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Titlebook: Non-conventional Unit Operations; Solving Practical Is Alessandro Di Pretoro,Flavio Manenti Book 2020 The Author(s), under exclusive licens

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楼主: 气泡
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Gas-Solid Separationt chambers and cyclones. For a given separation efficiency the latter unit results to be much more compact than the former one and the accurate sizing procedure is discussed through a dedicated case study.
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Centrifugal Sedimentation centrifugal field allows for the solid deposition on the sedimenter wall and for a continuous clarified liquid removal. A multi-layered configuration, within the feasibility limits, enhances the separation effectiveness as shown in the design problem.
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Centrifugal Decantationl force instead of gravitational one can be employed. The centrifugal decanter design is based on a pressure balance and the outlet can be properly located in order to allow for a continuous operation.
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Membrane Separationsidered permeable or semi-permeable phase that selectively absorb and diffuse certain components. Even if the unit design procedure is case specific, it is nevertheless based on a compromise between the most severe operating conditions and the maximum allowed mechanical load as shown in the practical problem.
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2191-530X straightforward application example. The end of each chapter features a C++ code implementation to solve the ODE or nonlinear equations system using the BzzMath library..978-3-030-34571-6978-3-030-34572-3Series ISSN 2191-530X Series E-ISSN 2191-5318
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Pinch Technologyodynamic assessment followed by the network optimization according to the feasibility of the operation. The results thus obtained allow then the decision maker to select the optimal solution according the specific needs of the case under analysis.
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