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首页> 外文期刊>Science of the total environment >Post depositional changes of sedimentary organic matter influence chromium speciation in continental slope sediments - A case study
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Post depositional changes of sedimentary organic matter influence chromium speciation in continental slope sediments - A case study

机译:沉积有机质影响的沉积变化影响铬物质在欧式坡沉积物中的铬形态 - 一种案例研究

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摘要

Influences of post depositional changes of sedimentary organic matter (SOM) on chromium (Cr) speciation in continental slope sediments from the east and west coast of India are presented in this study. Average concentrations of total sedimentary Cr (Cr_T) in the slope areas of both the coasts were not elevated and ranged from 56.8 to 163 mg·kg~(-1) (avg. 97.3 ± 28.3 mg·kg~(-1)). The geology of adjacent land masses influenced sedimentary Cr concentration in the slope areas. Geochemical fractionation study showed that a major fraction (51.6-159 mg·kg~(-1); avg. 89.6 ± 24.3 mg·kg~(-1)) of the total sedimentary Cr was present in residual part of the sediments. Prime hosting phase for non-residual sedimentary Cr was oxidizable binding phase (SOM) (1.4-23.9 mg·kg~(-1); avg. 6.7 ± 6.3 mg·kg~(-1)) followed by reducing binding phase (Fe/Mn-oxyhydroxide phase) (0.1-1.7 mg·kg~(-1); avg. 0.7 ± 0.3 mg·kg~(-1)). Concentration of Cr (Ⅵ) in the slope sediments, varied from 0.2 to 8.3 mg·kg~(-1)(avg. 1.2 ± 1.0 mg·kg~(-1)), was also predominantly associated with the SOM. The δ~(13)C_(org) values of the SOM (ranged from -19.4 to -21.4‰; avg. -20.3 ± 0.5‰) suggests that they were derived from marine sources. Based on molar C/N ratio (ranged from 63-12.9; avg. 9.0 ± 2.0), the SOM were classified as labile organic matter. Increasing molar C/N ratio in the studied sediments was used as a proxy to reflect post depositional changes of the SOM. Association of normalized Cr (Ⅵ) (with respect to Cr_T) increased with increasing SOM concentration by 0.008 mg·kg~(-1). One unit increase of sedimentary molar C/N ratio was found to increase normalized Cr (Ⅵ) (w.r.t. Cr_T) by 0.003 mg·kg~(-1)in the sediments. This study suggests that post-depositional changes of SOM may increase Cr binding capacity and control its speciation and mobility in marine sediment system.
机译:本研究介绍了沉积有机物质(SOM)对铬(Cr)沉积物铬(Cr)形态的影响的影响。两岸坡度区域的平均沉积Cr(CR_T)的平均浓度未升高,范围为56.8至163mg·kg〜(avg。97.3±28.3mg·kg〜(-1))。邻近陆地的地质影响坡面区域的沉积Cr集中。地球化学分级研究表明,总沉积Cr的51.6〜159mg·kg〜(-1); AVG。89.6±24.3mg·kg〜(-1))存在于沉积物的残留部分中。非残留沉积Cr的主要宿主相是可氧化的结合相(1.4-23.9mg·Kg〜(-1); AVG。6.7±6.3mg·kg〜(-1)),然后减少结合阶段(Fe / Mn-羟基氧化物相)(0.1-1-1.7mg·kg〜(-1); avg。0.7±0.3mg·kg〜(-1))。坡沉积物中Cr(Ⅵ)的浓度,从0.2〜8.3mg·kg〜(-1)(Avg。1.2±1.0mg·Kg〜(-1))也主要与SOM相关。 SOM的δ〜(13)C_(ORG)值(范围为-19.4至-21.4‰; avg。-20.3±0.5‰)表明它们来自海洋来源。基于摩尔C / N比(范围为63-12.9; AVG。9.0±2.0),SOM被归类为不稳定的有机物。使用研究沉积物中的摩尔C / N比增加用作反映SOM的沉积后变化的代理。归一化Cr(Ⅵ)(相对于Cr_t)的关系随着SOM浓度的增加而增加0.008mg·kg〜(-1)。发现沉积摩尔C / N比的一个单位增加是在沉积物中将标准化的Cr(ⅵ)(W.R.T.Cr_t)增加0.003mg·kg〜(-1)。该研究表明,SOM的沉积后变化可能增加CR结合能力并控制其在海洋沉积物系统中的形态和流动性。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|145783.1-145783.8|共8页
  • 作者单位

    Centre for Oceans Rivers Atmosphere and Land Sciences Indian Institute of Technology Kharagpur Kharagpur West Bengal 721302 India Geological Oceanography Division CSIR-National Institute of Oceanography Dona Paula Coa 403004 India;

    Centre for Oceans Rivers Atmosphere and Land Sciences Indian Institute of Technology Kharagpur Kharagpur West Bengal 721302 India Geological Oceanography Division CSIR-National Institute of Oceanography Dona Paula Coa 403004 India;

    Regional Research Station (R&L Zone) Bidhan Chandra Krishi Viswavidyalaya Jhargram West Bengal 721507 India;

    Geological Oceanography Division CSIR-National Institute of Oceanography Dona Paula Coa 403004 India;

    Geological Oceanography Division CSIR-National Institute of Oceanography Dona Paula Coa 403004 India;

    Geological Oceanography Division CSIR-National Institute of Oceanography Dona Paula Coa 403004 India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cr-SOM complexation; Cr (Ⅵ) speciation; Early diagenesis; Molar C/N ratio; Sedimentary Cr;

    机译:CR-SOM络合;CR(ⅵ)形态;早期成岩作用;磨牙C / N比;沉积Cr.;

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