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On Assessing Risks to Fish Habitats and Populations Associated with a Transportation Corridor for Proposed Mine Operations in a Salmon-rich Watershed

机译:关于评估与鲑鱼中矿井业务相关的捕鱼栖息地和群体的风险

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摘要

Natural resource extraction in large undeveloped areassuch as the Bristol Bay watershed in Southwest Alaskaoften necessitates construction of roads that contribute substantial environmental risks. Herein, we attempt to address risks from a proposed mine transportation corridor in a virtually roadless watershed that crosses important salmon streams and rivers. The Bristol Bay watershed supports the largest sockeye salmon fishery in the world. A proposed 138km permanent access road would connect a porphyry copper/gold deposit to a deep-water port. Of 64 potential stream crossings, salmonid spawning migrations may be impeded by culverts at 36 crossings, 32 of which contain restricted upstream habitat. After cessation of mine operations, assuming typical maintenance practices, 10 or more of the 32 streams with restricted upstream habitat would likely be entirely or partly blocked at any time. Consequently, salmon passageand ultimately productionwould be reduced in these streams, and they would likely not be able to support long-term populations of resident species. Additional long-term risks associated with operation of the road include filling or alteration of National Wetland Inventory aquatic habitats; spills of highly toxic xanthate or cyanide due to truck accidents; and reduced habitat quality due to dust production from traffic. We discuss our methodology, and information needs, in the context of Environmental Impact Statements that set the stage for decisions regarding future mining projects.
机译:大型未开发郊区的自然资源提取,以阿拉斯加州西南部的布里斯托尔湾流域需要建造贡献大量环境风险的道路。在此,我们试图在几乎无途径的流域中解决拟议的矿山运输走廊的风险,这些流域越过重要的三文鱼溪流和河流。布里斯托尔湾流域支持世界上最大的红鲑鱼渔业。提出的138公里的永久性通道将将斑岩铜/金矿床连接到深水港口。在64个潜在的流横线中,鲑鱼产卵迁移可以被抑制在36次交叉处阻抗,其中32个含有限制的上游栖息地。在停止矿井操作之后,假设典型的维护实践,32个具有限制上游栖息地的32个溪流中的10个或更多可能完全或部分地阻止。因此,鲑鱼Passageand最终生产在这些流中可以减少,并且它们可能无法支持居民物种的长期群体。与道路运营相关的额外长期风险包括填补或改变国家湿地库存水生栖息地;由于卡车事故,捕获高度毒性的黄原酸盐或氰化物;由于交通的灰尘产生,栖息地质量降低。我们讨论了我们在环境影响陈述的背景下讨论了我们的方法,信息需求,该陈述设定了关于未来采矿项目的决策阶段的阶段。

著录项

  • 来源
    《Environmental Management》 |2019年第1期|107-126|共20页
  • 作者

    Kravitz Michael; Blair Greg;

  • 作者单位

    US EPA Off Res & Dev Natl Ctr Environm Assessment MS A-110 26W Martin Luther King Dr Cincinnati OH 45268 USA;

    ICF Int 1200 6th Ave Suite 1800 Seattle WA 98101 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Access road; Mining; Salmonids; Fish habitats; Risks; Stream crossings;

    机译:通道道路;采矿;鲑鱼;鱼栖息地;风险;溪流交叉;
  • 入库时间 2022-08-18 21:49:15

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