Fertilizer management approaches influence nutrient leaching from residential landscapes

IF 2.2 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Alexander J. Reisinger, Eban Z. Bean, Mark Clark, Ansley J. Levine, P. Christopher Wilson
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引用次数: 0

Abstract

Residential lawn management often includes fertilizer application to encourage healthy plant growth and support the aesthetic preferences of homeowners and communities. These inputs may negatively impact the environment by increasing nutrient export to aquatic ecosystems via surface runoff or leaching through soil into groundwater. Fertilizer management and nutrient export are of particular concern in karst areas like North-Central Florida, where the underlying karst geology leads to rapid, direct connections between surface and groundwater ecosystems. We quantified nitrogen (N) and phosphorus (P) leaching from residential landscapes in North-Central Florida. We investigated nutrient leaching from landscapes spanning a real estate gradient and across different fertility treatments (no N fertilizer, synthetic mineral fertilizer, biosolids-based organic mineral fertilizer, compost topdressing, natural areas). We measured leachate from these landscapes weekly for 1 year. All residential landscapes, including control yards that received no N fertilizer, leached >10x more nitrate than natural areas, and landscapes treated with synthetic fertilizer exhibited an >80x increase in nitrate leaching. Fertilizer treatments also appeared to alter the N leaching composition, with a greater proportion of total dissolved N leaching coming from nitrate in fertilized treatments (synthetic and organic) compared to natural, control, or compost-treated landscapes. These results show that landscape management and human actions are important drivers of nutrient leaching in residential landscapes. While all residential lawns leached more N than natural areas, less leaching was associated with certain management approaches. When implemented at larger scales, these approaches may reduce the likelihood of negative impacts of residential landscapes on regional water quality.

肥料管理方法影响住宅景观的养分淋失。
住宅草坪管理通常包括施肥,以鼓励植物健康生长,并支持房主和社区的审美偏好。这些投入可能通过地表径流或土壤淋滤进入地下水增加向水生生态系统的养分输出,从而对环境产生负面影响。在像佛罗里达中北部这样的喀斯特地区,肥料管理和养分输出尤其值得关注,在那里,潜在的喀斯特地质导致地表和地下水生态系统之间快速、直接的联系。我们量化了佛罗里达州中北部住宅景观的氮(N)和磷(P)淋失。我们研究了不同施肥处理(不施氮肥、合成矿物肥、生物固体有机矿物肥、堆肥追肥、自然区域)的土壤养分淋失情况。我们连续一年每周测量这些景观的渗滤液。所有住宅景观,包括未施用氮肥的对照庭院,其硝酸盐浸出量是自然区域的10倍,而施用合成肥料的景观的硝酸盐浸出量增加了80倍。肥料处理似乎也改变了N的淋溶组成,与自然、对照或堆肥处理的景观相比,肥料处理(合成和有机)中溶解N淋溶的总比例更大。这些结果表明,景观管理和人类活动是住宅景观中养分淋失的重要驱动因素。虽然所有的住宅草坪都比自然区域淋滤出更多的氮,但与某些管理方法有关的淋滤较少。当在更大范围内实施时,这些方法可能会减少住宅景观对区域水质产生负面影响的可能性。
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来源期刊
Journal of environmental quality
Journal of environmental quality 环境科学-环境科学
CiteScore
4.90
自引率
8.30%
发文量
123
审稿时长
3 months
期刊介绍: Articles in JEQ cover various aspects of anthropogenic impacts on the environment, including agricultural, terrestrial, atmospheric, and aquatic systems, with emphasis on the understanding of underlying processes. To be acceptable for consideration in JEQ, a manuscript must make a significant contribution to the advancement of knowledge or toward a better understanding of existing concepts. The study should define principles of broad applicability, be related to problems over a sizable geographic area, or be of potential interest to a representative number of scientists. Emphasis is given to the understanding of underlying processes rather than to monitoring. Contributions are accepted from all disciplines for consideration by the editorial board. Manuscripts may be volunteered, invited, or coordinated as a special section or symposium.
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