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Hydrogenation of phenylpyruvic acid to phenylalanine catalyzed by Ni-B/SiO2

机译:Ni-B / SiO2催化苯丙酮酸加氢制苯丙氨酸

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摘要

Phenylalanine(Phe)is a significant amino acid that cannot be synthesized by human themselves but must be taken from environment.It was initially found that the nanosized amorphous Ni-B/SiO2 alloy prepared by the chemical reduction method was an effective catalyst for the preparation of Phe from phenylpyruvic acid(PPA)by amination and hydrogenation.It has been found that the amorphous Ni-B/SiO2 alloy catalyst exhibits superior activity and selectivity to the traditional catalysts Raney Nj and Urushibara nickel.The effects of reaction time.amounts of catalysts and ammonia solution,reaction temperature,and H2 pressure on the reaction have been investigated systematically.The results indicated that the yield of Phe was 97.9%.and the selectivity for Phe reached 98.9%when the reaction was carried out for 3 h at 333 K and 2.0 Mpa of H2 with m(Cat.):m(PPA)=0.6:1.0 and n(NH3):n(PPA)=3:1.The catalysts were characterized by XRD,AAS,XPS,BET,and TEM.and the relationship between the catalyst structure and the catalytic activity was discussed in detail.It was found that the reason why Ni-B/SiO2 amorphous alloy catalyst was much more active for the preparation of Phe could be accounted for by the presence of electron-rich Ni due to electron donation from alloying B:the smaller size of Ni-B particles,the larger specific surface area of Ni-B/SiO2.
机译:苯丙氨酸(Phe)是人体无法合成的重要氨基酸,必须从环境中提取。最初发现,化学还原法制备的纳米非晶态Ni-B / SiO2合金是制备该催化剂的有效催化剂。通过胺化和氢化反应从苯丙酮酸(PPA)分离苯丙氨酸。已发现无定形Ni-B / SiO2合金催化剂具有比传统催化剂Raney Nj和Urushibara镍更好的活性和选择性。反​​应时间的影响系统地研究了催化剂,氨溶液,反应温度和氢气压力。结果表明,Phe的收率为97.9%。在333℃反应3h对Phe的选择性达到98.9%。 H(K)和m(PPA)= 0.6:1.0,n(NH3):n(PPA)= 3:1的H2为2.0 Mpa。用XRD,AAS,XPS,BET和XRD对催化剂进行了表征TEM与催化剂结构的关系研究发现,Ni-B / SiO2非晶态合金催化剂对Phe的制备具有更高的活性,其原因可以归因于电子给体的富电子Ni的存在。合金化B:Ni-B颗粒尺寸越小,Ni-B / SiO2比表面积越大。

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  • 来源
    《天然气化学(英文版)》 |2008年第3期|303-308|共6页
  • 作者单位

    Key Laboratory of Catalysis and Materials Science of the State Ethnic Affairs Commission & Ministry of Education,College of Chemistry and Materials Science,South-Central Universityfor Nationalities,Wuhan 430074,Hubei,China;

    Key Laboratory of Catalysis and Materials Science of the State Ethnic Affairs Commission & Ministry of Education,College of Chemistry and Materials Science,South-Central Universityfor Nationalities,Wuhan 430074,Hubei,China;

    Key Laboratory of Catalysis and Materials Science of the State Ethnic Affairs Commission & Ministry of Education,College of Chemistry and Materials Science,South-Central Universityfor Nationalities,Wuhan 430074,Hubei,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 油气田开发与开采;
  • 关键词

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