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首页> 外文期刊>The Journal of Applied Ecology >Trait diversity enhances yield in algal biofuel assemblages
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Trait diversity enhances yield in algal biofuel assemblages

机译:特征多样性提高藻类生物燃料的产量组合

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1. Phytoplankton offer great potential as a bioenergy crop; however, technological advances are needed to intensify their yield and reduce their footprints for water, nutrients and land. One approach to enhance productivity is to grow polycultures of mixed species, which convert abiotic resources into biomass more efficiently than any single taxon. 2. We measured traits related to nutrient and light use, growth rate, biomass production, stoichiometry and neutral lipid concentration in 16 diverse microalgal taxa. Species with large cells (primarily Chlorophyta) showed rapid growth, high asymptotic biomass, low minimum nutrient demands, and high cellular C: N and C: P ratios. These same species also exhibited high minimum demands for light and low lipid concentrations. We grew all 119 possible species pairs and found that biomass yield exceeded the component monocultures in polycultures consisting of species with highly divergent traits. However, underyielding occurred frequently as many pairs produced less biomass than either the mean or the maximum of the two component monocultures. 3. In terms of ecological trade-offs, competitive ability for N and P were positively correlated, but negatively related to ability to grow at low light. In terms of bioenergy production, the species with high cellular lipid concentrations showed both slow growth and high demands for nutrients. 4. Synthesis and applications. Our results identify trade-offs among functional traits that determine the suitability of different algal species as biofuel feedstocks and narrow the search for productive and robust species combinations to maximize bioenergy productivity. An approach based on the ecology of species traits will be more effective in optimizing yield in bioenergy communities than promoting high species diversity per se.
机译:1. 生物能源作物;需要加强他们的产量和减少吗他们的足迹水、营养物质和土地。提高生产力的一个方法是增加polycultures混合物种,转换非生物资源生物量更有效率比任何单一的分类单元。有关营养和光线的使用,增长率,生物质生产、化学计量学和中立脂质浓度在16个不同的microalgal分类单元。绿藻门)显示快速增长,高渐近生物量、最低营养要求低、高细胞C: N和C: P比率。也表现出很高的最低要求光和低脂质浓度。可能的物种对,发现生物量单一栽培的产量超过了组件polycultures物种组成的高度不同的特征。经常尽可能多的对生物量较少比平均或最大的两个组件单一栽培。权衡,N和P的竞争能力呈正相关,但负相关生长在低光的能力。生物能源生产、高的物种细胞脂质浓度显示都慢增长和高营养的要求。合成和应用程序。功能特征之间的权衡决定不同的藻类物种的适应性生物燃料原料和缩小搜索高效和健壮的物种组合生物能源效率最大化。基于物种的生态学特征更有效的在生物能源优化收益社区比促进较高的物种多样性如果。

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