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首页> 外文期刊>Environmental Science: Nano >Nanomaterials as fertilizers for improving plant mineral nutrition and environmental outcomes
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Nanomaterials as fertilizers for improving plant mineral nutrition and environmental outcomes

机译:纳米材料作为改善植物矿物营养和环境结果的肥料

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摘要

Food production must increase markedly to feed the growing human population, but this needs to be achieved whilst simultaneously reducing adverse environmental impacts. In this regard, there is increasing interest in the use of nanomaterials as fertilizers for improving plant mineral nutrition. In the present review, we examine the ability of nanomaterials to supply a range of nutrients, with most focus given to recent research on phosphorus (P) and zinc (Zn). Some studies have demonstrated that nanomaterials can indeed be more effective than conventional fertilizers, especially by acting as a slow release source. However, other studies have found that nanomaterials have the same effectiveness, or are even less effective, than conventional fertilizers. Thus, ongoing investigation is required to understand the conditions under which the use of nanomaterials increases efficiency. We also note that there are a comparatively large number of studies that claim that nanomaterials are effective fertilizers despite not including appropriate control treatments in their experimental design. Furthermore, and of particular concern, a surprising number of studies conclude that nanomaterials are effective fertilizers despite their own analyses showing that the improvement in plant growth was not statistically significant. Overall, it is clear that nanomaterials are most likely to be effective where they can be tailored to act as a slow release source that improves nutrient use efficiency whilst simultaneously reducing adverse environmental impacts.
机译:粮食生产必须显着增加以养活不断增长的人口,但需要实现这一目标,同时降低不良环境影响。在这方面,在使用纳米材料作为改善植物矿物质营养的肥料时越来越感兴趣。在本综述中,我们研究纳米材料提供一系列营养素的能力,最常用于磷(P)和锌(Zn)的最新研究。有些研究表明,纳米材料确实比常规肥料更有效,尤其是通过作为缓慢释放来源。然而,其他研究发现,纳米材料具有相同的有效性,或者甚至比常规肥料更低的有效性。因此,需要进行正在进行的调查来了解纳米材料的使用增加效率的条件。我们还注意到,尽管在其实验设计中不包括适当的对照治疗,但纳米材料具有相对大量的研究。此外,特别关注的是,尽管他们自己的分析表明植物生长的改善没有统计学意义,但缺乏症状的研究表明,纳米材料是有效的肥料。总的来说,很明显,纳米材料最有可能是有效的,因为它们可以根据慢释放来源量身定制,以提高营养利用效率,同时减少不良环境影响。

著录项

  • 来源
    《Environmental Science: Nano 》 |2019年第12期| 共12页
  • 作者单位

    Univ Queensland Sch Agr &

    Food Sci St Lucia Qld Australia;

    Univ South Australia Future Ind Inst Mawson Lakes SA 5095 Australia;

    Nanjing Agr Univ Coll Resources &

    Environm Sci Nanjing 210095 Jiangsu Peoples R China;

    Univ Copenhagen Dept Plant &

    Environm Sci Copenhagen Plant Sci Ctr DK-1871 Frederiksberg Denmark;

    Univ Copenhagen Dept Plant &

    Environm Sci Copenhagen Plant Sci Ctr DK-1871 Frederiksberg Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学 ;
  • 关键词

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