...
首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Thin-layer sediment addition to an existing salt marsh to combat sea-level rise and improve endangered species habitat in California, USA
【24h】

Thin-layer sediment addition to an existing salt marsh to combat sea-level rise and improve endangered species habitat in California, USA

机译:薄层沉积物除了现有的盐沼,以打击海平面上升和改善加利福尼亚州的濒危物种栖息地

获取原文
获取原文并翻译 | 示例
           

摘要

Current tidal marsh elevations and their accretion rates are important predictors of vulnerability to sea-level rise. When tidal marshes are at risk, adaptation measures, such as sediment addition to increase elevations, can be implemented to prevent degradation and loss. In 2016, wildlife managers prescribed a thin-layer sediment addition of locally sourced dredged material from Anaheim Bay to mitigate plausible future impacts of sea-level rise to Seal Beach National Wildlife Refuge, an urbanized, subsiding, sediment limited, and low elevation tidal marsh in southern California, USA. In this study, our objectives were to determine how suspended sediment concentrations (SSC) and fluxes associated with sediment application affected an adjacent eelgrass bed and a more distant deep tidal channel at different time periods throughout the project and how sediment application affected tidal marsh elevation. Due to the sediment addition the tidal marsh elevation increased by 25.4 cm across 3.06 ha. Mean SSC levels at the eelgrass site increased from 4 mg/L during pre-augmentation to 16 mg/L during sediment application. SSC levels also increased up to 40 mg/L with the installation of sediment barriers. Winter storms during construction also had an influence on SSC, with an extreme storm event increasing SSC from 9 mg/L pre-storm levels to 16 mg/L during the storm. However, SSC at the deep site remained constant during all time periods with a mean of 7 mg/L. Our results show that little to zero sediment was exported out of Anaheim Bay during the study period, illustrating that any impacts were localized to the application area. These findings suggest that although long-range export of applied dredge material is unlikely from future thin-layer sediment application at this site, adjacent habitats could experience impacts if erosion control measures are not implemented effectively. Future projects will benefit from similar pre- and post-addition monitoring to establish the long-term efficacy of sea-level rise adaptation measures.
机译:目前的潮汐沼泽升级及其增值率是对海平面升高的脆弱性的重要预测因子。当潮汐沼泽有风险时,可以实施适应措施,例如增加升高的沉积物,以防止退化和损失。 2016年,野生动物管理人员规定了薄层沉积物,从阿纳海姆海湾加入局部采购的疏浚物料,以减轻海平面上涨的合理未来影响,以密封海滩国家野生动物避难所,城市化,消退,沉积物有限公司和低海拔潮汐沼泽在美国南加利福尼亚州。在这项研究中,我们的目标是确定与沉积物应用相关的悬浮沉积物浓度(SSC)和助熔剂影响了邻近的鳗草床以及在整个项目的不同时间段和更远的深潮气通道以及沉积物应用如何影响潮汐沼泽升降。由于沉积物,潮汐沼泽升高增加25.4厘米,横跨3.06公顷。在沉积物应用期间,鳗草地位点的平均SSC水平在预先升高至16mg / L期间增加到4mg / L. SSC水平也增加了40毫克/升,安装沉积物屏障。施工期间的冬季风暴也对SSC产生了影响,极端风暴事件在风暴期间将SSC从9毫克/升预风暴水平增加到16毫克/升。然而,在均时间段期间,深部位点处的SSC保持恒定,其平均值为7 mg / L.我们的结果表明,在研究期间,在Anaheim Bay出口了Zero沉积物一点,说明任何撞击都将其定位于应用领域。这些研究结果表明,虽然在本网站的未来薄层沉积物应用中,应用疏通材料的远程出口不太可能,但如果没有有效实施侵蚀控制措施,相邻的栖息地可能会受到影响。未来的项目将受益于类似的预先和后期监测,以确定海平面上升适应措施的长期疗效。

著录项

相似文献

  • 外文文献
  • 中文文献
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