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Waterjet Amendment for Remediation of Contaminated Sediments using Absorptive and Dechlorinating Compounds in Compromised Waterways

机译:在受损水道中使用吸收和脱氯化合物修复污染沉积物的水刀修正案

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Research currently being conducted at Missouri University of Science and Technology involves using a traditionally high pressure water jets in a new and innovative manner to inject adsorptive and dechlorinating amendments at varying depths in contaminated waterways. Previously published works identify Zero Valent Iron (ZVI) and Powdered Activated Carbon (PAC) as effective means of remediating contaminated sediments and groundwater. While the investigations of both amendments are within the breath of this project, this paper will focus primarily on the placement technologies and the analysis of PAC. A laboratory testing platform, novel amendment jetting, and nozzle designs were all developed to inject amendments into sediment beds. Analytical testing was conducted to examine the reliability in detecting amendment concentrations in sediments to evaluate distribution. The results obtained from this portion of testing, while not extensive, have yielded an effective delivery mechanism and reliable data acquisition system. Ultimately, the goal of this project is to remediate sites via targeted amendment delivery, while minimizing re-suspension, and minimizing damage to benthic biotia.
机译:目前在密苏里州科技大学进行的研究涉及以一种新的和创新的方式使用传统的高压水喷射,以在污染的水道中的不同深度注入吸附和脱氯化修正。以前公布的作品识别零价铁(ZVI)和粉末状活性炭(PAC),作为修复受污染沉积物和地下水的有效手段。虽然两项修正案的调查都在该项目的呼吸范围内,但本文将主要集中在PAC的放置技术和分析。实验室测试平台,新型修正喷射和喷嘴设计都是开发出来的沉积物床的修正。进行分析测试以检测检测沉积物中沉积物中的可靠性以评价分布。从这部分测试中获得的结果,而不是广泛的,产生了有效的交付机制和可靠的数据采集系统。最终,该项目的目标是通过有针对性的修正案交付来修复网站,同时最大限度地减少重新悬架,并最大限度地减少对底栖生物虫的损害。

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