Rheological behaviour of coal-water mixtures. 1. Effects of coal type, loading and particle size
Factors affecting the rheological characteristics of coal-water mixture (CWM) were investigated, including the properties of the coal, the volume fraction of solids and the mean size and size distribution of the coal particles. The apparent viscosity was measured with a Brookfield viscometer, and th...
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Published in | Fuel (Guildford) Vol. 74; no. 8; pp. 1220 - 1225 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.08.1995
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Abstract | Factors affecting the rheological characteristics of coal-water mixture (CWM) were investigated, including the properties of the coal, the volume fraction of solids and the mean size and size distribution of the coal particles. The apparent viscosity was measured with a Brookfield viscometer, and the non-Newtonian properties based on the power-law model were investigated using a Haake rotational viscometer at shear rates up to 512 s
−1. The results showed that the slurry exhibited shear thinning, i.e. pseudoplastic behaviour, and that it became more viscous as the mean particle size decreased, but less viscous with decreasing equilibrium moisture content. The degree of pseudoplasticity increased with increasing coal content and with decreasing mean size of particles. The mixing of coarse and fine coal particles was found to be very effective in obtaining mixtures characterized by high solids content and low viscosity. CWM viscosity was lowest when the blending ratio of fines was ∼0.35, irrespective of the mean-size ratio. The particle size distribution which gives high fluidity also appears to enhance the stability of the suspension. |
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AbstractList | Factors affecting the rheological characteristics of coal-water mixture (CWM) were investigated, including the properties of the coal, the volume fraction of solids and the mean size and size distribution of the coal particles. The apparent viscosity was measured with a Brookfield viscometer, and the non-Newtonian properties based on the power-law model were investigated using a Haake rotational viscometer at shear rates up to 512 s
−1. The results showed that the slurry exhibited shear thinning, i.e. pseudoplastic behaviour, and that it became more viscous as the mean particle size decreased, but less viscous with decreasing equilibrium moisture content. The degree of pseudoplasticity increased with increasing coal content and with decreasing mean size of particles. The mixing of coarse and fine coal particles was found to be very effective in obtaining mixtures characterized by high solids content and low viscosity. CWM viscosity was lowest when the blending ratio of fines was ∼0.35, irrespective of the mean-size ratio. The particle size distribution which gives high fluidity also appears to enhance the stability of the suspension. |
Author | Shin, Dae-Hyun Roh, Nam-Sun Kim, Dong-Chan Kim, Jong-Duk |
Author_xml | – sequence: 1 givenname: Nam-Sun surname: Roh fullname: Roh, Nam-Sun organization: Fuel Research Team, Korea Institute of Energy Research, Taejon 305-343, Korea – sequence: 2 givenname: Dae-Hyun surname: Shin fullname: Shin, Dae-Hyun organization: Fuel Research Team, Korea Institute of Energy Research, Taejon 305-343, Korea – sequence: 3 givenname: Dong-Chan surname: Kim fullname: Kim, Dong-Chan organization: Fuel Research Team, Korea Institute of Energy Research, Taejon 305-343, Korea – sequence: 4 givenname: Jong-Duk surname: Kim fullname: Kim, Jong-Duk organization: Department of Chemical Engineering, Korea Advanced Institute of Science and Technology, Taejon 305-701, Korea |
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Title | Rheological behaviour of coal-water mixtures. 1. Effects of coal type, loading and particle size |
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