology conditions were obtained. The experimental results show that the best hydrolysis technology is: reaction temperature 533 K, reaction time 28 min, H_2SO_4 concentration in reactant system 0.02 wt.%. Under this condition, the amino acid yield reaches 11.49%. The results of chemical reaction kinetics experiment indicate that the total velocity constants of chicken intestine hydrolysis in subcritical water with H_2SO_4 concentration in reactant system 0.02 wt.% are 1.52 × 10~(-2). 3.35 × 10~2, 11.58 × 10~(-2), and 14.01 × 10~(-2) at 473 K, 503 K, 533 K, and 553 K respectively. The reaction kinetics order is 1.52, activation energy is 64.44kJ/mol and the pre-exponential factor is 1.91 × 10~5.
机译:为了提高禽粪的利用率,已经进行了水解技术的优化和亚临界水中极低酸生产氨基酸的反应动力学。在该实验中,原料是鸡肠,研究目标是氨基酸的产率。采用正交试验研究了反应温度,反应时间和反应体系中H2SO4浓度对氨基酸收率的影响,获得了最佳的水解工艺条件。实验结果表明,最佳水解工艺为:反应温度533 K,反应时间28 min,反应体系中H_2SO_4的浓度为0.02 wt。%。在此条件下,氨基酸收率达到11.49%。化学反应动力学实验结果表明,反应体系中H_2SO_4浓度为0.02 wt。%的亚临界水中鸡肉肠道水解的总速度常数为1.52×10〜(-2)。在473 K,503 K,533 K和553 K时分别为3.35×10〜2、11.58×10〜(-2)和14.01×10〜(-2)。反应动力学阶数为1.52,活化能为64.44kJ / mol,预指数因子为1.91×10〜5。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2010年第2期|P.187-191|共5页
  • 作者单位

    Dept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

    rnDept. of Chem. Eng., School of Environ, and Chem. Eng., Shanghai University, No. 333 Nanchen Road, Shanghai 200444, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    subcritical water; hydrolysis; reaction kinetics; poultry wastes; amino acid;

    机译:亚临界水水解;反应动力学家禽废物;氨基酸;

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