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Characterization of Humic Substances by Environmental Scanning Electron Microscopy

机译:环境扫描电子显微镜表征腐殖质

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摘要

Environmental scanning electron microscopy(ESEM)is a new technique capable of imaging micron and submicron particles.Here,we have applied it to image and quantify natural aquatic organic matter(standard Suwannee River humic acid,SRHA).Uniquely,we have observed the humic aggregate structures as a function of humidity and pH.Large aggregates of tens of micrometers were -observed as the dominant material under all conditions,although much smaller material was also observed.Fractal dimensions(D)were calculated between 1.48 and 1.70,although these values were not statistically different under conditions of low humidity.However,D values calculated at high humidities(85%)during the rehydration phase were significantly lower(1.48(+-)0.01)than in the initial dehydration phase(1.69(+-)0.01).This hysteresis indicated that full rehydration of the HS was either kinetically slow or irreversible after dehydration.Fractal analysis of ESEM images was also performed to probe the change in aggregate structure as a function of pH.Minimum values were calculated at neutral pHs,rising by 0.1-0.2 at both high and low pHs because of a combination of the physical chemistry of HS and the impacts of the drying regime within the ESEM.Thus,ESEM was an important complementary technique to other analytical methods.At present,ESEM cannot be used to image nonperturbed natural samples.However,the method is an ideal method for probing the changes in colloid structure as function of hydration state and has the potential to perform fully quantitative and nonperturbing analysis of colloidal structure.
机译:环境扫描电子显微镜(ESEM)是一种能够对微米和亚微米颗粒进行成像的新技术。在此,我们将其用于成像和定量天然水生有机物(标准的苏万尼河腐殖酸,SRHA)。聚集体结构随湿度和pH的变化而变化。在所有条件下,观察到数十微米的大聚集体是主要材料,尽管观察到的材料也小得多。分形维数(D)计算为1.48至1.70,尽管这些值在低湿度条件下没有统计学差异。但是,在脱水阶段在高湿度下计算的D值(85%)明显低于初始脱水阶段的D值(1.48(+-)0.01)磁滞现象表明,脱水后HS的完全补水动力学缓慢或不可逆,还对ESEM图像进行了分形分析以探究骨料结构的变化它是pH的函数。由于HS的物理化学性质和ESEM中干燥方式的影响,在中性pH值下计算出最小值,在高pH和低pH值下均上升0.1-0.2。 ESEM是其他分析方法的重要补充技术。目前,ESEM不能用于对未受干扰的天然样品进行成像。但是,该方法是探测胶体结构随水合作用状态变化的理想方法,并且具有充分发挥其潜力的潜力。胶体结构的定量和无干扰分析。

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  • 来源
    《Environmental Science & Technology》 |2005年第7期|p.1962-1966|共5页
  • 作者单位

    School of Geography,Earth and Environmental Sciences,University of Birmingham,United Kingdom,School of Engineering,University of Birmingham,United Kingdom,and CARE,University of Geneva,Switzerland;

    School of Geography,Earth and Environmental Sciences,University of Birmingham,United Kingdom,School of Engineering,University of Birmingham,United Kingdom,and CARE,University of Geneva,Switzerland;

    School of Geography,Earth and Environmental Sciences,University of Birmingham,United Kingdom,School of Engineering,University of Birmingham,United Kingdom,and CARE,University of Geneva,Switzerland;

    School of Geography,Earth and Environmental Sciences,University of Birmingham,United Kingdom,School of Engineering,University of Birmingham,United Kingdom,and CARE,University of Geneva,Switzerland;

    School of Geography,Earth and Environmental Sciences,University of Birmingham,United Kingdom,School of Engineering,University of Birmingham,United Kingdom,and CARE,University of Geneva,Switzerlands;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:55

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