水工混凝土对淡水双壳虫的致死作用

Q3 Environmental Science Limnological Review Pub Date : 2019-09-01 DOI:10.2478/limre-2019-0012
B. Wojtasik, M. Zbawicka, Lucyna Grabarczyk, Marzena Kurpińska
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引用次数: 2

摘要

摘要大多数在建水利建筑要求混凝土混合料直接设置在水下。采用这种程序的主要原因是为了限制混凝土结合料的冲刷,并提高工作组织的效率,以确保混凝土浇筑的连续性。混凝土技术的最新发展和新成分的使用对水生环境的影响尚未确定。采用以硅酸盐水泥和逸硅灰为粘结剂的天然卵石骨料制备了BP混凝土样品,而LB混凝土则采用轻质骨料和硅酸盐水泥为粘结剂。本文的目的是回答不同成分的水工混凝土(BP和LB)和在水生境中的设置技术是否会对常见的多晶Dreissena polymorpha(软体动物,双壳动物)的生活条件产生任何影响的问题。观察了两种新硬化混凝土的致死效应。在LB混凝土的情况下,对D.polymorpha的致命结果可能是试验培养中电解传导显著增加的影响。在BP的情况下,电解电导率和pH的参数没有超过湖泊中出现的值。应考虑由于水生/湖泊环境的反应或某些成分的洗脱而产生的多晶藻有毒化合物的可能性。D.polymorpha是水生环境中毒性的指标,因此可以用作分析混凝土对自然环境影响的模式生物。这项研究的结果表明,混凝土的现代化学成分对水生环境及其覆盖的生物产生了重大影响。它们强调了基于对自然环境中使用的物质的水生生物反应的研究的必要性。
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The lethal effect of hydrotechnical concrete on freshwater Bivalvia
Abstract Most hydrotechnical buildings under construction demand the concrete mixture to be set directly under water. The main reason for such a procedure is to limit the washing away of the the concrete binding mixture and to increase the efficiency of organisation of work so as to ensure continuity in concreting. The impact on the aquatic environment of recent developments in concrete technology and the use of new components has not yet been established. Natural pebble aggregate containing portland cement and fugacious siliceous ash as a binder was used to prepare BP concrete samples, while concrete marked LB was composed with lightweight aggregate and portland cement as a binder. The aim of this paper was to answer to the question whether hydrotechnical concrete of different compositions (BP and LB) and the technology of setting in a water habitat have any influence on the life condition of commonly occurring Dreissena polymorpha (Mollusca, Bivalvia). The lethal effect of two types of freshly hardening concrete was observed. In the case of LB concrete the lethal outcome for D. polymorpha could be the effect of a considerable increase of electrolytic conduction in the test cultivation. In the case of BP the parameters of electrolytic conductivity and pH did not exceed the values appearing in lakes. The possibility of the occurrence of toxic compounds of D. polymorpha, arising from the reaction of the aquatic / lake environment or the elution of some components should be taken into account. D. polymorpha serves as an indicator of toxicity in the aquatic environment and therefore can be used as a model organism in the analysis of the influence concrete on the natural environment. The results obtained in this study indicate the significant impact of modern chemical composition of concrete on the aquatic environment and the living organisms that cover it. They underline the need for research based on the hydrobiont reaction to the substances used in the natural environment.
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来源期刊
Limnological Review
Limnological Review Environmental Science-Ecology
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
16 weeks
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