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首页> 外文期刊>Marine Chemistry >Dissolved boron in a brackish-water lagoon system (Chilika lagoon, India): Spatial distribution and coastal behavior
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Dissolved boron in a brackish-water lagoon system (Chilika lagoon, India): Spatial distribution and coastal behavior

机译:微咸水泻湖系统中的溶解硼(印度希利卡泻湖):空间分布和海岸行为

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摘要

Boron is a bio-essential metalloid and its concentrations as well as isotopic compositions are useful tracers for various environmental processes; however, its oceanic budget is not yet well-constrained. In this contribution, spatial and seasonal distribution of dissolved boron of the Chilika lagoon, India (Asia's largest brackish-water lagoon) and its possible source waters have been investigated to constrain its coastal behavior and chemical budget. Further, oxygen isotopic analyses of selected samples were carried out to quantify the evaporation process. The boron concentrations show significant spatial variations (0.6-246 mu mol/kg; for monsoon (Aug., 2017) season), with the lower values being observed in the river-dominated northern sector of the lagoon. The area-weighted boron concentration of the Chilika during monsoon (128 mu mol/kg) is found intermediate to that of the riverine (1.7 +/- 0.8 mu mol/kg), groundwater (25 +/- 38 mu mol/kg) and oceanic (406 +/- 13 mu mol/kg) water sources. In contrast to boron, the average delta O-18 value (2.2 +/- 0.7 parts per thousand) for the lagoon samples is significantly enriched than their source waters. Calculations based on the delta O-18 and salinity data estimate about 40% loss of surface water via evaporation. Co-variation between boron and salinity of the samples establishes conservative behavior during onset of the monsoon (June) and also, in the monsoon (Aug) seasons. The boron-salinity trend and boron/salinity ratios of pre-monsoon (May) samples, however, point to its non-conservative behavior with significant boron removal at low-saline regime through ion-exchange (adsorption) processes. Removal of boron is mostly limited to salinity 15 psu and the intensity (in %) of removal increases steadily with decrease in salinity. These adsorptive losses of boron during pre-monsoon period are mostly dependent on the water residence time; higher residence time allows efficient particulate-water interaction, which possibly intensifies the removal. Further, the boron concentrations show significant changes on diurnal and fortnightly timescales due to tide/ebb cycles. However, the coastal behavior of boron, despite of large concentration changes, remains invariant due to tidal forcing. Outcomes of this study underscore adsorptive removal of boron from coastal regimes and its importance in understanding authigenic boron distribution in clay-rich sedimentary archives from nearshore settings.
机译:硼是一种生物必需的准金属,其浓度以及同位素组成可用于各种环境过程。但是,它的海洋预算还没有很好地约束。在这一贡献中,对印度Chilika泻湖(亚洲最大的微咸水泻湖)及其可能的源水的溶解硼的空间和季节分布进行了研究,以限制其沿海行为和化学收支。此外,对所选样品进行了氧同位素分析以量化蒸发过程。硼浓度表现出显着的空间变化(0.6-246μmol/ kg;季风(2017年8月)季节),在以河流为主的泻湖北部地区观察到较低的浓度。季风期间Chilika的面积加权硼浓度(128μmol / kg)位于河流(1.7 +/- 0.8μmol / kg),地下水(25 +/- 38μmol / kg)的中间和海洋(406 +/- 13μmol / kg)水源。与硼相反,泻湖样品的平均δO-18值(千分之2.2 +/- 0.7份)比其源水明显富集。基于δO-18和盐度数据的计算估计了蒸发引起的地表水损失约40%。样品的硼和盐度之间的协变建立了在季风爆发(六月)期间以及季风(八月)时期的保守行为。但是,季风前(5月)样品的硼盐度趋势和硼/盐度比指出了其非保守行为,并通过离子交换(吸附)过程在低盐度条件下显着去除了硼。硼的去除主要限于盐度<15 psu,并且去除强度(%)随着盐度的降低而稳定增加。季风前硼的这些吸附损失主要取决于水的停留时间。较高的停留时间可实现有效的颗粒-水相互作用,这可能会加剧去除作用。此外,由于潮汐/退潮循环,硼浓度在昼夜和每两周的时间尺度上显示出显着变化。然而,尽管潮汐浓度变化很大,但由于潮汐强迫,硼的沿海行为仍保持不变。这项研究的结果强调了从沿海地区吸附去除硼及其对了解近岸环境中富含粘土的沉积档案中自生硼分布的重要性。

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  • 来源
    《Marine Chemistry》 |2019年第20期|103663.1-103663.13|共13页
  • 作者单位

    Indian Inst Sci Educ & Res, Dept Earth & Climate Sci, Dr Homi Bhabha Rd, Pune 411008, Maharashtra, India;

    Indian Inst Sci Educ & Res, Dept Earth & Climate Sci, Dr Homi Bhabha Rd, Pune 411008, Maharashtra, India;

    Indian Inst Sci Educ & Res, Dept Earth & Climate Sci, Dr Homi Bhabha Rd, Pune 411008, Maharashtra, India|Savitribai Phule Pune Univ, Dept Environm Sci, Pune 411007, Maharashtra, India;

    Indian Inst Trop Meteorol, Pune 411008, Maharashtra, India;

    Indian Natl Ctr Ocean Informat Serv, Hyderabad 500090, Telangana, India;

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

    Conservative behavior; Salinity; Trace elements; Adsorption; Tides;

    机译:保守行为;盐度;痕量元素;吸附;潮汐;

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