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通过微滤最小化栅藻脱水的能耗:性能、成本和可行性。

Minimizing the energy requirement of dewatering scenedesmus sp. by microfiltration: performance, costs, and feasibility.

机构信息

Centre for Complex Fluids Processing, Multidisciplinary Nanotechnology Centre, College of Engineering, Swansea University , Swansea SA2 8PP, United Kingdom.

出版信息

Environ Sci Technol. 2014;48(1):845-53. doi: 10.1021/es4051567. Epub 2013 Dec 23.

Abstract

The harvesting of the microalgae Scenedesmus species using a 200 L pilot-scale microfiltration system was investigated and critically assessed. The energy requirement was determined and correlated to the different operating parameters, such as transmembrane pressure (ΔP), membrane area, temperature, and initial biomass concentration. A filtration model was developed and showed a strong correlation with experimental data up to 20.0 g of dry cell weight (DCW)/L. The non-optimized filtration system had an energy requirement of 2.23 kWh/m(3) with an associated cost of $0.282/kg of microalgae. The investigation into the influence of the operating parameters and scale-up effects showed that the energy requirement could be substantially reduced to 0.90 kWh/m(3) and $0.058/kg of microalgae harvested. Maintenance costs associated with cleaning were estimated to be 0.23 kWh or $0.029/batch of microalgae processed. Dependent upon the operating conditions, harvesting may represent 6-45% of the energy embedded in the microalgae with a carbon footprint of 0.74-1.67 kg of CO2/kg of microalgae. Microfiltration was demonstrated to be a feasible microalgae harvesting technology allowing for more than 99% volume reduction. The energy requirement and associated carbon footprint of microalgae harvesting reported here do not forfeit the need for an industrial-scale study; however, the information provided presents a more realistic approximation than the literature reported to date.

摘要

使用 200L 中试规模微滤系统对小球藻 Scenedesmus 物种的收获进行了研究和评估。确定了能量需求,并将其与不同的操作参数相关联,例如跨膜压力(ΔP)、膜面积、温度和初始生物质浓度。开发了一个过滤模型,该模型与实验数据的相关性非常强,直到达到 20.0g/L 的干细胞重量(DCW)。非优化的过滤系统的能量需求为 2.23kWh/m³,与每公斤微藻 0.282 美元的相关成本。对操作参数和放大效应的影响的调查表明,可以将能量需求大大降低至 0.90kWh/m³和每公斤微藻 0.058 美元的收获。与清洁相关的维护成本估计为每批处理微藻 0.23kWh 或每公斤微藻 0.029 美元。根据操作条件的不同,收获可能占微藻中嵌入能量的 6-45%,碳足迹为 0.74-1.67kgCO2/kg 微藻。微滤被证明是一种可行的微藻收获技术,可以实现超过 99%的体积减少。这里报告的微藻收获的能量需求和相关的碳足迹并没有放弃对工业规模研究的需求;然而,提供的信息比迄今为止文献中报道的更接近现实。

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