溢油应变、废物管理及后勤支援的工具-测试RFID技术及QR码的实地演习

J. Halonen, E. Altarriba, M. Kuosa
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引用次数: 1

摘要

由于石油污染了土壤、植被和漂浮的碎片,到达岸上的石油泄漏可能会产生大量的含油废物。由此产生的含油废物的体积可能是溢油的原始体积的数倍。负责近岸水域溢油反应的芬兰当局已经计算出,国家和地区应急计划应作出反应的目标情景是,3万吨溢油导致50多万吨含油废物。安全和有效地处理这一废物量需要彻底的预先规划。由于废物处置设施的容量主要是根据生活废物量来衡量的,因此需要临时安排。此外,为了最大限度地发挥每个现有处理厂的不同能力,废物应进行分类。分离还降低了与最终处置相关的成本。在芬兰,海岸线崎岖不平,有些地方难以到达,废物的物流链可能由几个阶段和运输方式组成。运输链的复杂性和对隔离的要求对事故中的废物管理提出了挑战。因此,制定了应急计划,其中还包括具有预先定义的运输和储存点的特定地点物流计划。此外,本署亦编制了易于使用的分类指引,以不同废物类别的颜色代号,以及插入的快速回应(QR)代号,提供分类指引。为了跟踪已分类的废物单元,射频识别(RFID)技术可能是一个有用的选择。本文研究了RFID跟踪在溢油响应废物管理中的可用性。这些观察是基于实地演习,旨在研究使用RFID标签和RFID读取器的技术的好处。这些练习的目的还在于确定在不同运输情况下需要储存在标签上的数据的质量和数量。此外,本文还介绍了QR隔离准则及其与所测试的识别跟踪技术的互操作性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tools for Oil Spill Response Waste Management and Logistic Support – Field Exercises Testing the RFID Technology and QR Codes
An oil spill reaching ashore may generate massive amounts of oiled waste as oil contaminates soil, vegetation and floating debris. The resulting volume of oiled waste may be multiple compared with the original volume of spilt oil. The Finnish authorities responsible for the oil spill response in nearshore waters have calculated that the target scenario, to which the national and regional contingency plans should respond, is an oil spill of 30 000 tonnes resulting in over 500 000 tonnes of oily wastes. Safe and efficient handling of that waste volume requires a thorough pre-planning. As the capacities of the waste disposal facilities are mainly measured up to the domestic wastes, temporary arrangements will be necessary. Further, in order to maximize the differentiated capacities of each available disposal plant, the wastes should be segregated. Segregation also decreases the costs related to the final disposal. In Finland, where the coastline is ragged and, in some places, difficult to access, the logistic chain of wastes may consist of several stages and transportation modes. The complexity of the transportation chain combined with the requirement of segregation will challenge the waste management during an incident. Therefore, contingency plans are developed to include also site-specific logistic plans with pre-defined transportation and storage points. In addition, easy-to-use segregation guidelines are produced using colour codes for different waste types together with the inserted Quick Response (QR) codes to provide segregation instructions. To keep track on the segregated waste units, the Radio-Frequency Identification (RFID) technology might provide a useful option. This paper examines the usability of RFID tracking in oil spill response waste management. The observations are based on field exercises aiming to study the benefits of technology using RFID tags and RFID readers. The aim of the exercises was also to determine the quality and quantity of the data needed to be stored on tags in different transportation scenarios. In addition, this paper introduces the QR segregation guideline and its interoperability with the identification and tracking technology tested.
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