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Algal biomass from wastewater: soil phosphorus bioavailability and plants productivity

机译:废水中的藻类生物量:土壤磷的生物利用度和植物生产力

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摘要

The cultivation of microalgae in wastewater allows to obtain a biomass concentrated in nutrients and organic material. This biomass added to phosphate fertilizers can promote a slow release of the nutrient and consequently a higher absorption of phosphorus (P). The objective of this study was to investigate P uptake by plants subjected to triple superphosphate (TSP) fertilization, added with microalgae biomass (MB) grown in wastewater. TSP was added with different MB proportions in order to verify if there would be a different behaviour in P release for millet (Pennisetum glaucum L.) plants. With the proportion that maximized P accumulation in plants, a second experiment was carried out to investigate whether MB exerts influence of P diffusion in the soil. Finally, a third trial was conducted in a greenhouse, where TSP and TSP +12% MB were applied to the soil under different phosphorus doses in corn (Zea mays L.). The proportion of MB in TSP that maximized the increase of P content and concentration in plants was approximately 12% MB. From this proportion, a reduction in the values of the variables analysed in the plant with the increase of the proportion of MB in the biofertilizer was observed. Similar behaviour was observed when evaluating P diffusion in sandy and clay soils. Fertilizers TSP and TSP + 12% MB showed no difference in P diffusion in the soil, while the ratio of 30% MB clearly impaired P diffusion. In a greenhouse, the P content presented significant difference for the tests carried out with TSP and TSP +12% MB fertilizer, in which the latter provided higher P recovery rate by plants. Therefore, MB added to TSP had a positive influence on plant development and its P recovery capacity when applied in a proportion of 12% MB to the fertilizer mass.
机译:废水中微藻的培养可以获取集中在营养物质和有机物质中的生物质。添加到磷酸盐肥料中的这种生物质可以促进营养物质的缓慢释放,从而提高磷(P)的吸收率。这项研究的目的是研究三重过磷酸钙(TSP)施肥并添加了废水中生长的微藻生物量(MB)的植物对磷的吸收。为了验证小米(Pennisetum glaucum L.)植物的磷释放量是否不同,向TSP中添加了不同比例的MB。以使植物中磷积累最大化的比例,进行了第二项实验,以研究MB是否对土壤中磷的扩散产生影响。最后,在温室中进行了第三次试验,在玉米(Zea mays L.)中以不同的磷剂量将TSP和TSP + 12%MB应用于土壤。 TSP中使植物中P含量和浓度增加最大化的MB比例约为12%MB。从该比例观察到,随着生物肥料中MB比例的增加,工厂中分析的变量值降低。当评估磷在沙质和粘土中的扩散时,观察到类似的行为。 TSP和TSP + 12%MB的肥料在土壤中的P扩散没有差异,而30%MB的比例明显损害了P的扩散。在温室中,用TSP和TSP + 12%MB肥料进行的试验中磷含量存在显着差异,其中后者提供了更高的植物P回收率。因此,当在肥料中添加12%MB时,添加到TSP中的MB对植物发育及其磷的回收能力具有积极影响。

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  • 来源
    《The Science of the Total Environment》 |2020年第1期|135088.1-135088.9|共9页
  • 作者

  • 作者单位

    Department of Civil Engineering Federal University of Vicosa Av. Peter Henry Rolfs s. Campus da Universidade Federal de Vicosa Vicosa3 Minas Cerais 36570-900 Brazil;

    Department of Soil Science Federal University of Vicosa Av. Peter Henry Rolfs s Campus da Universidade Federal de Vicosa Vicosa Minas Gerais 36570-900 Brazil;

    Department of Water Resources and Sanitation Federal University of Lavras Campus Universitario Lavras Minas Gerais 37200-000 Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microalgae; nutrient recycling; agricultural valorisation; circular economy; environmentally friendly fertilizers;

    机译:微藻;营养循环利用;农业增值;循环经济环保肥料;

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