菲律宾迈尼特湖地表水、底沉积物和水生生物中重金属的积累

IF 0.3
Emalina L. Ebol, Carlos H. Donoso, R. Saura, Rolit Joan C. Ferol, Juliet Ruth D. Mozar, Arman N. Bermon, Jerry B Manongas, Joan Christine H. Libot, Cara Jane Matabilas, J. Jumawan, R. Capangpangan
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引用次数: 5

摘要

迈尼特湖是菲律宾最大的生物多样性保护区之一,拥有丰富的渔业资源。然而,由于工业、农业废水和小规模采矿活动的投入,该湖面临重金属污染的风险。目前的工作评估了2018年该湖七个战略区域的主要水生动物和沉积物中镉、铅和汞等重金属的水平。7种鱼类的肌肉样本中tHg和Cd的含量均低于检测限(BDL)。在nilochromis、Glossogobius giuris、Channa striata和Vivipara angularis肌肉中检测到痕量Pb,但均在安全范围内。河蟹(Sundathelpusa sp)体内痕量铅浓度超过安全限值。三种被评估的无脊椎动物中Cd和tHg均低于检测限。仅在西南季风期间,S4 (Magtiaco)和S5 (Jaliobong)的铅含量低于标准限量(0.05 ppm),但在2018年东北季风期间,所有站点均未检测到铅。而对于Cd,仅在东北季风期间检测到微量浓度,其中S2 (Mayag), S3 (Magpayang), S4 (Magtiaco), S5 (Jaliobong), S6 (Dinarawan)和S7 (Kalinawan)的Cd超过了水中Cd的标准限值(0.01 ppm)。7个支流站点在两个采样季节均未检测到水中tHg的浓度。沉积物中Pb均在西南季风期间检测到,其中S6 (Dinarawan)和S7 (Kalinawan)的Pb浓度最高,超过了安全限值。沉积物中的微量Cd大多低于可检测限度。在东南季风期间,S4 (Magtiaco)和S7 (Kalinawan)地区沉积物中tHg浓度超过安全限值。这些发现建议必须进行持续的重金属监测。建议对其他水生生物的重金属含量进行评估,并通过重金属形态分析来评估这些重金属所造成的生态风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heavy Metals Accumulation in Surface Waters, Bottom Sediments and Aquatic Organisms in Lake Mainit, Philippines
Lake Mainit is one of the largest lakes recognized as Key Biodiversity Areas (KBA) in the Philippines with rich fishery resources. However, the lake is at risk from heavy metal contamination due to inputs of industrial, agricultural effluents and small-scale mining activities. The present work evaluated levels of heavy metals namely cadmium, lead, and mercury from key aquatic fauna and sediments from seven strategic sections of the lake in 2018. Muscle samples of all seven fish species assessed were below detections limits (BDL) for tHg and Cd. Trace concentrations of Pb in the muscles were detected in Oreochromis niloticus, Glossogobius giuris, Channa striata and Vivipara angularis but values were within safe ranges. Trace concentrations of Pb in the riverine crab (Sundathelpusa sp) exceeded safe limits. Both Cd and tHg were below detection limits in the three invertebrates assessed. Traces of Pb were detected in S4 (Magtiaco) and S5 (Jaliobong) below standard limits (0.05 ppm) only during the southwest (SW) monsoon but Pb were not detected across all stations during the NE monsoon of 2018. For Cd, however, trace concentrations were detected only during the NE monsoon wherein Cd in S2 (Mayag), S3 (Magpayang), S4 (Magtiaco), S5 (Jaliobong), S6 (Dinarawan) and S7 (Kalinawan) exceeded standard limits for Cd in waters (0.01 ppm). Concentrations of tHg in the water were not detected across the two sampling seasons in all seven tributary stations. In sediments, Pb were all detected during the southwest monsoon with highest Pb concentrations in S6 (Dinarawan) and S7 (Kalinawan) which exceeded safe limits. Trace Cd in sediments were mostly below detectable limits. Concentrations of tHg in sediments exceeded safe limits during the SE monsoon in S4 (Magtiaco) and S7 (Kalinawan) areas. These findings recommended that continuous heavy metal monitoring must be conducted. It is also strongly suggested to evaluate the presence of heavy metals in other aquatic organisms and assess the ecological risk posed by these heavy metals though heavy metal speciation analysis.
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International Letters of Natural Sciences
International Letters of Natural Sciences MULTIDISCIPLINARY SCIENCES-
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