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Waterjet Placement of Remediation Amendments into Contaminated Sediments

机译:将水射流修复修正物放入受污染的沉积物中

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The ability to deliver remediation amendments into contaminated sediments without negatively impacting benthic organisms and their environments has proven to be challenging. The use of waterjets to perform this delivery of remediation amendments at depth is a viable alternative. Waterjets are a viable alternative for placement of remediation amendments at depth. An amendment injection system and waterjet nozzle has been developed to test the merit of this concept. The injection system's performance was assessed by characterizing the distribution of delivered amendments throughout a surrogate sediment test bed. A novel spectrometry method was developed for powdered activated carbon characterization, while granular iron was characterized using two different methods, visual comparison and Inductive Coupled Plasma analysis. Distribution of the placed amendments illustrated similar patterns for a range of injection times and amendment types. However, the depth of injection was dependent upon the type of amendment being injected. The findings of this study has lead to a better understanding on what occurs during an amendment injection, which will aide in and allow for more controlled placement of remediation amendments in the future.
机译:事实证明,在不对底栖生物及其环境造成负面影响的情况下,将修复修正物输送到受污染的沉积物中的能力。使用喷水器进行深层修复修正的交付是一种可行的选择。水刀是深度修复修正案的可行替代方案。已经开发了修正喷射系统和喷水嘴以测试该概念的优点。通过表征替代沉积物测试台上已输送的修正剂的分布来评估注入系统的性能。开发了一种用于粉末状活性炭表征的新型光谱法,而粒状铁的表征则使用两种不同的方法,即目测比较和电感耦合等离子体分析。放置的修正剂的分布说明了一系列注射时间和修正剂类型的相似模式。但是,注入的深度取决于注入的修饰剂的类型。这项研究的结果使人们对修正案注入期间发生的事情有了更好的了解,这将有助于并允许将来对修正案进行更有控制的安排。

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