建立可持续能源行动计划——黎巴嫩某城市案例研究

Sabine Saad, M. Ghandour, M. Brouche, A. Mourtada
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引用次数: 2

摘要

化石燃料燃烧导致大气中温室气体(GHG)含量增加,导致气候变化,威胁着我们的生态系统。因此,迫切需要彻底改变人类的行为方式。其中一个主要的挑战是在面临环境恶化的情况下,用可持续的系统取代我们目前的能源系统。为此目的,作为欧洲倡议的一部分,《市长盟约》正在使各市、市和区域能够在能源和气候领域采取行动。在这一框架中,哈曼纳-黎巴嫩市政府采用了一个新开发的工具,即可持续能源和气候行动计划-自给自足计划(SECAP - ssp)(标准流程),以设计其可持续能源和气候行动计划(SECAP)并确保遵守《市长公约》。本案例研究使人们对如何使用该工具有了广泛的了解,甚至表明与以前使用的传统工具相比,SECAP-SSP大大简化了任务。应当指出的是,黎巴嫩的任何城市都可以应用该方案,并可加以扩展,以适应南地中海地区的情况。每个权威机构都可以在网上创建自己的“SECAP”空间。涉及能源消耗和温室气体排放的所有部门(住宅、第三产业、工业、交通、农业、发电等)的各种人类活动是用户必须输入的具体数据。该软件的结构便于在每个部门完成的工作。该工具还提供了有关气候、可再生能源的可用性和化石燃料当前价格的其他数据。实现优化的指标(经济、环境和潜力)由该工具计算。最后,SECAP- ssp为当局建立了一个基线排放清单(BEI),并建议SECAP在经济和环境上都是可行和有利可图的。
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Establishment of a Sustainable Energy Action Plan Case Study of a Municipality in Lebanon
Climate change caused by increasing greenhouse gas (GHG) levels released in the atmosphere by burning fossil fuels is threatening our ecosystem. A radical change in the behavior of humanity is thus needed urgently. One of the major challenges is to replace our current energy systems with sustainable systems in the face of environmental degradation. For this purpose, and as part of the European initiatives, the Covenant of Mayors is enabling municipalities, cities and regions to carry out actions in the fields of energy and climate. In this framework, a newly-developed tool, the SECAP-SSP or Sustainable Energy and Climate Action Plan–Self Sufficient Program, is applied by the Municipality of Hammana-Lebanon (standard process) in order to design its Sustainable Energy and Climate Action Plan (SECAP) and ensure compliance with the Covenant of Mayors. This case study has resulted in a broad understanding of how to use this tool, or even to show that SECAP-SSP has greatly simplified the task compared to the conventional tools that have been used before. It should be noted that SECAP-SSP can be applied by any municipality in Lebanon and can be extended to suit the South-Mediterranean context. Every authority could create its “SECAP” space online. The various human activities in all sectors (residential, tertiary, industry, transportation, agriculture, electricity generation, etc.) involving energy consumption as well as greenhouse gas emissions are the specific data that the user must enter. The structure of the software facilitates the work to be done in each sector. Other data on climate, the availability of renewable energy and the current price of fossil fuels are provided by the tool. Indicators (economic, environmental and potential) to achieve optimization are calculated by the tool. In the end, SECAP-SSP established a Baseline Emission Inventory (BEI) for the authority as well as it suggested the SECAP, feasible and profitable both economically and environmentally.
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