De Schamphelaire Liesje, Verstraete Willy
Laboratory of Microbial Ecology and Technology, Ghent University, Coupure Links 653, B-9000 Ghent, Belgium.
Biotechnol Bioeng. 2009 Jun 1;103(2):296-304. doi: 10.1002/bit.22257.
In the quest for renewable resources, algae are increasingly receiving attention. Their high growth rate, high CO(2) fixation and their lack of requirement for fertile soil surface represent several advantages as compared to conventional (energy) crops. Through their ability to store large amounts of oils, they qualify as a source for biodiesel. Algal biomass, however, can also be used as such, namely as a substrate for anaerobic digestion. In the present research, we investigated the use of algae for energy generation in a stand-alone, closed-loop system. The system encompasses an algal growth unit for biomass production, an anaerobic digestion unit to convert the biomass to biogas and a microbial fuel cell to polish the effluent of the digester. Nutrients set free during digestion can accordingly be returned to the algal growth unit for a sustained algal growth. Hence, a system is presented that continuously transforms solar energy into energy-rich biogas and electricity. Algal productivities of 24-30 ton VS ha(-1) year(-1) were reached, while 0.5 N m(3) biogas could be produced kg(-1) algal VS. The system described resulted in a power plant with a potential capacity of about 9 kW ha(-1) of solar algal panel, with prospects of 23 kW ha(-1).
在对可再生资源的探索中,藻类越来越受到关注。与传统(能源)作物相比,它们具有高生长速率、高二氧化碳固定能力以及无需肥沃土壤表面等诸多优势。凭借其储存大量油脂的能力,藻类可作为生物柴油的来源。然而,藻类生物质本身也可被利用,即作为厌氧消化的底物。在本研究中,我们调查了在独立的闭环系统中利用藻类发电的情况。该系统包括用于生物质生产的藻类生长单元、将生物质转化为沼气的厌氧消化单元以及用于净化消化器流出物的微生物燃料电池。消化过程中释放的养分可相应地返回藻类生长单元以维持藻类的持续生长。因此,我们展示了一个能持续将太阳能转化为富含能量的沼气和电能的系统。藻类产量达到了24 - 30吨挥发性固体/公顷·年,同时每千克藻类挥发性固体可产生0.5立方米沼气。所描述的系统形成了一个潜在容量约为9千瓦/公顷太阳能藻板的发电厂,有望达到23千瓦/公顷。