Department of Earth Sciences, Pondicherry University, Puducherry, 605014, India.
Department of Geology, Khajamalai Campus, Bharathidasan University, Trichy, 620 023, India.
Arch Environ Contam Toxicol. 2021 Jan;80(1):208-233. doi: 10.1007/s00244-020-00774-3. Epub 2020 Oct 27.
Submarine groundwater discharge and associated trace element fluxes from the Coleroon River estuary to south bay, India, has been attempted, because increasing trace elements could result in harmful algal blooms and eutrophication. Trace elements (Al, Cr, Mn, Fe, Ni, Cu, Zn, Sr, Mo, Ba, Pb, Th, and U) in surface water, pore, and groundwater samples were monitored for 10 days in three locations (A, B, and C) by considering tidal fluctuations. The trace elements Al, Cr, Fe, Ni, Zn, Sr, Mo, Pb, Th, and U were greater and found to be influenced by processes, such as fresh groundwater discharge and seawater intrusion. Lower Mn, Cu, and Ba signifies impact due to sediment adsorption, mixing, and elemental exchange during fresh groundwater and seawater mixing. Salinity versus trace element plot infers greater trace element mobility with cumulative salinity influenced by the conformist behavior of freshwater, seawater, and mixing. The calculated submarine groundwater discharge supported dissolved trace elements fluxes were 107,047.8 n mol d m for location A, 183,520.2 n mol d m for location B, and 181,474.4 n mol d m for location C, respectively. Variations in dissolved trace elements fluxes are attributed to variations in pH, free redox environment in the aquifer, adsorption or desorption by sediments, and the environmental cycle of marine organisms.
已尝试对科伦河河口向印度南湾的地下水排泄及其相关微量元素通量进行研究,因为增加的微量元素可能导致有害藻类大量繁殖和富营养化。通过考虑潮汐波动,在三个位置(A、B 和 C)监测了地表水、孔隙水和地下水样品中的微量元素(Al、Cr、Mn、Fe、Ni、Cu、Zn、Sr、Mo、Ba、Pb、Th 和 U)10 天。微量元素 Al、Cr、Fe、Ni、Zn、Sr、Mo、Pb、Th 和 U 含量较高,发现受新鲜地下水排泄和海水入侵等过程的影响。Mn、Cu 和 Ba 含量较低表明,在新鲜地下水和海水混合过程中,受沉积物吸附、混合和元素交换的影响。盐度与微量元素关系图推断,由于受淡水、海水和混合的一致性行为的影响,微量元素的迁移性随累积盐度的增加而增加。计算得出的地下水排泄支持的溶解态微量元素通量分别为位置 A 为 107047.8nmol·dm-3·d-1,位置 B 为 183520.2nmol·dm-3·d-1,位置 C 为 181474.4nmol·dm-3·d-1。溶解态微量元素通量的变化归因于含水层中 pH 值、自由氧化还原环境、沉积物的吸附或解吸以及海洋生物的环境循环的变化。