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Chemical application strategies to protect water quality

机译:化学应用策略以保护水质

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Management of turfgrass on golf courses and athletic fields often involves application of plant protection products to maintain or enhance turfgrass health and performance. However, the transport of fertilizer and pesticides with runoff to adjacent surface waters can enhance algal blooms, promote eutrophication and may have negative impacts on sensitive aquatic organisms and ecosystems. Thus, we evaluated the effectiveness of chemical application setbacks to reduce the off-site transport of chemicals with storm runoff. Experiments with water soluble tracer compounds confirmed an increase in application setback distance resulted in a significant increase in the volume of runoff measured before first off-site chemical detection, as well as a significant reduction in the total percentage of applied chemical transported with the storm runoff. For example, implementation of a 6.1 m application setback reduced the total percentage of an applied water soluble tracer by 43%, from 18.5% of applied to 10.5% of applied. Evaluation of chemographs revealed the efficacy of application setbacks could be observed with storms resulting in lesser (e.g. 100 L) and greater (e.g. 300 L) quantities of runoff. Application setbacks offer turfgrass managers a mitigation approach that requires no additional resources or time inputs and may serve as an alternative practice when buffers are less appropriate for land management objectives or site conditions. Characterizing potential contamination of surface waters and developing strategies to safeguard water quality will help protect the environment and improve water resource security. This information is useful to grounds superintendents for designing chemical application strategies to maximize environmental stewardship. The data will also be useful to scientists and regulators working with chemical transport and risk models.
机译:在高尔夫球场和运动场上对草皮的管理通常涉及应用植物保护产品来维持或增强草皮的健康和性能。但是,将带有径流的肥料和杀虫剂运输到相邻的地表水会增加藻华,促进富营养化,并且可能对敏感的水生生物和生态系统产生负面影响。因此,我们评估了化学品应用挫折的效果,以减少暴风雨径流减少化学品的异地运输。水溶性示踪剂化合物的实验证实,应用挫折距离的增加导致首次异地化学检测之前测得的径流量显着增加,以及随暴雨径流运输的所施用化学品的总百分比显着减少。例如,实施6.1 m的应用程序挫折,使所应用的水溶性示踪剂的总百分比降低了43%,从应用的18.5%降至应用的10.5%。化学分析仪的评估表明,暴风雨可观察到应用挫折的功效,从而导致较少(例如100 L)和更大(例如> 300 L)的径流量。应用程序的挫折为草皮草管理者提供了一种缓解方法,不需要额外的资源或时间投入,并且在缓冲区不适合土地管理目标或场地条件的情况下可以作为替代实践。确定地表水的潜在污染特征并制定保护水质的策略将有助于保护环境并提高水资源安全性。该信息对于管理人员在设计化学应用策略以最大化环境管理方面很有用。这些数据对于研究化学物质运输和风险模型的科学家和监管者也将是有用的。

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