期刊论文详细信息
JOURNAL OF ENVIRONMENTAL MANAGEMENT 卷:187
Design and performance evaluation of a 1000-year evapotranspiration-capillary surface barrier
Article
Zhang, Zhuanfang Fred1  Strickland, Christopher E.1  Link, Steven O.2 
[1] Pacific Northwest Natl Lab, Earth Syst Sci Div, Hydrol Grp, Richland, WA 99352 USA
[2] Confederated Tribes Umatilla Indian Reservat, Dept Nat Resources, Energy & Environm Sci Program, 46411 Timine Way, Pendleton, OR 97801 USA
关键词: Surface cover;    Nuclear waste;    Infiltration control;    Waste isolation;   
DOI  :  10.1016/j.jenvman.2016.11.007
来源: Elsevier
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【 摘 要 】

Surface barrier technology is used to isolate radioactive waste and to reduce or eliminate recharge water to the waste zone for 1000 years or longer. However, the design and evaluation of such a barrier is challenging because of the extremely long design life. After establishing a set of design and performance objectives, a package of design solutions was developed for 1000-year surface barriers over nuclear waste sites. The Prototype Hanford Barrier (PHB) was then constructed in 1994 in the field over an . existing waste site as a demonstration. The barrier was tested to evaluate surface-barrier design and performance at the field scale under conditions of enhanced and natural precipitation and of no vegetation. The monitoring data demonstrate that the barrier satisfied nearly all objectives in the past two decades. The PHB far exceeded the Resource Conservation and Recovery Act criteria, functioned in Han ford's semiarid climate, limited drainage to well below the 0.5 mm yr(-1) performance criterion, limited runoff, and minimized erosion and bio-intrusion. Given the two-decade record of successful performance and consideration of the processes and mechanisms that could affect barrier stability and hydrology in the future, the results suggest the PHB is very likely to perform for its 1000-year design life. This conclusion is based on two assumptions: (1) the exposed subgrade receives protection against erosion and (2) institutional controls prevent inadvertent human activity at the barrier. The PHB design can serve as the basis for site-specific barriers over waste sites containing underground nuclear waste, uranium mine tailings, and hazardous mine waste. (C) 2016 Elsevier B.V. All rights reserved.

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