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ADVANCED SITE DIAGNOSTICS FOR REMEDIATION AND CLOSURE

机译:先进的站点诊断功能,用于修复和关闭

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The fact that contaminants degrade a rates which can generally be classified as first order has created a "purgatory of the asymptote" for many responsible parties. This has lead to an active search for alternative means of dealing with the problem and one fair and feasible strategy has been the application of monitored natural attenuation (MNA). In order to better determine when MNA can be best applied as a treatment we and others have begun to introduced new lines of evidence for the existence of natural attenuation . In some cases the methods can also be applied to the understand the dynamics of movement of contamination and be used to provide rates of degradation.Advanced site diagnostics is a broad descriptive area that in our definition encompasses three areas of technology. The first is the use of molecular biological tools (MBTs) that can be used to characterize key organisms, their enzymes and the expression of those enzymes involved in biodegradation. In this way the existence and efficacy of the actual mechanisms of natural attenuation can be established without question ,building regulatory confidence in MNA as a remedy. A second fruitful area of technical application is the use is stable isotopes. By employing different aspects of this diagnostic, much useful information that can be developed, including but not limited to the fate of dissolved phase plumes and the absolute proof of natural attenuation. The latter is achieved, in some examples, by tracking the breakdown of a contaminant through the use of a labeled contaminant surrogates, or the incorporation of labeled carbon into microbial structures there by establishing natural attenuation. The third area of diagnostic advancement utilizes the latest is direct sensing technologies to not only better characterize sites but also establish impacts of in-situ treatment and illustrate the types and quantities of key organisms present on site.
机译:污染物降低速率(通常可归为一阶)的事实为许多责任方创造了“渐近线炼狱”。这导致人们积极寻找解决该问题的替代方法,并且一种公正可行的策略是采用监测自然衰减(MNA)。为了更好地确定什么时候可以最好地应用MNA作为治疗方法,我们和其他人已经开始为自然衰减的存在引入新的证据。在某些情况下,这些方法还可以用于了解污染物运动的动态并用于提供降解速率。高级现场诊断是一个广泛的描述领域,在我们的定义中包括三个技术领域。第一种是分子生物学工具(MBT)的使用,可用于表征关键生物,其酶以及参与生物降解的酶的表达。这样就可以毫无疑问地确定自然衰减实际机制的存在性和有效性,从而建立起对MNA作为补救措施的监管信心。技术应用的第二个富有成果的领域是稳定同位素的使用。通过使用此诊断程序的不同方面,可以开发出许多有用的信息,包括但不限于溶解相羽流的命运以及自然衰减的绝对证据。在某些示例中,通过使用标记的污染物替代物跟踪污染物的分解,或者通过建立自然衰减,将标记的碳掺入微生物结构中,从而实现了后者的降解。诊断进步的第三个领域是利用最新的直接传感技术,不仅可以更好地表征站点,还可以确定原位处理的影响,并说明站点上存在的关键生物的类型和数量。

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