可再生能源管理与环境保护

R. Petrescu, R. Aversa, A. Apicella, S. Kozaitis, T. Abu-lebdeh, F. Petrescu
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引用次数: 2

摘要

本项目的目的是概述可再生能源、主要技术发展和个案研究,并附有使用这些能源的适用实例。可再生能源是来自自然资源的能源:风、阳光、雨、海浪、潮汐、地热,自然地、自动地再生。温室气体排放对气候变化构成严重威胁,可能对人类造成灾难性影响。使用可再生能源(RES)和提高能源效率(EE)有助于减少能源消耗,减少温室气体排放,从而防止危险的气候变化。到2050年,全球至少有三分之一的能源必须来自不同的可再生能源:风能、太阳能、地热能、水力发电、潮汐能、波浪能、生物质能等。石油和天然气作为传统能源,在国际市场上的走势起伏不定。第二个重要方面是石油资源日益有限的性质。由于开采或勘探石油储备的消耗,这种能源似乎将在50年左右耗尽。“绿色”能源对经济操作者和个人都是触手可及的。事实上,一个经济运营者既可以使用这样的系统进行自己的消费,也可以在国内能源市场上进行能源交易。部署这些系统的高成本通常在大约5-10年内折旧,具体取决于安装的生产能力。当基于可再生能源的项目在整个生命周期中具有负二氧化碳或至少中性二氧化碳时,就满足了“可持续性”条件。温室气体排放(GHG)是可持续性分析中包含的环境标准之一,但这还不够。可持续性的概念还必须在评估中包括各种其他方面,如环境、文化、健康,但也必须综合经济方面。以可持续的方式生产可再生能源是一个挑战,需要遵守国家和国际法规。可以实现能源独立:-大规模(社区);-小型(用于没有电力连接的个人住宅、度假屋或小木屋)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Management of Renewable Energies and Environmental Protection
The purpose of this project is to present an overview of renewable energy sources, major technological developments and case studies, accompanied by applicable examples of the use of sources. Renewable energy is the energy that comes from natural resources: The wind, sunlight, rain, sea waves, tides, geothermal heat, regenerated naturally, automatically. Greenhouse gas emissions pose a serious threat to climate change, with potentially disastrous effects on humanity. The use of Renewable Energy Sources (RES) together with improved Energy Efficiency (EE) can contribute to reducing energy consumption, reducing greenhouse gas emissions and, as a consequence, preventing dangerous climate change. At least one-third of global energy must come from different renewable sources by 2050: The wind, solar, geothermal, hydroelectric, tidal, wave, biomass, etc. Oil and natural gas, classical sources of energy, have fluctuating developments on the international market. A second significant aspect is given by the increasingly limited nature of oil resources. It seems that this energy source will be exhausted in about 50 years from the consumption of oil reserves in exploitation or prospecting. "Green" energy is at the fingertips of both economic operators and individuals. In fact, an economic operator can use such a system for both own consumption and energy trading on the domestic energy market. The high cost of deploying these systems is generally depreciated in about 5-10 years, depending on the installed production capacity. The "sustainability" condition is met when projects based on renewable energy have a negative CO2 or at least neutral CO2 over the life cycle. Emissions of Greenhouse Gases (GHG) are one of the environmental criteria included in a sustainability analysis, but is not enough. The concept of sustainability must also include in the assessment various other aspects, such as environmental, cultural, health, but must also integrate economic aspects. Renewable energy generation in a sustainable way is a challenge that requires compliance with national and international regulations. Energy independence can be achieved: - Large scale (for communities); - small-scale (for individual houses, vacation homes or cabins without electrical connection).
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