黑海水产养殖场中褐鹦鹉螺(Mytilus galloprovincialis Lamarck, 1819)器官和组织中的铜含量及其沉积进入底层沉积物的流动

Q4 Environmental Science
N. Pospelova, V. Egorov, N. Chelyadina, M. V. Nekhoroshev
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引用次数: 3

摘要

贻贝在水化学成分形成中的作用是由其吸附和滋养动力学过程的特性决定的。铜是一种至关重要的元素,但在对贻贝和牡蛎胚胎存活的毒性影响进行测试的10种金属中,铜紧随汞之后。研究贻贝发育过程中铜含量的变化规律,可以确定贻贝养殖过程中使用贻贝产品的卫生和卫生风险,以及生物地球化学在贻贝养殖场附近海水化学成分形成中的作用。本研究的目的是测定软体动物个体发生季节过程中贻贝器官和组织中的铜含量,利用数学模型和经验数据分析铜在矿物质营养食物路径上的同化程度,并评估海洋养殖场对沿海生态系统铜交换过程的影响。这些软体动物是从位于塞瓦斯托波尔外部路边的贻贝养殖场收集的。采用电热雾化原子吸收光谱法研究了环境-贻贝-生物沉积体系中铜的含量。给出了贻贝与水环境铜交换过程的一般模型。在不使用放射性微量元素的情况下,根据贻贝饮食、软组织及其生物沉积中金属浓度的测量结果,提出了确定食物中金属同化程度(q)和食物积累极限系数(Кп)的公式。计算了贻贝养殖场对铜的去除值。揭示了养殖软体动物在重金属降水中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The copper content in the organs and tissues of Mytilus galloprovincialis Lamarck, 1819 and the flow of its sedimentary deposition into bottom sediments in the farms of the Black Sea aquaculture
The role of mussels in formation of water chemical composition is determined by the peculiarities of sorption and trophodynamic processes. Copper is a vital element, but of ten metals the toxic effect of which was tested for the survival of mussel and oyster embryos, copper is following mercury. Studying the regularities of copper content change during mussel ontogeny allows to determine both sanitary and hygienic risks of mussel product use during the mollusks cultivation in mariculture and the biogeochemical role in the formation of the chemical composition of the marine water near mussel farms. The purpose of this work is to determine the copper content in the organs and tissues of the mussels during seasonal course of mollusks ontogenesis, to analyze the degree of copper assimilation along the food path of mineral nutrition using the mathematical model and empirical data and to assess the influence of marine farms on the copper exchange processes in the coastal ecosystem. The mollusks were collected from the mussel farm located in the external roadstead of Sevastopol. Studying the copper content in the environment – mussel – biodeposition system, a method of atomic absorption spectroscopy with electrothermal atomization was used. A general model illustrating the process of copper exchange between the mussels and the water environment is presented. Equations for determining the degree of assimilation of metal from food (q) and the limiting coefficient of food accumulation of metal (Кп) are proposed based on the results of measurements of its concentrations in the mussels’ diet, soft tissue and their biodeposition without using radioactive trace elements. The values of the copper removal by the mussel farm were calculated. The role of cultivated mollusks in the heavy metals precipitation was shown.
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来源期刊
Marine Biological Journal
Marine Biological Journal Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
17
审稿时长
21 weeks
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