Porter School of Environmental Studies, Tel Aviv University, Israel.
Porter School of Environmental Studies, Tel Aviv University, Israel.
Bioresour Technol. 2017 Oct;241:1084-1093. doi: 10.1016/j.biortech.2017.06.061. Epub 2017 Jun 13.
Seagriculture, which can provide offshore grown macroalgae biomass would play a significant role in bioeconomy. Nevertheless, seagriculture development has been hindered by the lack of laboratory photobioreactors that enable fundamental and pilot scale macroalgae research. In this work, a macroalgae photobioreactor (MPBR) was developed and integrated into the building. The MPBR operation was demonstrated for 6months with cultivation of Cladophora sp., Ulva compressa and Ulva rigida green macroalgae species isolated from 3 sites at the Eastern Mediterranean coast. The growth rate, protein, ash, specific energy density, rhamnose, xylose, arabinose, glucose, galactose and glucuronic acid content of the cultivated species were quantified. The maximum accumulated energy rates were 0.033WhLd for Cladophora sp., 0.081WhLd for U. compressa and 0.029WhLd for U. rigida. This work provides a detailed design of an indoor, urban photobioreactor for cultivation, maintenance and energy balance analysis of macroalgae biomass for biorefinery.
海水养殖可以提供近海生长的大型藻类生物质,在生物经济中发挥重要作用。然而,海水养殖的发展受到缺乏能够进行基础研究和中试规模大型藻类研究的实验室光生物反应器的限制。在这项工作中,开发了一种大型藻类光生物反应器(MPBR)并将其集成到建筑物中。该 MPBR 进行了 6 个月的运行,对从地中海东部海岸的 3 个地点分离出的绿藻 Cladophora sp.、Ulva compressa 和 Ulva rigida 进行了培养。量化了培养物种的生长速度、蛋白质、灰分、比能量密度、鼠李糖、木糖、阿拉伯糖、葡萄糖、半乳糖和葡萄糖醛酸含量。Cladophora sp. 的最大累积能量速率为 0.033WhLd,U. compressa 的最大累积能量速率为 0.081WhLd,U. rigida 的最大累积能量速率为 0.029WhLd。这项工作提供了一种室内、城市光生物反应器的详细设计,用于生物炼制中大型藻类生物质的培养、维护和能量平衡分析。