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Evaluation of Carbon Footprint of Pipeline Materials during Installation, Operation, and Disposal Phases

机译:在安装,操作和处置阶段评估管道材料的碳足迹

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Most of the pipelines in the US are rapidly reaching the end of their useful service life. Now they need replacing or rehabilitating. In general, selection of a pipeline installation method is solved by selecting the lowest cost method; however, with an increase in public concerns about reducing emissions to the environment generated by human activities, other factors should be considered while choosing the pipe material and the installation method for a new pipeline: direct cost, social cost, and environmental impact. This study focuses on the environmental impact during installation, operation, and disposal phases of the pipeline life cycle. The life cycle of a pipeline can be categorized into four phases: fabrication, installation, operation, and disposal. The fabrication stage, which is the first phase of the pipeline life cycle, was examined in a previous study, and the results showed that prestressed concrete cylinder pipes (PCCPs) are the most environmentally friendly compared with polyvinylchloride (PVC), high-density polyethylene (HDPE) pipes, and cured-in-place pipes (CIPPs). This study includes the pipeline installation phase, operation phase, and disposal phase. The major construction activities in the installation stage are transporting pipes and equipment to the job site, excavation, loading, backfilling, compaction, and repaving. The energy consumed in the operation phase includes pumping energy and pipe cleaning. For the disposal phase, the study will consist of the energy consumed for disposal of the material of the pipes, which cannot be recycled. The objective of this study is to quantify the carbon footprint and to analyze the environmental sustainability of 30 m (100 ft) of pipeline during the installation, operation, and disposal phases. For the study, a pipeline installation analysis and consideration of CO2 emissions was conducted for three different installation methods: open cut, pipe bursting, and CIPP. The study focuses on a large-diameter 90 cm (36-in.) sewer pressure pipe operating at 690 kPa (100 psi) internal pressure for 100 years of operation. The pipeline materials included in this study are PCCP, PVC, HDPE, and CIPP. The results show that PVC pipe has a lower environmental impact than PCCP, HDPE, or CIPP.
机译:美国的大多数管道正迅速达到其使用寿命的终点。现在他们需要更换或修复。通常,通过选择成本最低的方法来解决管道安装方法的选择。但是,随着公众越来越关注减少人类活动对环境的排放,在选择管道材料和新管道的安装方法时应考虑其他因素:直接成本,社会成本和环境影响。这项研究的重点是在管道生命周期的安装,操作和处置阶段对环境的影响。管道的生命周期可以分为四个阶段:制造,安装,操作和处置。在先前的研究中检查了制造阶段,这是管道生命周期的第一阶段,结果表明,与高密度聚乙烯聚氯乙烯(PVC)相比,预应力混凝土圆筒管(PCCP)最环保。 (HDPE)管道和现场固化管道(CIPP)。该研究包括管道安装阶段,操作阶段和处置阶段。安装阶段的主要建筑活动是将管道和设备运输到作业现场,开挖,装载,回填,压实和翻新。在操作阶段消耗的能量包括泵送能量和管道清洁。对于处置阶段,研究将包括处置无法回收的管道材料所消耗的能量。这项研究的目的是量化碳足迹,并分析在安装,操作和处置阶段30 m(100 ft)管道的环境可持续性。在研究中,针对三种不同的安装方法进行了管道安装分析并考虑了CO2排放:明挖,爆管和CIPP。这项研究的重点是90厘米(36英寸)的大口径下水道压力管在690 kPa(100 psi)的内部压力下运行100年。本研究中包括的管道材料为PCCP,PVC,HDPE和CIPP。结果表明,PVC管比PCCP,HDPE或CIPP对环境的影响要小。

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