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LAGOON SEALING AND FILTER CAKES

机译:泻湖密封和滤饼

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A recent study presented a two-layer (liner and seal) unsaturated model to predict the flux from lagoons. The model predicted that flux is not related to liner thickness, is only weakly related to the saturated hydraulic conductivity of the liner, and is primarily controlled by the hydraulic conductivity of the seal. In this study, we evaluated those predictions by monitoring the flux of dairy waste through eight intact soil monoliths (silt loam) with large macropores. After applying a 2.3 m column of dairy waste (2.3% total solids) to the top of the monoliths, a seal developed within 2 d, and the leakage continued to decrease for the remaining 83 d of the test. The average leakage rate after 85 d was 0.70 mm d -1 , and an average of 218 mm of waste infiltrated into the monoliths. Small holes drilled into the sides of the monoliths, just below the soil surface, failed to fill with liquid, which demonstrated that the soil was unsaturated and therefore was not limiting the leakage rate. The amount of waste required to initially seal the monoliths did not correlate to the seal growth rate, which also implies that the soil contributed little to the seal growth rate or leakage rate after seal development. A plot of cumulative waste infiltration versus the square root of time showed a strong linear relationship (R 2 = 0.996), which suggests that the phenomenon of dairy waste sealing a soil is analogous to filter cake growth. Long-term studies with other soil and waste types are needed to confirm the findings of this research
机译:最近的研究提出了一个两层(衬里和密封)不饱和模型来预测泻湖的通量。该模型预测通量与衬套厚度无关,仅与衬套的饱和水力传导率弱相关,并且主要由密封件的水力传导率控制。在这项研究中,我们通过监测乳制品废物通过八个完整的带有大孔的完整土壤整料(粉壤土)的通量来评估这些预测。在将2.3 m的乳制品废料柱(总固体含量为2.3%)施加到整体顶部之后,在2 d内形成密封,并且在剩余的83 d的测试中,泄漏量继续减少。 85 d后的平均泄漏率为0.70 mm d s -1 ,并且平均有218 mm的废物渗入整料。仅在土壤表面以下的整体结构侧面钻出的小孔未能充满液体,这表明土壤是不饱和的,因此没有限制泄漏率。最初密封整料所需的废物量与密封的增长率不相关,这也意味着在密封发展之后,土壤对密封的增长率或泄漏率的贡献很小。累积废物渗透量与时间平方根的关系图显示出很强的线性关系(R 2 = 0.996),这表明乳制品废物封闭土壤的现象类似于滤饼的生长。需要对其他土壤和废物类型进行长期研究,以确认这项研究的结果

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