Dynamics of pollution transport in constructed wetlands: identification and quantification of underlying physical mechanisms of solute and solid (micr
Dynamics of pollution transport in constructed wetlands: identification and quantification of underlying physical mechanisms of solute and solid (micr
批准号:
2597253
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --
中文摘要
人工湿地中污染物传输的动力学:溶质和固体(微塑料)传输的基本物理机制的识别和量化。人工湿地是一种利用土壤、植被和生物体来处理水、去除溶质和固体污染物的生态工程系统。湿地的物理、化学和生物处理过程受水-植被-土壤相互作用的控制。这些“自然资本”资产是处理城市和工业废水、灰水和雨水径流的最有效措施之一。水运动的动力学在污染物的去除中起着关键作用,因为它影响处理污染物的水力停留时间(接触和活动时间)。植物群落对湿地水动力学和性能有显著影响,因为它们产生流动阻力,改变速度场并影响混合特性,使悬浮物落到湿地床。植被生长和枯死的季节性变化影响系统的性能。此外,随着时间的推移,微生物群落将对作为流出物成分的有机和金属污染物作出反应。然而,关键的知识差距仍然在湿地生态系统中的污染物的来源和归宿。其主要目的是确定和量化的关键机制,管理的运输和命运的污染物使用实验室和实地为基础的数据,位于诺福克河流信托基金的湿地。该项目还将探索微塑料与湿地内土壤和生态系统的相互作用,以了解生物组织中生态毒性的潜力。这些混合和运输机制将使用最先进的荧光和实验流体动力学方法以及我们的创新技术进行微塑料染色。该项目提供的新见解将有助于了解湿地系统中污染物传输的动态。将在本项目中开发的算法将与现有的多相流模型相结合,以模拟各种水文气候条件下的污染物输送。因此,该项目将通过了解和优化人工湿地自然资本资产的性能,在环境保护和综合流域管理方面实现一个步骤性变化,并在水务行业对这些系统进行大量投资的时候产生重大影响。
英文摘要
Dynamics of pollution transport in constructed wetlands: identification and quantification of underlying physical mechanisms of solute and solid (microplastic) transport. Constructed wetlands (CWs) are ecologically-engineered systems that use soil, vegetation and organisms to treat water and remove solute and solid pollution. It is the interplay between water-vegetation-soil that governs the wetland physical, chemical and biological treatment processes. These 'Natural Capital' assets are one of the most effective measures to treat municipal and industrial wastewater, greywater and storm-water runoff. Dynamics of water movement plays a key role in the removal of pollutants, as it influences the hydraulic residence time (contact and activity time) for treating the pollutants. Plant communities have a prominent effect on the wetland hydrodynamics and performance, as they generate flow resistance, changes the velocity field and affect mixing characteristics, enabling suspended material to fall to the wetland bed. Seasonal variation in vegetation growth and die-back influences the performance of the system. In addition, the microbial community will respond over time to the organic and metal pollutants that are constituents of the effluents. However, critical knowledge gaps remain in sources and fate of pollutants in wetland ecological systems. The main aim is to identify and quantify key mechanisms that govern the transport and fate of pollutants using laboratory and field-based data from wetlands located within the Norfolk Rivers Trust. This project will also explore the interaction of microplastics with soil and ecological systems within wetlands to understand the potential for ecotoxicity in biological organizations. These mixing and transport mechanisms will be investigated using state of the art fluorometric and experimental fluid dynamics methods as well as our innovative technology for microplastic staining. The new insights offered by this project will enable understanding the dynamics of pollutant transport in wetland systems. The algorithms which will be developed within this project will be coupled with existing multi-phase flow models in order to simulate pollutant transport under various hydro-climates. Hence this project will provide a step change in environmental protection and integrated catchment management by understanding and optimising the performance of constructed wetland natural capital assets, and significantly, be influential at a time of considerable investment in these systems by the water industry.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
国内基金
海外基金
植物重金属污染的磁学响应及机理研究
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批准号:40972216
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项目类别:面上项目
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资助金额:50.0万元
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批准年份:2009
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负责人:胡守云
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依托单位:
典型POPs的土壤污染机理与作物累积规律
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批准号:40571075
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项目类别:面上项目
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资助金额:45.0万元
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批准年份:2005
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负责人:蒋新
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依托单位: