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Percolation segregation of multi-size and multi-component particulate materials
Authors:Anjani K Jha  Virendra M Puri
Affiliation:a Graduate Research Assistant, Materials Research Institute, Agricultural and Biological Engineering Department, 249 Agricultural Engineering Building, Pennsylvania State University, University Park, PA 16803, United States
b Distinguished Professor, Materials Research Institute, Agricultural and Biological Engineering Department, 229 Agricultural Engineering Building, Pennsylvania State University, United States
Abstract:Percolation segregation of fines in multi-size and multi-component mixtures was quantified and compared with continuous mixtures. The quantification and comparison of percolated fines in binary, ternary, and quaternary vs. continuous mixtures was done at two strain rates of 0.25 and 0.5 Hz for both urea (spherical-shaped) and potash (angular-shaped). For this study, three coarse and three fines sizes for potash and three coarse and two fines sizes for urea were used for preparation of multisize and multi-component mixtures. Binary mixture samples were prepared from three mean coarse sizes with their corresponding three and two fines sizes for potash and urea, respectively. Ternary mixture samples were prepared from two coarse sizes at a time from the three available coarse size particles with their corresponding fines one each from three and two fines sizes available for potash and urea, respectively. Quaternary mixture samples were prepared from three coarse sizes with their corresponding two fine sizes (1850 μm, and 1550 μm) for potash and urea, respectively. The percent segregated fines mass and the normalized segregation rate (NSR) of fines decreased with the increase in number of coarse size components for a given fines size (from binary to quaternary), where NSR is defined as the amount of fines percolated from initial fines present in the binary mixture based on total time of operation kg/kg-h. The NSR decreased with the increase in order of mixtures, i.e., binary > ternary > quaternary at two strain rates of 0.25 Hz and 0.5 Hz (p < 0.05). Based on results, it was found that the segregation in continuous mixtures can be predicted by studying the multi-size mixtures.
Keywords:Percolation segregation  Strain  Strain rate  Particulate material  Normalized  Segregation rate (NSR)  Binary  Multi-size  Continuous mixtures
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