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Fuzzy sets analysis for ballast water treatment systems: best available control technology

机译:压载水处理系统的模糊集分析:最佳可用控制技术

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摘要

An overview on various ballast water treatment (BWT) technologies aboard different types of ships is presented. These technologies are: (1) Filtration, (2) Cyclonic systems, (3) Heat treatment, (4) Chemical treatment, (5) Ultraviolet radiation, (6) Ultrasound, (7) Electroporation, and (8) Radiolysis. These technologies are proven technologies for BWT in the marine industry. The fuzzy sets methodology is used to perform a comparison among these different Ballast water systems to choose the best available control technology that should be given the highest priority in terms of development and research. The main objective of this paper is to determine the order in which ballast water systems should be given higher priority to be installed to tackle the world wide ballast water pollution problem. These systems are compared according to their benefits and cost. Based on the benefit to cost ratio, the results show that the filtration treatment appears to be the method that will provide the best combination of effective treatment and feasibility. The next two options are the use of ultraviolet and ultrasound. All these three options could be used to produce effective and reliable BWT with minimum cost and optimum benefits in terms of issues related to effectiveness, reliability, global benefits, and safety. The least options are radiolysis and chemical treatment due to their high costs and low safety factors. Also this study tries to clear the way for developing new and existing technology, and to provide a platform for successful treatment solution.
机译:概述了不同类型船舶上的各种压载水处理(BWT)技术。这些技术包括:(1)过滤,(2)旋风系统,(3)热处理,(4)化学处理,(5)紫外线辐射,(6)超声波,(7)电穿孔和(8)放射分解。这些技术是海洋工业中BWT的可靠技术。模糊集方法用于在这些不同的压载水系统之间进行比较,以选择在开发和研究方面应被赋予最高优先级的最佳可用控制技术。本文的主要目的是确定应优先考虑的压载水系统的安装顺序,以解决世界范围内的压载水污染问题。这些系统将根据其收益和成本进行比较。根据成本效益比,结果表明过滤处理似乎是将有效处理与可行性完美结合的方法。接下来的两个选项是使用紫外线和超声波。在有效性,可靠性,全球利益和安全性等方面,这三种选择都可以用于生产有效且可靠的BWT,并具有最低的成本和最佳的利益。最少的选择是辐射分解和化学处理,因为它们的成本高且安全系数低。这项研究还试图为开发新技术和现有技术扫清道路,并为成功的治疗解决方案提供平台。

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