Shifts in Environmental Targets for Managing Fine Sediment in Rivers Are Anticipated Under Climate Change.

IF 3 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Environmental Management Pub Date : 2025-07-01 Epub Date: 2025-05-28 DOI:10.1007/s00267-025-02196-0
Rachel Smith, Doug Booker
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引用次数: 0

Abstract

Targets for attribute states indicating freshwater ecosystem health are often set to help manage local activities without accounting for climate driven impacts, despite climate being a known driver of the attribute. A key challenge is anticipating how environmental attributes and corresponding target attribute states will respond to climate change alongside impacts of local anthropogenic activities. We present a method to predict climate-driven shifts in target attribute states for suspended and deposited fine sediment, as specified in existing environmental policy for Aotearoa-New Zealand. The policy uses a river environment classification derived from climate, topography, and geology inputs to determine spatially-distributed target attribute states. We calculated and mapped class membership of the classification and resulting target attribute states for future climate scenarios from regional projections. Apparent spatial patterns in shifts to warmer and drier climate classes are anticipated for a considerable proportion of river segments under the highest future emissions scenario towards the end of century. Climate-driven shifts in class membership led to shifted target attribute states corresponding to either increased or decreased sediment targets depending on location, and the emergence of conditions that have no specified environmental targets because they fall outside of existing classes. Findings highlight the potential impact of climate change upon both target attribute states and actual fine sediment states which should be considered when devising environmental classifications and setting target attribute states. Our method offers a practical approach to anticipate climate-driven impacts on any environmentally-driven spatial classification used to derive management units and target attribute states.

气候变化下河流细沉积物管理环境目标的变化
尽管气候是该属性的一个已知驱动因素,但通常为指示淡水生态系统健康的属性状态设定目标,以帮助管理当地活动,而不考虑气候驱动的影响。一个关键的挑战是预测环境属性和相应的目标属性状态将如何响应气候变化以及当地人为活动的影响。我们提出了一种方法来预测悬浮和沉积细粒沉积物的目标属性状态的气候驱动变化,正如现有的新西兰环境政策所规定的那样。该策略使用来自气候、地形和地质输入的河流环境分类来确定空间分布的目标属性状态。我们计算并绘制了分类的类隶属关系,以及根据区域预测得出的未来气候情景的目标属性状态。在本世纪末最高的未来排放情景下,预计相当大比例的河段将出现向温暖和干燥气候类别转变的明显空间格局。气候驱动的类别成员的变化导致目标属性状态的变化,这些状态对应于沉积物目标的增加或减少,这取决于位置,并且出现了没有特定环境目标的条件,因为它们不在现有类别中。研究结果强调了气候变化对目标属性状态和实际细粒沉积物状态的潜在影响,这在设计环境分类和设定目标属性状态时应予以考虑。我们的方法提供了一种实用的方法来预测气候驱动对任何环境驱动空间分类的影响,用于派生管理单元和目标属性状态。
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来源期刊
Environmental Management
Environmental Management 环境科学-环境科学
CiteScore
6.20
自引率
2.90%
发文量
178
审稿时长
12 months
期刊介绍: Environmental Management offers research and opinions on use and conservation of natural resources, protection of habitats and control of hazards, spanning the field of environmental management without regard to traditional disciplinary boundaries. The journal aims to improve communication, making ideas and results from any field available to practitioners from other backgrounds. Contributions are drawn from biology, botany, chemistry, climatology, ecology, ecological economics, environmental engineering, fisheries, environmental law, forest sciences, geosciences, information science, public affairs, public health, toxicology, zoology and more. As the principal user of nature, humanity is responsible for ensuring that its environmental impacts are benign rather than catastrophic. Environmental Management presents the work of academic researchers and professionals outside universities, including those in business, government, research establishments, and public interest groups, presenting a wide spectrum of viewpoints and approaches.
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