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首页> 外文期刊>Journal of Environmental Protection >Possible Synergistic Toxicity of Oxygen Scavenger and Defoamer on the Niger Delta Freshwater &i&Tilapia guineensis&/i&
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Possible Synergistic Toxicity of Oxygen Scavenger and Defoamer on the Niger Delta Freshwater &i&Tilapia guineensis&/i&

机译:在尼日尔三角洲淡水&amp上的氧气清除剂和消泡剂可能的协同毒性; i& 罗非鱼Guineensis& l ;;

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Globally, the generation of produced water keeps increasing due to depleting wells and about 40% of this wastewater is disposed of into the environment. Produced water is made up of several components that are toxic in nature, like production chemicals that are used for oil and gas production activities. Oxygen scavenger and defoamer are commonly used for corrosion prevention as both are applied at different stages of corrosion prevention. Evaluation of the possible synergistic toxicity contribution of oxygen scavenger and defoamer formed the basis of this research and was conducted using the Tilapia guineensis as bio-indicator. The toxicity test was carried out using the ELIMINOX (oxygen scavenger) and EC9017A (defoamer) individually and both chemicals were combined together. The choice of these chemicals was premised on previous researches that have confirmed that they are toxic individually, without further research on how they interact when they are combined. These chemicals and freshwater were used to generate produced water samples in the laboratory. The experiment was set up by adding ten fishes into each of the glass containers, containing the produced water samples at different concentrations and a control sample without the chemicals. The rate of mortality of the fish for the individual chemicals ranged from 100% to 10% for the different percentage concentrations. While on the other hand, a combination of the two chemicals had more survival than mortality, the percentage survival rate ranged from 100% to 90% across all the percentage concentrations. The lethal concentration also showed that the oxygen scavenger was more toxic than the defoamer, however, when they were combined; they showed an antagonistic relationship as the toxicity of the oxygen scavenger drastically reduced. The research findings intend to create awareness of the possible interaction of production chemicals when they are used for oil and gas activities and their combined toxicity contribution to produced water. This will in turn aid government regulators in their decision-making for disposal of produced water.
机译:在全球范围内,由于耗尽孔而产生的产生水的产生越来越大,并且约40%的废水被处理到环境中。生产的水由几种具有毒性的多种组成部分,如生产化学品,用于石油和天然气生产活动。氧气清除剂和消泡剂通常用于防腐蚀,因为两者都适用于防腐蚀的不同阶段。评估氧气清除剂和消泡剂的可能协同毒性贡献形成了本研究的基础,并使用罗非鱼Guineensis作为生物指示剂进行。使用Elucinox(氧气清除剂)和EC9017A(消泡剂)单独进行毒性测试,并将两种化学物质组合在一起。这些化学品的选择是在先前的研究中,确认它们是单独毒性的,而无需进一步研究它们在组合时互动。这些化学品和淡水用于在实验室中产生生产的水样。通过将十条鱼添加到每个玻璃容器中,设立了该实验,其中包含不同浓度的产生的水样和没有化学物质的对照样品。对于不同百分比浓度,各种化学物质的鱼类的死亡率范围为100%至10%。另一方面,两种化学品的组合比死亡率更多,百分比存活率范围从所有百分比浓度的100%到90%。致死浓度还表明,当它们组合时,氧气清除剂比消泡剂更具毒性;他们表现出对氧气清除剂的毒性大幅减少的拮抗关系。研究调查结果打算在用于石油和天然气活动和它们的生产水中贡献时,创造对生产化学品的可能互动的认识。这将在援助政府监管机构处于处置生产的水的决策。

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