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Fluorescence regional integration and differential fluorescence spectroscopy for analysis of structural characteristics and proton binding properties of fulvic acid sub-fractions

机译:荧光区域一体化和差分荧光光谱分析富乙酸亚级分的结构特征和质子结合性能分析

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摘要

Structural characteristics and proton binding properties of sub-fractions (FA3–FA13) of fulvic acid (FA), eluted stepwise by pyrophosphate buffer were examined by use of fluorescence titration combined with fluorescence regional integration (FRI) and differential fluorescence spectroscopy (DFS). Humic-like (H-L) and fulvic-like (F-L) materials, which accounted for more than 80% of fluorescence response, were dominant in five sub-fractions of FA. Based on FRI analysis, except the response of F-L materials in FA9and FA13, maximum changes in percent fluorescence response were less than 10% as pH was increased from 2.5 to 11.5. Contents of carboxylic and phenolic groups were compared for fluorescence peaks of FA sub-fractions based on pH-dependent fluorescence derived from DFS. Static quenching was the dominant mechanism for binding of protons by FA sub-fractions. Dissociation constants (pKa) were calculated by use of results of DFS and the modified Stern-Volmer relationship. The pKaof H-L, F-L, tryptophan-like and tyrosine-like materials of FA sub-fractions exhibited ranges of 3.17–4.06, 3.12–3.97, 4.14–4.45 and 4.25–4.76, respectively, for acidic pHs. At basic pHs, values of pKa for corresponding materials were in ranges of 9.71–10.24, 9.62–10.99, 9.67–10.31 and 9.33–10.28, respectively. At acidic pH, protein-like (P-L) materials had greater affinities for protons than did either H-L or F-L materials. The di-carboxylic and phenolic groups were likely predominant sites of protonation for both H-L and F-L materials at both acidic and basic pHs. Amino acid groups were significant factors during proton binding to protein-like materials of FA sub-fractions at basic pH.
机译:通过使用荧光滴定与荧光区域一体化(FRI)和差分荧光光谱(DFS)相结合,通过使用荧光滴定逐步洗脱的富磷酸(FA)的结构特征和质子结合性能。腐殖质(H-L)和富含氟化(F-L)材料,其占荧光反应的80%以上,在FA的五个亚级分中占主导地位。基于FRI分析,除F-L材料在FA9AND中的响应外,荧光反应百分比的最大变化小于10%,因为pH从2.5增加到11.5。比较基于来自DFS的pH依赖性荧光的FA子级分的荧光峰的含甲酯和酚醛基团的含量。静态猝灭是通过FA子级分结合质子的显性机制。通过使用DFS和改进的船尾的关系的结果来计算解离常数(PKA)。 FA子级分的PKAOF H-L,F-L,色氨酸样和酪氨酸样材料分别显示为3.17-4.06,3.12-3.97,4.14-4.45和4.25-4.76,用于酸性pH。在碱性pHS中,相应材料的PKA值分别为9.71-10.24,9.62-10.99,9.67-10.31和9.33-10.28。在酸性pH下,蛋白质样(P-L)材料具有比H-L或F-L材料更大的质子的亲和力。在酸性和碱性pH中,Di-羧酸和酚醛基团是H-L和F-L材料的质子化的主要位点。氨基酸基团在质子结合到碱性pH下的FA子级分的蛋白质样材料期间是显着因素。

著录项

  • 来源
    《Journal of environmental sciences》 |2018年第2018期|共10页
  • 作者单位

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    College of Resources Environment and Tourism Capital Normal University;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

    Stockbridge School of Agriculture University of Massachusetts;

    State Key Laboratory of Environmental Criteria and Risk Assessment Chinese Research Academy of Environmental Science;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

    Fluorescence titration; Protonation; Modified Stern-Volmer equation; Dissociation constant; Binding;

    机译:荧光滴定;质子化;改性船尾沃尔醇方程;解离常数;结合;

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