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Towards sustainable mobile systems configurations: Application to a tuna purse seiner

机译:迈向可持续的移动系统配置:应用于金枪鱼围网渔船

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摘要

Fishing is one of the most important marine activities. It contributes to both overfishing and marine pollution, the two main threats to the ocean environment. In this context, the aim of this work is to investigate and validate methodologies for the identification of more sustainable operating configurations for a tuna purse seiner. The proposed methodology is based on a previous one applied to secondary industrial systems, taking into account the Integrated Pollution Prevention and Control focus, developed for the most potentially industrial polluting sources. The idea is to apply the same type of methodologies and concepts used for secondary industrial punctual sources, to a primary industrial mobile activity. This methodology combines two tools: “Material and Energy Flow Analysis” (a tool from industrial metabolism), and “Best Available Techniques Analysis”. The first provides a way to detect “Improvable Flows” into de system, and the second provides a way to define sustainable options to improve them.Five main Improvable Flows have been identified in the selected case study, the activity of a purse seiner, most of them related with energy consumption and air emission, in different stages of the fishing activity. Thirty-one Best Available Techniques candidates for the system have been inventoried, that potentially could improve the sustainability of the activity. Seven of them are not implemented yet to the case study. The potential improvements of the system proposed by this work are related to energy efficiency, waste management, prevention and control of air emissions. This methodology demonstrates to be a good tool towards sustainable punctual systems, but also towards sustainable mobile systems such as the fishing activity in oceans, as the tuna purse seiner validated here. The practical application of the identified technologies to fishing systems will contribute to prevent and reduce marine pollution, one of the greatest threats of today's oceans.
机译:钓鱼是最重要的海洋活动之一。它导致过度捕捞和海洋污染,这是对海洋环境的两个主要威胁。在这种情况下,这项工作的目的是研究和验证用于鉴定金枪鱼围网渔船更可持续的运行配置的方法。拟议的方法是基于适用于第二工业系统的先前方法,并考虑到针对最可能的工业污染源开发的“综合污染预防和控制”重点。这个想法是将用于次要工业守时来源的相同类型的方法和概念应用于主要工业移动活动。该方法论结合了两个工具:“材料和能量流分析”(来自工业代谢的工具)和“最佳可用技术分析”。第一个提供了一种检测系统中“可改进流”的方法,第二个提供了定义可改进方案的可持续选择的方法。在所选案例研究中,确定了五个主要的可改进流,即围网渔船的活动,大多数其中与捕捞活动不同阶段的能源消耗和空气排放有关。已对该系统的三十一种最佳可行技术候选人进行了盘点,这有可能提高活动的可持续性。案例研究中尚未执行其中的七个。这项工作提出的系统的潜在改进涉及能效,废物管理,空气排放的预防和控制。正如金枪鱼围网渔船在这里所证实的那样,这种方法论证明是一种针对可持续的准时系统的良好工具,而且对于诸如海洋捕捞活动之类的可持续移动系统也是一种良好的工具。已确定的技术在捕鱼系统中的实际应用将有助于预防和减少海洋污染,这是当今海洋的最大威胁之一。

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