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Environmental Dredging Residual Generation and Management

机译:环境疏Res残余物的产生与管理

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The presence and magnitude of sediment contamination remaining in a completed dredge area can often dictate the success of an environmental dredging project. The need to better understand and manage this remaining contamination, referred to as postdredging residuals, has increasingly been recognized by practitioners and investigators. Based on recent dredging projects with robust characterization programs, it is now understood that the residual contamination layer in the postdredging sediment comprises a mixture of contaminated sediments that originate from throughout the dredge cut. This mixture of contaminated sediments initially exhibits fluid mud properties that can contribute to sediment transport and contamination risk outside of the dredge area. This article reviews robust dredging residual evaluations recently performed in the United States and Canada, including the Hudson River, Lower Fox River, Ashtabula River, and Esquimalt Harbour, along with other projects. These data better inform the understanding of residuals generation, leading to improved models of dredging residual formation to inform remedy evaluation, selection, design, and implementation. Data from these projects confirm that the magnitude of dredging residuals is largely determined by site conditions, primarily in situ sediment fluidity or liquidity as measured by dry bulk density. While the generation of dredging residuals cannot be avoided, residuals can be successfully and efficiently managed through careful development and implementation of site-specific management plans. Integr Environ Assess Manag 2018;14:335-343. (c) 2018 The Authors. Integrated Environmental Assessment and Management Published by Wiley Periodicals, Inc. on behalf of Society of Environmental Toxicology & Chemistry (SETAC)
机译:完整的疏edge区中残留的沉积物污染物的存在和程度通常可以指示环境疏project工程的成功。从业人员和研究人员日益认识到有必要更好地理解和管理这种残留污染,即所谓的后挖残留物。基于具有强大特征程序的最新疏projects项目,现在可以理解,疏d后沉积物中的残留污染物层包括污染污染物的混合物,这些污染物来自整个疏edge切口。受污染的沉积物的混合物最初显示出流体泥浆的特性,这些特性可能会导致泥沙在疏edge区域外的运输和污染风险。本文回顾了最近在美国和加拿大(包括哈德逊河,下福克斯河,阿什塔比拉河和埃斯奎马尔特港)进行的强有力的挖泥残余评估,以及其他项目。这些数据可以更好地告知人们对残渣生成的理解,从而可以改进疏residual残渣形成的模型,从而为补救措施评估,选择,设计和实施提供依据。这些项目的数据证实,疏residual残余物的大小主要取决于工地条件,主要是现场沉积物的流动性或流动性(以干堆积密度衡量)。尽管无法避免疏residual残渣的产生,但可以通过精心制定和实施特定于站点的管理计划来成功,有效地管理残渣。 Integr环境评估管理报告2018; 14:335-343。 (c)2018作者。 Wiley Periodicals,Inc.代表环境毒理化学协会(SETAC)发布的综合环境评估与管理

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