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解析光照、温度和营养动态对浮萍生长的影响:一项荟萃分析研究。

Unravelling the impact of light, temperature and nutrient dynamics on duckweed growth: A meta-analysis study.

机构信息

BioResource Systems Research Group, School of Civil Engineering, University of Leeds, Leeds LS2 9JT, UK; School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK; Departamento de Ingeniería Química, Universidad Nacional de Colombia, Campus La Nubia, Manizales 170003, Colombia.

School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.

出版信息

J Environ Manage. 2024 Aug;366:121721. doi: 10.1016/j.jenvman.2024.121721. Epub 2024 Jul 16.

Abstract

Nature-based solutions have been proven in recent decades as a reliable and cost-effective technology for the treatment of wastewaters. Different plant species have been studied for this purpose, but particular attention has been given to duckweeds, the smallest flowering plant in the world. Duckweed-based systems for simultaneous wastewater treatment and nutrient recovery have the potential to provide sustainable and cost-effective solutions to reduce water pollution and increase nutrient efficiency at catchment level. However, despite being considered a seemingly simple technology, the performance of wastewater treatment systems using duckweed depends on environmental and operational conditions not very well understood. For that reason, careful consideration must be given to such environmental factors controlling duckweed biomass growth but the evidence in published literature is scare and dispersed. This study employs a systematic review approach to conduct a meta-analysis of the effect of environmental conditions on duckweed growth by means of standardised IQ-scores. The results suggest that duckweed biomass growth rates reach a maximum within specific ranges for temperature (11.4-32.3 °C), daily light integral (DLI) (5-20 mol m), and nitrogen (>5 mg N L) and phosphorus (>1 mg P L) concentrations; DLI was found to be a better parameter to assess the overall effect of light (photoperiod and intensity) on duckweed growth and that the effect of nitrogen and phosphorus supply should consider the nitrogen species available for plant growth and its ratio to phosphorus concentrations (recommended N:P ratio = 15:1). By establishing the optimal range of culture conditions for duckweed, this study provides important insights for optimizing engineered wastewater treatment systems that rely on duckweed for nutrient control and recovery, which is primarily mediated by duckweed growth.

摘要

自然解决方案在最近几十年已被证明是一种可靠且具有成本效益的废水处理技术。已经研究了不同的植物物种来实现这一目标,但特别关注的是浮萍,这是世界上最小的开花植物。基于浮萍的同时处理废水和回收营养物质的系统有可能为减少水污染和提高集水区的养分效率提供可持续和具有成本效益的解决方案。然而,尽管被认为是一种看似简单的技术,但利用浮萍处理废水的系统的性能取决于环境和操作条件,这些条件还没有得到很好的理解。因此,必须仔细考虑控制浮萍生物量增长的环境因素,但发表的文献中的证据很少且分散。本研究采用系统综述方法,通过标准化的 IQ 分数对环境条件对浮萍生长的影响进行荟萃分析。结果表明,浮萍生物量增长率在特定的温度范围内(11.4-32.3°C)、每日光照积分(DLI)(5-20 摩尔·米)和氮(>5 毫克·氮·升)和磷(>1 毫克·磷·升)浓度范围内达到最大值;DLI 被发现是评估光照(光周期和强度)对浮萍生长整体影响的更好参数,并且氮和磷供应的效果应考虑到植物生长可用的氮种类及其与磷浓度的比值(推荐的 N:P 比= 15:1)。通过确定浮萍培养的最佳条件范围,本研究为优化依赖浮萍进行营养物控制和回收的工程化废水处理系统提供了重要的见解,这主要是通过浮萍的生长来介导的。

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