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Drying of fecal sludge in 3D laminate enclosures for urban waste management

机译:城市废物管理3D层压盒中粪便污泥的干燥

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Laminated hydrophobic membranes have been proposed as liners for container-based sanitation systems in developing countries. The laminate allows drying of fecal sludge, which might significantly reduce the frequency of container emptying, while containing liquids and solids. While previous laboratory tests demonstrated rapid drying of fecal sludge or water retained in laminates, experiments did not assess the effects of system dimension or scale on performance. In this study fecal sludge drying and water evaporation were evaluated in 3D laminate boxes (decimeter scale) or 3D laminate-lined 40 L and 55 gallon drums (meter scale) that arc prototypes of toilet containers for field application. A stagnant film model described fecal sludge drying and water evaporation in the laminate boxes and laminate-lined drums well. The effective diffusion length (lambda) for the laminate was fitted in all systems and increased with system dimension and scale: lambda increased by a factor of 1.4 from 1D decimeter-scale envelopes to 3D decimeter-scale boxes, and by a factor of 13-1.7 from 3D decimeter-scale boxes to 3D meter-scale drums. The longer lambda with increasing dimension and scale is likely due to nonuniform temperature and relative humidity in the air outside the laminate and nonuniform temperature within the laminate. Using best-fit lambda for the laminate-lined 40 L and 55 gallon drum experiments conducted in a controlled laboratory, drying was predicted for an 11-day field experiment. Although the air temperature and relative humidity varied significantly in the field tests from -1 T to 26 degrees C and 35% to 97%, respectively, the stagnant film model predicted drying over the 11-day period reasonably well with total error = 13% using 24-h average air temperature and relative humidity. Drying of fecal sludge in laminate-lined drums in the field might be adequately described with a stagnant film model using daily-average weather conditions, if wind speeds are low. (C) 2019 The Authors. Published by Elsevier B.V.
机译:已提出层压疏水膜作为发展中国家的集装箱卫生系统的衬垫。层压材料允许干燥粪便污泥,这可能显着降低容器排空的频率,同时含有液体和固体。虽然以前的实验室测试证明了粪便污泥或保留在层压板中的水的快速干燥,但实验并未评估系统尺寸或规模对性能的影响。在该研究中,在3D层压盒(减速度)或3D层压衬里40L和55加仑滚筒(仪表秤)中评估粪便污泥干燥和水蒸发,用于现场应用的卫生间容器的电弧原型。停滞薄膜模型描述了层压盒和层压型鼓中的粪便污泥干燥和水蒸发。层压板的有效扩散长度(Lambda)在所有系统中安装并随系统尺寸和规模增加:Lambda从1D减距表到3D减距框中增加1.4倍,并达到13倍 - 1.7从3D减距框到3D米级鼓。具有增加的尺寸和尺度的λ越长,可能是由于层压板内的层压板外的空气中的不均匀温度和相对湿度,并且在层压板内的不均匀温度。使用在受控实验室中进行的层压衬里40L和55加仑滚筒实验使用最适合的Lambda,预计干燥是为11天的田间实验。虽然空气温度和相对湿度在-1 t至26摄氏度的现场测试中显着变化,但分别在35%至97%的情况下,停滞薄膜模型在11天的时间内完全干燥,总误差<= 13 %使用24-H平均空气温度和相对湿度。如果风速低,则使用每日平均天气条件,可以使用停滞薄膜模型充分描述粪上的衬里滚筒中的粪便污泥的干燥。 (c)2019年作者。由elsevier b.v出版。

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