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Development and Evaluation of a Permeation Plug Release Vessel (PPRV) for the Release of Perfluoromethylcyclohexane (PMCH) in Underground Mine Tracer Gas Studies.

机译:在地下矿井示踪气体研究中开发和评估用于释放全氟甲基环己烷(PMCH)的渗透塞释放容器(PPRV)。

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摘要

The use of sulfur hexafluoride (SF6) as a tracer gas for analyzing underground mine ventilation systems has been practiced for over 30 years. As a result, the methods used to release, sample, and analyze SF6 are well accepted. Although improvements are still being made to enhance the analysis of this tracer, the overall technique remains largely the same. However, as the complexity and size of underground mine ventilation networks increase, coupled with steadily rising SF6 background levels, the ability of a single gas to function as a convenient, rapid means of analysis diminishes. The utilization of multiple tracer gases can mitigate these problems by allowing for a more comprehensive evaluation using multi-zone techniques. A well-documented alternative in HVAC studies to SF6 as a tracer are perfluorocarbon tracers (PFT). Many PFTs exist as volatile liquids at room temperature and pressure. This characteristic prevents a PFT from being released using the same technique as SF6. This paper introduces a passive release method for PMCH. Details about the development of the permeation plug release vessel (PPRV) from creating a GC calibration curve for vapor PMCH to the final field evaluation are presented. The following study successfully developed a mine-scale PPRV. The PPRV is designed to passively deploy PMCH vapor at linear. An equation was derived in this study that allows the prediction of the release rate as a function of temperature and plug thickness. Details regarding the development of the PPRV from preliminary laboratory studies to final field evaluations are provided.
机译:使用六氟化硫(SF6)作为示踪气体来分析地下矿井通风系统已经实践了30多年。结果,用于释放,采样和分析SF6的方法已被广泛接受。尽管仍在进行改进以增强对该示踪剂的分析,但总体技术仍保持不变。但是,随着地下矿井通风网络的复杂性和规模的增加,再加上SF6背景水平的不断提高,单一气体作为便捷,快速分析手段的功能逐渐减弱。通过使用多区域技术进行更全面的评估,多种示踪气体的利用可以减轻这些问题。在HVAC研究中,作为氟化碳的示踪剂,SF6作为示踪剂的替代品是全氟化碳示踪剂(PFT)。在室温和压力下,许多PFT以挥发性液体的形式存在。此特性可防止使用与SF6相同的技术释放PFT。本文介绍了PMCH的被动释放方法。介绍了有关渗透塞释放容器(PPRV)开发的详细信息,从创建气相PMCH的GC校准曲线到最终现场评估。以下研究成功开发了矿山规模的PPRV。 PPRV旨在被动地线性部署PMCH蒸气。在这项研究中得出了一个方程,该方程可以预测释放速率随温度和塞子厚度的变化。提供了有关从初步实验室研究到最终现场评估的PPRV开发的详细信息。

著录项

  • 作者

    Jong, Edmund Chime.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Mining.;Chemistry General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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