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20 years performance measurements of a landfill cover system with components constructed from pre-treated dredged sediments

机译:垃圾填埋场覆盖系统的20年性能测量,其组件由预处理的疏dr沉积物构成

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摘要

The water balance and effectiveness of a landfill cover containing a liner from fine-grained dredged material ('METHA-material') and a drainage layer from sandy dredged material ('METHA-sand') from the Port of Hamburg (Northern Germany) was investigated for 20 years using two test fields (lysimeters), each 500 m(2) in size. The layering within the standard design test field (FS) is identical to the layering of the cover on the landfill, whereas the alternative design test field (FA) was designed to provoke desiccation of the liner. The setup abstained from continuous side walls cutting through the liners in order to allow for material properties representative for the landfill cover, at the cost of possible minor lateral inflows or outflows, which were, however, considered negligible. By example of the lysimeter FA the risk of desiccation-induced failure of a liner from METHA-material under the given climate could be shown. In contrast, the discharges and hydro-chemical parameters measured for the lysimeter FS indicate continuous high efficiency of the liner until today. The average discharge below the liner was 14.9 mm/yr. The entire cover contributes to the good liner performance. Reason are (1) the low hydraulic conductivity of the liner (5 x 10(-10) m/s) and its large thickness (1.5 m); (2) the increased stresses on the liner due to the 2.5 m thick overlaying cover; (3) the 1.0 m thick drainage layer from slowly-draining METHA-sand, allowing for a continuous nearly water-saturated fringe above the liner; and (4) the sufficient amount of plant available water in the recultivation layer. (C) 2019 Elsevier Ltd. All rights reserved.
机译:包含来自汉堡港(德国北部)的细颗粒疏material材料(“ METHA-material”)的衬里和含沙疏散材料(“ METHA-sand”)的排水层的垃圾掩埋场的水平衡和有效性使用两个测试场(测渗仪)进行了20年的调查,每个测试场的大小为500 m(2)。标准设计测试区域(FS)内的分层与垃圾填埋场的覆盖层相同,而替代设计测试区域(FA)旨在引起内衬干燥。为了使代表填埋场的材料具有一定的性能,从连续的侧壁切穿衬里时就放弃了这种设置,但代价是可能会有少量的横向流入或流出,但是这些流入或流出可以忽略不计。通过溶渗仪FA的例子,可以显示在给定的气候下,由METHA材料引起的衬里干燥引起的失效风险。相比之下,测渗仪FS的排放量和水化学参数表明衬板的效率一直持续到今天。衬板下方的平均排放量为14.9毫米/年。整个盖子有助于良好的衬纸性能。原因是(1)衬套的水力传导率低(5 x 10(-10)m / s),衬套厚度大(1.5 m); (2)由于2.5 m厚的覆盖层,衬板上的应力增加; (3)从缓慢排水的METHA砂中挖出1.0 m厚的排水层,允许在衬管上方连续连续充满水的条纹; (4)在复垦层中有足够量的植物可用水。 (C)2019 Elsevier Ltd.保留所有权利。

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