IF 3.4 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Sheena Davis, Matthew Grainger, Marion Pfeifer, Zarah Pattison, Philip Stephens, Roy Sanderson
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引用次数: 0

摘要

背景:河岸带是重要的过渡性栖息地,在陆地和水生生态系统之间架起了桥梁。它们支持提高生物多样性水平,并提供一系列重要的管理和供应生态系统服务,其中许多对人类福祉至关重要,例如维持水质和减轻水道沿线的洪水风险。热带地区农业集约化、工业发展和基础设施扩张造成的人为压力日益增加,导致河岸栖息地普遍退化,导致生物多样性丧失,对洪水和侵蚀的抵御能力下降。考虑到气候变化及其对淡水系统的相关影响,有必要建立复原力和适应能力。这促使人们需要保护现有的河岸栖息地,并采取措施恢复这些退化的栖息地,以恢复其功能。该系统地图的目的是确定和整理有关热带地区河岸恢复方法的现有文献,并确定用于衡量生物多样性和人类福祉结果的指标。由此产生的证据整理将有助于确定当前的知识差距,并为未来的研究方向提供信息。方法:为了解决这个系统地图的目标,将使用一组搜索词对预先确定的书目数据库进行搜索。除此之外,将使用谷歌Scholar进行灰色文献检索,并使用专业网站搜索参考文献。收集到的所有文献将按照标题、摘要和全文进行筛选,采用两阶段筛选过程,符合预先确定的资格标准。然后使用预先设计的数据编码表对整理好的文章组中的数据进行编码。数据可能存在异质性;因此,将根据所实施的恢复策略和测量结果的类型对研究进行适当分组。这些将作为子组呈现。将制作一份地图结果的叙述性综合报告,这将概述恢复干预措施的分布和频率,以及测量的结果,并将突出证据差距,以指导未来的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restoring riparian habitats for benefits to biodiversity and human livelihoods: a systematic map protocol for riparian restoration approaches in the tropics.

Background: Riparian zones are vital transitional habitats that bridge the gap between terrestrial and aquatic ecosystems. They support elevated levels of biodiversity and provide an array of important regulatory and provisioning ecosystem services, of which, many are fundamentally important to human well-being, such as the maintenance of water quality and the mitigation of flood risk along waterways. Increasing anthropogenic pressures resulting from agricultural intensification, industry development and the expansion of infrastructure in tropical regions have led to the widespread degradation of riparian habitats resulting in biodiversity loss and decreased resilience to flooding and erosion. Considering climate change and its associated effects on freshwater systems, the need to build resilience and adaptive capacities is pertinent. This has prompted the need to protect existing riparian habitats and the implementation of solutions to restore these degraded habitats to recover their functional capacity. This systematic map will aim to identify and collate existing literature on approaches for riparian restoration implemented in tropical regions and identify what indicators have been used to measure outcomes for biodiversity and human well-being. The resulting collation of evidence will help to identify current knowledge gaps and inform the direction of future research.

Methods: To address the aims of this systematic map, a search of pre-identified bibliographic databases will be undertaken using a set string of search terms. In addition to this, a grey literature search will be conducted using Google Scholar and by searching for references using specialist websites. All literature that is gathered will be screened by title, abstract and full text using a two-phase screening process which adheres to a pre-determined eligibility criteria. Data will then be coded from the collated group of articles using a pre-designed data coding sheet. Heterogeneity will likely be present in the data; therefore, studies will be grouped appropriately based on the restoration strategy implemented and, on the type of outcome measured. These will be presented as sub-groups. A narrative synthesis of map findings will be produced, this will outline the distribution and frequency of restoration interventions, and outcomes measured, and will highlight evidence gaps to direct future research.

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来源期刊
Environmental Evidence
Environmental Evidence Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.10
自引率
18.20%
发文量
36
审稿时长
17 weeks
期刊介绍: Environmental Evidence is the journal of the Collaboration for Environmental Evidence (CEE). The Journal facilitates rapid publication of evidence syntheses, in the form of Systematic Reviews and Maps conducted to CEE Guidelines and Standards. We focus on the effectiveness of environmental management interventions and the impact of human activities on the environment. Our scope covers all forms of environmental management and human impacts and therefore spans the natural and social sciences. Subjects include water security, agriculture, food security, forestry, fisheries, natural resource management, biodiversity conservation, climate change, ecosystem services, pollution, invasive species, environment and human wellbeing, sustainable energy use, soil management, environmental legislation, environmental education.
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