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利用天气预报信息进行操作,提高微藻生物量的生产力。

Improving Microalgal Biomass Productivity Using Weather-Forecast-Informed Operations.

机构信息

Marine and Coastal Research Laboratory, Pacific Northwest National Laboratory, Sequim, WA 98382, USA.

Energy and Environment Directorate, Pacific Northwest National Laboratory, Richland, WA 99354, USA.

出版信息

Cells. 2022 Apr 29;11(9):1498. doi: 10.3390/cells11091498.

Abstract

The operation of microalgal cultivation systems, such as culture dilution associated with harvests, affects biomass productivity. However, the constantly changing incident light and ambient temperature in the outdoor environment make it difficult to determine the operational parameters that result in optimal biomass growth. To address this problem, we present a pond operation optimization tool that predicts biomass growth based on future weather conditions to identify the optimal dilution rate that maximizes biomass productivity. The concept was tested by comparing the biomass productivities of three dilution scenarios: standard batch cultivation (no dilution), fixed-rate dilution (harvest 60% of the culture every three days), and weather-forecast-informed dilution. In the weather-forecast-informed case, the culture was diluted daily, and the dilution ratio was optimized by the operation optimization tool according to the future 24 h weather condition. The results show that the weather-forecast-informed dilution improved the biomass productivity by 47% over the standard batch cultivation and 20% over the fixed-rate dilution case. These results demonstrate that the pond operation optimization tool could help pond operators to make decisions that maximize biomass growth in the field under ever-changing weather conditions.

摘要

微藻培养系统的运行,如与收获相关的培养液稀释,会影响生物质生产力。然而,户外环境中不断变化的入射光和环境温度使得很难确定产生最佳生物质生长的操作参数。为了解决这个问题,我们提出了一种池塘操作优化工具,该工具基于未来的天气条件预测生物质生长,以确定最大程度提高生物质生产力的最佳稀释率。通过比较三种稀释方案的生物质生产力来验证该概念:标准批式培养(不稀释)、固定速率稀释(每三天收获 60%的培养液)和基于天气预报的稀释。在基于天气预报的情况下,每天进行培养液稀释,并且通过操作优化工具根据未来 24 小时的天气条件优化稀释比例。结果表明,与标准批式培养相比,基于天气预报的稀释将生物质生产力提高了 47%,与固定速率稀释相比提高了 20%。这些结果表明,池塘操作优化工具可以帮助池塘操作人员在不断变化的天气条件下做出最大限度地提高田间生物质生长的决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0694/9101621/c8726b833074/cells-11-01498-g001.jpg

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