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春潮和小潮对 Zuari(热带)河口可食用生物群体内金属的生物可利用性和生物积累的影响。

Spring-neap tides influence on bioavailability of metals and bioaccumulation in edible biota of the Zuari (tropical) Estuary.

机构信息

School of Earth, Ocean and Atmospheric Sciences, Goa University, Taleigao, Goa, 403206, India.

National Centre for Polar and Ocean Research, Vasco da Gama, India.

出版信息

Environ Monit Assess. 2021 Mar 7;193(4):167. doi: 10.1007/s10661-021-08970-x.

Abstract

Role of spring and neap tides on metal bioavailability and bioaccumulation in edible biota was studied in the Zuari Estuary. Moderate to very high range of contamination factor for Fe, Mn, Cr, Zn, Cu, Cd, and Pb at one or more stations and tides suggesting their anthropogenic origin. The anthropogenic input of metals was supported by pollution load index. Relatively high bioavailable concentration of Fe, Mn, Cr, Zn, Cu, Cd, and Pb indicated their toxicity to biota. Total metal concentration, viz., Fe, Mn, Cr, Zn, Cu and Cd, and bioavailable content Mn, Cd, and Pb were higher during spring tide than neap tide at one or more stations which revealed their low mobility under flooded conditions. The above observation was well supported by higher concentration of Fe, Mn, Cr, Zn, Cu, and Pb in Polymesoda erosa at the middle estuary during neap tide than subsequent spring tide. Further, an increase in concentration of metals bound to certain bioavailable fractions toward the surface of the cores revealed their possible bioavailability to the biota with changes in the physicochemical properties of the Zuari estuary. Biota sediment accumulation factor revealed macro level accumulation of Cd and suggested its toxicity to marine biota.

摘要

在 Zuari 河口研究了潮汐对食用生物体内金属生物可利用性和生物累积的影响。在一个或多个站位和潮汐中,Fe、Mn、Cr、Zn、Cu、Cd 和 Pb 的污染因子范围从中等到非常高,表明它们具有人为起源。金属的人为输入得到了污染负荷指数的支持。相对较高的生物可利用浓度的 Fe、Mn、Cr、Zn、Cu、Cd 和 Pb 表明它们对生物的毒性。在一个或多个站位,大潮期间的总金属浓度(Fe、Mn、Cr、Zn、Cu 和 Cd)和生物可利用含量(Mn、Cd 和 Pb)高于小潮,这表明它们在洪水条件下的迁移性较低。这一观察结果得到了很好的支持,即在中河口期间,小潮期间 Polymesoda erosa 体内的 Fe、Mn、Cr、Zn、Cu 和 Pb 浓度高于随后的大潮。此外,核心表面某些生物可利用部分结合的金属浓度增加,表明它们可能对生物具有生物可利用性,同时 Zuari 河口的物理化学性质发生变化。生物沉积物积累因子揭示了 Cd 的宏观水平积累,并表明其对海洋生物的毒性。

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