控制杀菌剂在土壤中分布的基本参数的实验和计算识别。

IF 2.8 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Nadine Kiefer, Judith Klein, Felix Beyer, Benita Burghardt, Mirko Rohr, Michael Klein, Michael Burkhardt, Matthias Noll, Stefan Kalkhof
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引用次数: 0

摘要

通常包含在建筑材料中的杀菌剂可以滤出并渗透到环境中。模拟环境生境中物质的浓度和持久性是一种有效的风险评估方法。虽然该模型已有效地应用于农药进入土壤环境的风险评估,但从立面释放的杀菌剂与农业使用的杀菌剂明显不同。这项研究的目的是评估适应性模拟方法在审批程序中的适用性。本文将pelmo生成的初步模拟与实验设置进行比较,以确定杀菌剂土壤分布的关键参数并对其进行优化。采用5 d土柱试验,解决了施用稀释度较高的杀菌剂问题。根据初步研究结果中的调整参数,将90天的实验研究与相应的模拟进行了比较。在实验中,在25厘米的土层中观察到疏水和缓慢降解的杀菌剂的存在,这与通过PELMO模拟确定的5至7.5厘米的土层深度形成对比。此外,天气事件,如干旱期或大雨事件,已被证明会影响杀菌剂的分布,这是模拟中不包括的一个参数。本文的主要发现是,单独调整分散长度不足以近似杀菌剂的应用场景。在模拟中,吸附参数的调整应与水-物质应用相适应。最后,这些适应性应根据实地研究进行评估,因为实验室设置并不能代表自然风化事件的所有方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental and computational identification of essential parameters governing biocide distribution in soil.

Biocides conventionally contained in building materials can leach out and penetrate the environment. Simulating the concentration and persistence of substances in environmental habitats is an effective approach to risk assessment. Although the modeling has been effectively applied for risk assessments of pesticide input into the soil environment, the release of biocides from facades notably differs from those in agricultural use. The aim of this study was to assess the applicability of adapted simulation approaches to approval procedures. Herein, a preliminary pesticide leaching model (PELMO)-generated simulation was compared against an experimental setup to identify the key parameters and optimization thereof of biocide soil distribution. A 5-day soil column experiment was performed to address the higher application dilutions of biocides. Based on the adapted parameters in the preliminary findings, a 90-day experimental study was compared against the corresponding simulation. Experimentally, the presence of hydrophobic and slowly degradable biocides in soil layers up to 25 cm was observed, which was in contrast to the maximum of a 5-7.5 cm of soil layer depth identified via the PELMO simulation. Furthermore, weather events, such as dry periods or heavy rain events, were shown to influence the biocide distribution, which is a parameter excluded from the simulation. The main finding herein was that adjustment of the dispersion length standalone is not sufficient to approximate the biocide application scenario. The adjustment of the adsorption parameter should be adapted in the simulation accompanied by the water-substance application. Finally, these adaptions should be evaluated against a field study, because a laboratory set-up does not represent all aspects of natural weathering events.

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来源期刊
CiteScore
7.40
自引率
9.80%
发文量
265
审稿时长
3.4 months
期刊介绍: The Society of Environmental Toxicology and Chemistry (SETAC) publishes two journals: Environmental Toxicology and Chemistry (ET&C) and Integrated Environmental Assessment and Management (IEAM). Environmental Toxicology and Chemistry is dedicated to furthering scientific knowledge and disseminating information on environmental toxicology and chemistry, including the application of these sciences to risk assessment.[...] Environmental Toxicology and Chemistry is interdisciplinary in scope and integrates the fields of environmental toxicology; environmental, analytical, and molecular chemistry; ecology; physiology; biochemistry; microbiology; genetics; genomics; environmental engineering; chemical, environmental, and biological modeling; epidemiology; and earth sciences. ET&C seeks to publish papers describing original experimental or theoretical work that significantly advances understanding in the area of environmental toxicology, environmental chemistry and hazard/risk assessment. Emphasis is given to papers that enhance capabilities for the prediction, measurement, and assessment of the fate and effects of chemicals in the environment, rather than simply providing additional data. The scientific impact of papers is judged in terms of the breadth and depth of the findings and the expected influence on existing or future scientific practice. Methodological papers must make clear not only how the work differs from existing practice, but the significance of these differences to the field. Site-based research or monitoring must have regional or global implications beyond the particular site, such as evaluating processes, mechanisms, or theory under a natural environmental setting.
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