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真微藻生产工厂的生产成本及降低策略。

Production cost of a real microalgae production plant and strategies to reduce it.

机构信息

Department of Chemical Engineering, University of Almería, Almería 04071 Spain.

出版信息

Biotechnol Adv. 2012 Nov-Dec;30(6):1344-53. doi: 10.1016/j.biotechadv.2012.02.005. Epub 2012 Feb 14.

Abstract

The cost analysis of a real facility for the production of high value microalgae biomass is presented. The facility is based on ten 3 m3 tubular photobioreactors operated in continuous mode for 2 years, data of Scenedesmus almeriensis productivity but also of nutrients and power consumption from this facility being used. The yield of the facility was close to maximum expected for the location of Almería, the annual production capacity being 3.8 t/year (90 t/ha·year) and the photosynthetic efficiency being 3.6%. The production cost was 69 €/kg. Economic analysis shows that labor and depreciation are the major factors contributing to this cost. Simplification of the technology and scale-up to a production capacity of 200 t/year allows to reduce the production cost up to 12.6 €/kg. Moreover, to reduce the microalgae production cost to approaches the energy or commodities markets it is necessary to reduce the photobioreactor cost (by simplifying its design or materials used), use waste water and flue gases, and reduce the power consumption and labor required for the production step. It can be concluded that although it has been reported that production of biofuels from microalgae is relatively close to being economically feasible, data here reported demonstrated that to achieve it by using the current production technologies, it is necessary to substantially reduce their costs and to operate them near their optimum values.

摘要

介绍了一个生产高价值微藻生物质的实际工厂的成本分析。该工厂基于十个 3 立方米的管式光生物反应器,以连续模式运行两年,使用了来自该设施的 Scenedesmus almeriensis 生产力以及营养物和电力消耗的数据。该设施的产量接近阿尔梅里亚地区的预期最大值,年产量为 3.8 吨/年(90 吨/公顷·年),光合效率为 3.6%。生产成本为 69 欧元/公斤。经济分析表明,劳动力和折旧是导致成本增加的主要因素。通过简化技术和扩大生产规模到 200 吨/年,可以将生产成本降低到 12.6 欧元/公斤。此外,要使微藻生产成本降低到接近能源或商品市场的水平,就必须降低光生物反应器的成本(通过简化其设计或使用的材料)、利用废水和废气,并降低生产步骤所需的电力消耗和劳动力。可以得出结论,尽管已经有报道称,利用微藻生产生物燃料在经济上已经相当可行,但这里报告的数据表明,要利用当前的生产技术实现这一目标,就必须大幅降低成本,并使其接近最佳运行值。

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