School of Energy and Environmental Engineering, Beijing Key Laboratory of Resource-Oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing Xueyuan 30, Beijing 100083, P.R. China.
School of Energy and Environmental Engineering, Beijing Key Laboratory of Resource-Oriented Treatment of Industrial Pollutants, University of Science and Technology Beijing Xueyuan 30, Beijing, P.R. China.
Rev Environ Health. 2019 Mar 26;34(1):91-99. doi: 10.1515/reveh-2018-0052.
Algae are increasingly emerging as one of the most promising sustainable and long-term sources of biomass and oils for fuel, feed food and other co-products. What makes them so attractive are the large number and wide variety of benefits associated with how and where they grow. This review presents added values and recent developments in resource recovery from microalgae. The main focus was in the cultivation and application of microalgae on biofuel recovery. Nearly all these benefits stem from the fact that these plants have evolved over billions of years to produce and store energy in the form of oil, and they do this more efficiently than any other known natural or engineered process. The results show that the investment in a microalgae biomass project can be associated with various processes, which include: growth of microalgae, harvesting, dehydration and extraction of oils. In addition, there are always project costs, which include engineering, infrastructure, installation and integration and contract fees.
藻类作为最有前途的可持续生物量和油类燃料、饲料、食品和其他副产品的长期来源之一,正日益受到关注。它们之所以如此吸引人,是因为它们在生长方式和地点方面具有大量广泛的益处。本综述介绍了从微藻中回收资源的附加值和最新进展。主要重点是微藻在生物燃料回收方面的培养和应用。几乎所有这些好处都源于这样一个事实,即这些植物经过数十亿年的进化,以油的形式产生和储存能量,而且它们的效率比任何已知的天然或工程过程都要高。结果表明,微藻生物质项目的投资可能与各种过程相关,包括:微藻的生长、收获、脱水和油的提取。此外,总是存在项目成本,包括工程、基础设施、安装和集成以及合同费用。