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Laboratory toxicity and field effects of a complex mixture: Oil-field produced water.

机译:复杂混合物的实验室毒性和田间影响:油田采出水。

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摘要

This dissertation investigated how organisms in the field and the laboratory responded to complex mixtures or combinations of stressors. Organisms are continually exposed to natural and anthropogenic stressors in the environment. The first two chapters of this study examined the potential for and measured aquatic effects of a near-shore petroleum operation along Skiatook Lake, Osage County, Oklahoma, USA. The field based part of this study showed that produced water from a near-shore petroleum production operation travelling through the groundwater into the lake was sufficiently diluted by the lake to result in few observable biotic effects. For the laboratory based part of this study, an empirically derived model of major ion toxicity was combined with other toxicity assessments to account for the observed toxicity in field-collected produced water and produced-water contaminated groundwater. The accuracy and precision of the ion toxicity model, calculated using model deviation ratios (MDR) and simple linear regressions, was determined for fathead minnows, Ceriodaphnia dubia, and Daphnia magna. Those results indicated that predicted major ion toxicity, combined with other measured parameters, could accurately and precisely account for observed responses in test organisms to field collected samples. The last chapter of this study expanded on current mixture modeling and analysis techniques in order to assess the effects of mixtures containing chemical and nonchemical stressors, any number of stressors at any relative potency, and for any combination of similar and dissimilar modes of action. New techniques were derived and then used to assess the joint action of atrazine, norflurazon, and resource limitation (light limitation). Mixture effects of a tertiary mixture all three stressors were predicted within a factor of two of the observed data using a mixture model that incorporated both concentration addition and independent action.
机译:本文研究了田间和实验室中的生物如何应对应激源的复杂混合物或组合。有机体不断暴露于环境中的自然和人为压力之下。这项研究的前两章研究了美国俄克拉荷马州奥塞奇县斯基亚特库克湖沿岸近海石油作业的潜力及其对水生生物的影响。该研究的野外研究表明,近岸石油生产作业产生的水经过地下水进入湖泊后,被湖泊充分稀释,几乎看不到生物效应。对于本研究的实验室基础部分,将经验性推导的主要离子毒性模型与其他毒性评估相结合,以说明在现场收集的采出水和采出水污染的地下水中观察到的毒性。确定了用于黑头fat鱼,杜鹃鱼和大水蚤的离子毒性模型的准确度和精密度,使用模型偏差比(MDR)和简单的线性回归来计算。这些结果表明,预测的主要离子毒性,再加上其他测量参数,可以准确,准确地解释测试生物对田间采集的样品的观察响应。本研究的最后一章扩展了当前的混合物建模和分析技术,以便评估包含化学和非化学应激源,任意数量的相对应激水平的应激源以及相似和相异作用方式的任何组合的混合物的影响。派生出新技术,然后将其用于评估阿特拉津,去甲氟柔松和资源限制(光限制)的联合作用。第三级混合物的混合效应使用结合了浓度增加和独立作用的混合物模型,在观察到的数据的两倍之内预测了所有三个应激源。

著录项

  • 作者

    Fisher, Jonathan C.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Biology Ecology.;Biology Physiology.;Biology Zoology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:53

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