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首页> 外文期刊>Journal of Cleaner Production >Sustainable production of microalgae in raceways: Nutrients and water management as key factors influencing environmental impacts
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Sustainable production of microalgae in raceways: Nutrients and water management as key factors influencing environmental impacts

机译:赛道中微藻可持续生产:营养和水管理作为影响环境影响的关键因素

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Microalgae production has taken on importance for its ability to be more energy efficient than land crops, with low input requirements and a wide number of possible applications.This work aimed to evaluate the environmental impacts of the production of microalgae for use as bio-stimulants and aquaculture feeds. Inventory data from a real production facility of 1 ha located in Almeria (Spain) were acquired, and LCA was applied to compare nine scenarios with alternative water bases (fresh, sea and waste), and nutrient sources (fertilizers, manure and wastewater), and the alternatives were also compared using a CO2 supply (commercial liquid) versus a default scenario (recovered flue gas). The LCA results outlined that the main inputs affecting environmental performance were electricity use, chemical fertilizer demand (N and P) and transport. Scenarios using recovered nutrients from slurry and wastewater showed reductions in the climate change category (kg CO2 eq.) of 80% and 20% respectively, compared to standard fertilizer use. The threshold of distance for manure transport was 40 km, beyond that value the scenarios using recovered nutrients performed worse than scenarios using chemical fertilizers. The multifunctionality of the process which included wastewater depuration, permitted compensation in most of the impact categories, yielding negative values in some (all of the toxicity categories). (C) 2020 Elsevier Ltd. All rights reserved.
机译:微藻产量对其具有比陆地作物更能节能的能力,具有较低的投入要求和广泛的可能应用。这项工作旨在评估微藻生产的环境影响与生物兴奋剂一起使用水产养殖饲料。从位于阿尔梅里亚(西班牙)的1公顷的实际生产设施的库存数据被收购,LCA应用于与替代水域(新鲜,海洋和废物)和营养源(肥料,粪肥和废水)进行比较九种情景,还使用CO2供应(商业液体)与默认情况(回收的烟道气)进行比较。 LCA结果概述了影响环境性能的主要输入是电力使用,化学肥料需求(N和P)和运输。与标准肥料使用相比,使用来自浆料和废水中回收的营养物的场景显示在气候变化类别(KG CO2 EQ)的降低,分别为80%和20%。粪便运输距离的阈值40公里,超出该价值,使用回收的营养素的场景比使用化肥的情景更差。包括废水钙的过程的多官能团,在大多数影响类别中允许补偿,在某些情况下产生负值(所有毒性类别)。 (c)2020 elestvier有限公司保留所有权利。

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