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Geoscience and habitat mapping for marine renewable energyIntroduction to the special issue

机译:海洋可再生能源的地球科学和栖息地测绘特刊简介

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摘要

Many governments have recognised the need to utilise a blend of conventional and alternative energy sources to meet future energy demands, with an increasing focur upon producing clean and renewable energy, as well as invertigating the offshore geological storage of carbon dioxide. The marine environment is likely to make a significant contribution to securing the future energy needs of many countries. Seabed site characterisation constitutes a critical part of the engineering design process; it contributes also to our understanding of the potential environmental impacts of marine energy generation and carbon capture and storage, Significant infrastructure is required also to support these emerging industries, including cables and pipelines to transfer energy and carbon dioxide across the seafloor:all of these add to the environmental footprint of renewable energy development. Consequently. the development of standaards and best practioces, for site and submarine transmission corridor characterisation and environmental impace assessment, are important requirements in developing national and international strategies to the transition to a world of lower carbon emissions.
机译:许多政府已经认识到有必要利用常规能源和替代能源的混合来满足未来的能源需求,生产清洁和可再生能源以及对二氧化碳的近海地质封存进行无稽之谈的呼声越来越高。海洋环境可能对确保许多国家未来的能源需求做出重大贡献。海底场地特征是工程设计过程的关键部分。它也有助于我们了解海洋能发电和碳捕集与封存的潜在环境影响。还需要重要的基础设施来支持这些新兴产业,包括电缆和管道在整个海底之间传输能量和二氧化碳。对可再生能源发展的环境影响。所以。为现场和潜艇传输走廊的特性以及环境影响评估制定标准和最佳实践,是制定向低碳世界过渡的国家和国际战略的重要要求。

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