藻类作为可再生能源利用的能力PDF

A. Sulieman, Eitimad H. Abel Rahman, W. Ahmed
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引用次数: 2

摘要

藻类是一种简单的植物,大多数是水生植物,可以在不同的水资产中生长,例如淡水,咸水和废水,因此它们被认为是更安全,不集中和更有效的植物。它们有不同的途径来固定二氧化碳(CO2)、氯氟烃(CFCs)等导致气候变化的危险气体,并将阳光、氮和磷转化为生物质。本文旨在对藻类作为生物替代产品和可再生能源的相关文献进行综述,以揭示藻类的广泛应用,并提供一些在经济上可行的相关技术和工业信息,以抵消石油平衡,减少二氧化碳排放。人们已经探索了藻类作为食物的不同应用;生物活性物质由于其高发育率,合理的发育密度和高含油量,所有这些都被认为是将藻类转化为生物燃料的动机。然而,存在各种障碍,包括这些藻类的来源、菌株分离、营养来源、生产管理、收获、副产品改进、燃料提取、精炼和遗留的生物质利用。使用藻类作为燃料在今天看来似乎不重要,但随着石油日益枯竭,它在明天就会变得重要起来。国际能源署(iea)预计,到2030年,生物燃料将占燃料总使用量的6%,如果未开发的油田得不到开发,或者大量的新油田没有被发现,生物燃料的使用量可能会大幅增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capabilities of Algae to Be Utilized As a Renewable Energy Source PDF
Algae are simple plants and most of them are aquatic and can grow in different water assets, for example, fresh water, salty water, and wastewater so they are considered as the more secure, non-focused and more effective plant. They have different pathways to fix dangerous gases such as Carbon Dioxide (CO2), Chloroflurocarbons (CFCs) that causing climate change and converting sunlight, nitrogen and phosphorous into biomass. The objective of this article is to review the literature regarding the algae as biological alternative products and renewable energy source to throw light on a broad range of algae applications for provide some information on their related technology and industry that are financially feasible to counter balance in oil, and alleviate CO2 discharge or not. Algae have been explored for different applications as food; bioactive substances due to their high development rates, sensible developmental densities and high oil contents all that have been referred to as motivations to turn algae into biofuels. However, there are various obstacles including the sourcing of these algae, strain isolation, nutrient source, production management, harvesting, coproduct improvement, fuel extraction, refining and lingering biomass use. The use of algae as fuel might seem of no importance today, but it can gain importance tomorrow as petroleum is getting depleting day after day. The International Energy Agency expects contribution of biofuels by 6% of aggregate fuel use by 2030, yet could extend essentially if undeveloped oil fields are not gotten to or if generous new fields are not distinguished.
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