...
首页> 外文期刊>Journal of Nuclear Physics, Material Sciences, Radiation and Applications >Gamma Irradiation of Aqueos Solution of L-Aspartic Acid, L-Aspartic Acid in Solid State, and L-Aspartic Acid Adsorbed into Na-Montmorillonite Its Relevance in Chemistry Prebiotic
【24h】

Gamma Irradiation of Aqueos Solution of L-Aspartic Acid, L-Aspartic Acid in Solid State, and L-Aspartic Acid Adsorbed into Na-Montmorillonite Its Relevance in Chemistry Prebiotic

机译:L-天冬氨酸,L-天冬氨酸的水溶液的γ辐射,以及吸附在Na-Montmorillonite上的L-天冬氨酸其在化学益生元的相关性

获取原文

摘要

Aspartic acid is an amino acid present in the modern proteins, however, is considered a primitive amino acid hence its importance in prebiotic chemistry experiments studies. In some works of prebiotic chemistry have been studied the synthesis and the stability of organic matter under high energy sources, and the role of clays has been highlighted due to clays that can affect the reaction mechanisms in the radiolytic processes. The present work is focused on the study of the role of Namontmorillonite in the gamma radiolysis processes of L-aspartic acid. Gamma radiolysis processes were carried out in three different systems a) L-aspartic acid in aqueous solution; b) L-aspartic acid in solid-state; and c) L-aspartic acid adsorbed into Na-montmorillonite. L-aspartic acid was analyzed by high-performance liquid chromatography?electrospray ionization?mass spectrometry (HPLCESI-MS). The results showed that the decomposition of L-aspartic acid considerably decreased in the presence of clay thus highlighting the protector role of clays and favors the stability of organic matter even under the possible high energy conditions of primitive environments. The principal product ofgamma radiolysis of L-aspartic acid was succinic acid produced by deamination reaction. On the other hand, when aspartic acid was irradiated in solid-state the main product was the L-aspartic acid dimer. Both radiolysis products are important for chemical evolution processes for L-aspartic acid in primitive environments.
机译:天冬氨酸是现代蛋白质中存在的氨基酸,但是被认为是一种原始氨基酸,因此在益生元化学实验研究中的重要性。在一些野生化学作品中,已经研究了高能源下有机物质的合成和稳定性,并且由于粘土,粘土的作用被突出,其可以影响辐射性化方法中的反应机制。本作本作的重点是研究Namontmorillonite在L-天冬氨酸的γ辐射过程中的作用。在水溶液中在三种不同的系统A)L-天冬氨酸中进行γ辐射分解方法; b)固态的L-天冬氨酸;并且c)L-天冬氨酸吸附成Na-montmorillonite。通过高效液相色谱法分析L-天冬氨酸?电喷雾电离α质谱(HPLCESI-MS)。结果表明,L-天冬氨酸的分解在粘土存在下显着降低,从而突出了粘土的保护作用,即使在可能的原始环境的可能的高能量条件下也有利于有机物质的稳定性。 L-天冬氨酸的γ辐射分解的主要产物是通过脱氨反应产生的琥珀酸。另一方面,当在固态照射天冬氨酸时,主要产物是L-天冬氨酸二聚体。在原始环境中,辐射分析产物对L-天冬氨酸的化学进化方法很重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号