非开挖就地固化管道安装过程中挥发性有机化合物排放的环境影响评估

Salar Bavilinezhad, Mohammad Najafi, Vinayak Kaushal, William Elledge, Burak Kaynak
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引用次数: 0

摘要

就地固化管道(CIPP)衬里是一种广泛采用的管道更新方法,具有安装快速、成本效益高的优点。然而,人们对安装过程中挥发性有机化合物(VOC)排放对环境影响的担忧引发了有关 CIPP 方法的问题。本文进行的文献综述表明,有必要采取严格的监测和管理措施来减轻不利影响,并强调了安全安装规程的重要性。本文介绍了以挥发性有机化合物排放为重点的案例研究的初步结果,特别调查了非苯乙烯乙烯基酯树脂和水固化。为了捕捉 CIPP 活动中的排放物,该方法涉及使用各种设备进行空气采样,包括光离子化检测器 (PID)、summa 罐、被动式工人采样器吸附管和方法 13 筒。初步研究结果表明,非苯乙烯乙烯基酯树脂产生的挥发性有机化合物排放量远低于美国职业安全与健康管理局(OSHA)和美国环保局(USEPA)规定的接触限值,最高测量浓度为 2.54 ppm。这表明,非苯乙烯树脂可以大大降低环境和健康风险。该项目的未来阶段将探索不同的树脂和固化方法,以进一步验证这些发现,并为安全的 CIPP 安装制定全面的指导原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental Impact Assessment of Volatile Organic Compound Emissions during Trenchless Cured-in-Place Pipe Installation
Cured-in-place pipe (CIPP) lining is a widely adopted method for pipeline renewal, offering advantages such as rapid installation and cost-effectiveness. However, concerns regarding the environmental impacts of volatile organic compound (VOC) emissions during the installation process have raised issues regarding the CIPP method. The literature review conducted in this paper indicated the need for stringent monitoring and management practices to mitigate adverse effects, emphasizing the importance of safe installation protocols. This paper presents the initial results of a case study focusing on VOC emissions, specifically investigating non-styrene vinyl ester resins and water curing. To capture emissions from CIPP activities, the methodology involved air sampling using various equipment, including photoionization detectors (PID), summa canisters, passive worker sampler sorbent tubes, and method 13 cartridges. The preliminary findings indicate that non-styrene vinyl ester resins resulted in VOC emissions well below the exposure limits set by OSHA and USEPA, with the highest measured concentration being 2.54 ppm. This demonstrates that non-styrene resins can significantly reduce environmental and health risks. The future phases of this project will explore different resins and curing methods to further validate these findings and develop comprehensive guidelines for safe CIPP installations.
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