首页> 外文期刊>Environmental Evidence >Evidence of the impacts of metal mining and the effectiveness of mining mitigation measures on social–ecological systems in Arctic and boreal regions: a systematic map protocol
【24h】

Evidence of the impacts of metal mining and the effectiveness of mining mitigation measures on social–ecological systems in Arctic and boreal regions: a systematic map protocol

机译:在北极和北方地区,金属开采的影响和缓解采矿措施对社会生态系统有效性的证据:系统的地图方案

获取原文
       

摘要

BackgroundMining activities, including prospecting, exploration, construction, operation, maintenance, expansion, abandonment, decommissioning and repurposing of a mine can impact social and environmental systems in a range of positive and negative, and direct and indirect ways. Mining can yield a range of benefits to societies, but it may also cause conflict, not least in relation to above-ground and sub-surface land use. Similarly, mining can alter environments, but remediation and mitigation can restore systems. Boreal and Arctic regions are sensitive to impacts from development, both on social and environmental systems. Native ecosystems and aboriginal human communities are typically affected by multiple stressors, including climate change and pollution, for example.MethodsWe will search a suite of bibliographic databases, online search engines and organisational websites for relevant research literature using a tested search strategy. We will also make a call for evidence to stakeholders that have been identified in the wider 3MK project (https://osf.io/cvh3u/). We will screen identified and retrieved articles at two distinct stages (title and abstract, and full text) according to a predetermined set of inclusion criteria, with consistency checks at each level to ensure criteria can be made operational. We will then extract detailed information relating to causal linkages between actions or impacts and measured outcomes, along with descriptive information about the articles and studies and enter data into an interactive systematic map database. We will visualise this database on an Evidence Atlas (an interactive, cartographic map) and identify knowledge gaps and clusters using Heat Maps (cross-tabulations of important variables, such as mineral type and studied impacts). We will identify good research practices that may support researchers in selecting the best study designs where these are clear in the evidence base.
机译:背景采矿活动,包括矿山的勘探,勘探,建设,运营,维护,扩建,废弃,退役和再利用,可能以正面和负面的方式以及直接和间接的方式影响社会和环境系统。采矿可以给社会带来一系列好处,但也可能引起冲突,尤其是在地面和地下土地使用方面。同样,采矿可以改变环境,但是补救和缓解措施可以恢复系统。北方和北极地区对发展对社会和环境系统的影响十分敏感。本地生态系统和原住民社区通常受到多种压力因素的影响,例如气候变化和污染等。我们还将呼吁在更广泛的3MK项目(https://osf.io/cvh3u/)中确定的利益相关方提供证据。我们将根据一组预定的纳入标准,在两个不同的阶段(标题,摘要和全文)对已识别和检索到的文章进行筛选,并在每个级别进行一致性检查,以确保可以使标准生效。然后,我们将提取与行为或影响与测得的结果之间的因果联系有关的详细信息,以及有关文章和研究的描述性信息,并将数据输入到交互式系统地图数据库中。我们将在证据图集(交互式地图图)上可视化该数据库,并使用热图(重要变量的交叉列表,如矿物类型和研究影响)识别知识差距和聚类。如果证据基础明确,我们将确定良好的研究实践,以支持研究人员选择最佳的研究设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号