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垃圾分类背景下易腐有机垃圾资源化处理模式探讨 被引量:9
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作者 焦敏娜 任秀娜 +3 位作者 王权 李荣华 木开石 张增强 《环境卫生工程》 2022年第1期28-35,40,共9页
随着我国经济的持续快速发展和人民生活水平不断提高,城市生活垃圾的产生量越来越大,易腐有机垃圾作为居民生活垃圾的主体部分,在分类收集的大背景下,其无害化处理与资源化利用已经成为生活垃圾处理的重点和难点。垃圾分类是在粗放式垃... 随着我国经济的持续快速发展和人民生活水平不断提高,城市生活垃圾的产生量越来越大,易腐有机垃圾作为居民生活垃圾的主体部分,在分类收集的大背景下,其无害化处理与资源化利用已经成为生活垃圾处理的重点和难点。垃圾分类是在粗放式垃圾回收的模式出现较大诟病时顺势提出的一个全新概念,是在传统垃圾收集方式基础上的改革创新,是垃圾能否得到有效处置的基础。围绕易腐有机垃圾的处理现状,深度剖析了现存处理方式的优劣,展望了易腐有机垃圾无害化、资源化和减量化处理的发展趋势,以期为资源的可持续利用与发展提供理论支持。 展开更多
关键词 易腐有机垃圾 资源化利用 垃圾分类 厌氧发酵
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Kelvin-Helmholtz instability with mass transfer through porous media: Effect of irrotational viscous pressure
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作者 awasthi mukesh kumar 《Journal of Hydrodynamics》 SCIE EI CSCD 2014年第4期624-636,共13页
This paper studies the effect of the irrotational viscous pressure on Kelvin-Helmholtz instability of the plane interface of two viscous and incompressible fluids in a fully saturated porous media with mass and heat t... This paper studies the effect of the irrotational viscous pressure on Kelvin-Helmholtz instability of the plane interface of two viscous and incompressible fluids in a fully saturated porous media with mass and heat transfers across the interface. In the earlier work, the instability of the plane interface of two viscous and streaming miscible fluids through porous media was studied by assuming that the motion and the pressure are irrotational and the viscosity enters the normal stress balance. This theory is called the viscous potential flow theory. Here, we use another irrotational theory in which the discontinuities in the irrotational tangential velocity and shear stress are eliminated in the global energy balance by considering viscous contributions of the irrotational pressure. The Darcy-Brinkman model is used in the investigation and the stability criterion is formulated in terms of a critical value of the relative velocity. It is observed that the heat and mass transfer has a destabilizing effect on the stability of the system while the irrotational shearing stresses stabilize the system. 展开更多
关键词 Kelvin-Helmholtz stability porous medium irrotational viscous pressure heat and mass transfer
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