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Algae production platforms for Canada's northern climate

机译:加拿大北部气候的藻类生产平台

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Large resources are being invested globally in algae research in the anticipation that these microorganisms will become the "silver bullets" that lead to economic bio-renewable fuels, new food sources, and a host of high value products and simultaneously mitigate rising atmospheric CO2 levels. A great deal of research has been completed on strains of algae with the potential to produce high lipid yields that make the biomass suitable for biofuel production. Many production systems for algae cultivation continue to be developed for moderate and hot climates (e.g., USA, Europe, and Australia). The largest algae cultivation systems to date use open pond systems. These autotrophic systems, however, have limited applicability in Canada's northern climatic conditions. There is consensus that closed photobioreactor systems are required to control environmental conditions (including temperature), minimize evaporation and contamination, and augment the limited sunlight available during winter to generate consistent biomass yields for economically sustainable crops. Given the high capital and operating costs, however, many are skeptical that meaningful and economically sustainable algae cultivation can take place in Canada. This paper identifies nine scalable algae photobioreactor cultivation technologies that may suit Canadian northern climates. The information provides insights related to the developing algae industry in Canada as well as highlighting opportunities for further technological development specific to cold climates. Although the review demonstrates that exciting headway has been made, significant technological challenges remain and require that further innovations be developed.
机译:预计这些微生物将成为“银子弹”,从而导致经济的生物可再生燃料,新的食物来源和许多高价值产品,同时减轻大气中二氧化碳水平的上升,因此全球在藻类研究上投入了大量资源。对藻类菌株的大量研究已经完成,它们有可能产生高脂质产量,从而使生物质适合于生物燃料的生产。继续开发许多用于温和炎热气候的藻类生产系统(例如,美国,欧洲和澳大利亚)。迄今为止最大的藻类养殖系统使用露天池塘系统。但是,这些自养系统在加拿大北部气候条件下的适用性有限。人们一致认为,需要封闭的光生物反应器系统来控制环境条件(包括温度),最大程度地减少蒸发和污染,并在冬季增加可用的有限阳光,以产生经济上可持续的作物一致的生物量产量。但是,鉴于高昂的资金和运营成本,许多人怀疑加拿大能否进行有意义且经济上可持续的藻类种植。本文确定了九种可适应加拿大北部气候的可扩展藻类光生物反应器栽培技术。该信息提供了与加拿大藻类产业发展有关的见解,并着重介绍了针对寒冷气候的进一步技术开发的机会。尽管审查表明已经取得了令人兴奋的进展,但仍然存在重大的技术挑战,需要进一步的创新。

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