Bioaccumulation of zinc by Portunus pelagicus: Nuclear application techniques that use radiotracer 65Zn to study influence of concentration of Zn in seawater

Ikhsan Budi Wahyono, Muslim Muslim, Heny Suseno, Chrisna Adhi Suryono, Anung Pujiyanto
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Abstract

Zinc (Zn) is an essential trace metal, but also a potential toxicant to aquatic organisms. Zinc is one of the toxicants from various industrial and domestic activities whose waste is directly discharged into water. One of the marine organisms used as an indicator of pollution is the blue swimming crab (Portunus pelagicus). Bioaccumulation studies of Zn in Portunus pelagicus from Jakarta Bay were conducted in a radiotracer laboratory. Laboratory experiments were done to study the uptake and release of 65Zn radioisotope in Portunus pelagicus. The experiments conducted were biota collection, acclimatization, bioaccumulation, and elimination. This study was to determine the relationship between the amount of 65Zn released into the aquatic environment and its effect on Zn bioaccumulation ability and radiation dose received by Portunus pelagicus. Biokinetics parameters, such as concentration factors CF, uptake rate constant ku, elimination rate constant ke, and concentration factor steady state (CFss) were investigated. The results showed that an increase in concentration would decrease the rate of absorption and rate of elimination, and that the concentration factor CF values ​​varied from 7.82 - 60.62 ml.g-1 in Portunus pelagicus. The concentration factor at steady-state Zn was 25.55-59.47 ml.g–1, which is influenced by the concentration after 6 days of exposure. The depuration rate was observed to be high, with a value of retention 34.33 - 78.88 % of 65Zn absorbed by Portunus pelagicus, which was absent 7 days after exposure. Highlights Laboratory experiments lasting 14 days showed that Portunus pelagicus has the ability to accumulate the heavy metal zinc (Zn) from the environment and release it back into the water The highest bioaccumulation kinetics of zinc (Zn) metal in Portunus pelagicus during the 7-day experiment occurred at a contaminant concentration of 0.5 ppm with an absorption constant (ku) value of 0.7838 d-1 and a release constant value (ke) of 0.0892 d-1 Portunus pelagicus concentration factor (CF) has a moderate value and the smallest uptake constant (ku) and elimination constant (ke) value compared to other biota
对虾锌的生物富集:利用放射性示踪剂65Zn研究海水中锌浓度影响的核应用技术
锌(Zn)是一种必需的微量金属,也是水生生物的潜在毒物。锌是各种工业和生活活动中直接排放到水中的有毒物质之一。作为污染指标的海洋生物之一是蓝泳蟹(Portunus pelagicus)。在放射性示踪实验室中对雅加达湾鲈鱼(Portunus pelagicus) Zn的生物积累进行了研究。通过室内实验研究了65Zn放射性同位素在大虾体内的吸收和释放。实验进行了生物群收集、驯化、生物积累和消除。本研究旨在确定65Zn释放到水生环境中的量与其对对虾锌生物积累能力和辐射剂量的影响关系。研究了浓度因子CF、摄取速率常数ku、消除速率常数ke和浓度因子稳态(CFss)等生物动力学参数。结果表明,浓度的增加会降低对虾的吸收速率和消除速率,其浓度因子CF值为7.82 ~ 60.62 ml.g-1。稳态Zn浓度因子为25.55 ~ 59.47 ml.g-1,受暴露6 d后浓度的影响。结果表明,暴露7 d后,对虾对65Zn的吸收量为34.33 ~ 78.88%,脱除率较高。结果表明,在污染物浓度为0.5 ppm的条件下,大虾对重金属锌(Zn)的生物积累动力学最高,吸附常数(ku)值为0.7838 d-1,释放常数(ke)值为0.0892 d-1与其他生物群相比,吸收常数(ku)和消除常数(ke)值适中,最小
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