Wang Jaw-Kai, Seibert Michael
Shenzhen Jawkai Bioengineering R&D Center, Inc., Building #9, Marine Biotech Industrial Park, Dapeng District, Shenzhen, 518120 China.
National Renewable Energy Laboratory, BioEnergy Science and Technology Directorate, Golden, CO 80401 USA.
Biotechnol Biofuels. 2017 Jan 18;10:16. doi: 10.1186/s13068-017-0699-y. eCollection 2017.
In this review, a simple procedure that portends the open-pond growth of commercially viable diatoms is discussed. We examined a number of topics relevant to the production and harvesting of diatoms as well as topics concerning the production of bioproducts from diatoms. Among the former topics, we show that it is currently possible to continuously grow diatoms and control the presence of invasive species without chemical toxins at an average annual yield of 132 MT dry diatoms ha over a period of almost 5 years, while maintaining the dominancy of the optimal diatom species on a seasonal basis. The dominant species varies during the year. The production of microalgae is essentially agriculture, but without the ability to control invasive species in the absence of herbicides and insecticides, pollution and production costs would be prohibitive. Among the latter topics are the discussions of whether it is better to produce lipids and then convert them to biofuels or maximize the production of diatom biomass and then convert it to biocrude products using, for example, hydrothermal processes. It is becoming increasingly evident that without massive public support, the commercial production of microalgal biofuels alone will remain elusive. While economically competitive production of biofuels from diatoms will be difficult, when priority is given to multiple high-value products, including wastewater treatment, and when biofuels are considered co-products in a systems approach to commercial production of diatoms, an economically competitive process will become more likely.
在本综述中,讨论了一种预示着商业上可行的硅藻开放式池塘生长的简单方法。我们研究了许多与硅藻生产和收获相关的主题,以及与硅藻生物产品生产相关的主题。在前一类主题中,我们表明,目前有可能在近5年的时间里,以每年平均132公吨干硅藻/公顷的产量持续培养硅藻,并在不使用化学毒素的情况下控制入侵物种的存在,同时在季节性基础上保持最佳硅藻物种的优势地位。优势物种在一年中会有所变化。微藻生产本质上是农业生产,但如果在没有除草剂和杀虫剂的情况下无法控制入侵物种,污染和生产成本将高得令人望而却步。在后一类主题中,讨论的是是先生产脂质然后将其转化为生物燃料更好,还是最大化硅藻生物质的产量,然后使用例如水热法将其转化为生物原油产品更好。越来越明显的是,如果没有大量的公共支持,仅靠微藻生物燃料的商业生产将仍然难以实现。虽然从硅藻中经济地生产具有竞争力的生物燃料将很困难,但如果优先考虑包括废水处理在内的多种高价值产品,并且在硅藻商业生产的系统方法中将生物燃料视为副产品,那么一个具有经济竞争力的过程将更有可能实现。