Fines deposition on pulp fibers and fines flocculation in a turbulent-flow loop

被引:14
|
作者
van de Ven, TGM [1 ]
Qasaimeh, MA
Parish, J
机构
[1] McGill Univ, Dept Chem, Pulp & Paper Res Ctr, Montreal, PQ H3A 2A7, Canada
[2] McGill Univ, Dept Chem Engn, Pulp & Paper Res Ctr, Montreal, PQ H3A 2A7, Canada
[3] Ecole Polytech, Dept Genie Chim, Montreal, PQ H3T 3A7, Canada
关键词
D O I
10.1021/ie0499456
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Fines retention is a combination of fines deposition on fibers and fines flocculation, followed by entrapment of fines floes in a forming sheet. In the laboratory, fines flocculation is often studied in a dynamic drainage jar (DDJ) to mimic the hydrodynamic shear on a paper machine. However, the shear in a DDJ is very different from the shear on a machine. A flow geometry that might approximate shear in a headbox of a paper machine better is high Reynolds number flow through a tube because many headboxes contain a series of parallel pipes. We studied the deposition of fines and the flocculation of fines in a flow loop, with flow velocities on the order of a few meters per sceond, using a poly(ethylene oxide)-cofactor retention aid system. We found that fines deposition and flocculation follow the predictions of kinetic theories of Langmuir and Smoluchowski rather well despite the fact that fines are highly polydisperse. Fines were found to be flocculated even in the absence of a retention aid probably because of mechanical entanglements of fibrillar fines. Adding retention aids resulted in further aggregation. The detachment and floe breakup rates were found to be rather high, and extrapolation to papermaking conditions leads to the conclusion that fines deposition and flocculation are negligible in a headbox, at least for the retention aid system considered. This contradicts findings from DDJ experiments, which usually show appreciable fines retention. Perhaps a flow loop better represents flow conditions in a headbox, and a DDJ better represents flow conditions during drainage and formation.
引用
收藏
页码:1291 / 1295
页数:5
相关论文
共 50 条
  • [31] Deposition fraction of ellipsoidal fibers in a turbulent duct flow
    Tavakol, M. M.
    Abouali, O.
    Yaghoubi, M.
    Ahmadi, G.
    PROCEEDINGS OF THE EIGHTH INTERNATIONAL SYMPOSIUM ON TURBULENCE HEAT AND MASS TRANSFER (THMT-15), 2015, : 575 - 578
  • [32] Developing Techniques for Closed-Loop-Recycling Soda-Lime Glass Fines through Robotic Deposition
    Sparre-Petersen, Maria
    Hnidkova, Simona
    ARTS, 2023, 12 (04)
  • [33] MASS-TRANSFER IN A PULSATING TURBULENT-FLOW WITH DEPOSITION ONTO FURROWED WALLS
    STAIRMAND, JW
    BELLHOUSE, BJ
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1985, 28 (07) : 1405 - 1408
  • [34] Concentration of pulp fibers in 3D turbulent channel flow
    Dong, S
    Feng, X
    Salcudean, M
    Gartshore, I
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2003, 29 (01) : 1 - 21
  • [35] DEPOSITION OF AEROSOL-PARTICLES FROM TURBULENT-FLOW ONTO ROUGH PIPE WALL
    ELSHOBOKSHY, MS
    ISMAIL, IA
    JOURNAL OF ENGINEERING SCIENCES, 1979, 5 (02): : 147 - 158
  • [36] DEPOSITION OF AEROSOL-PARTICLES FROM TURBULENT-FLOW ONTO ROUGH PIPE WALL
    ELSHOBOKSHY, MS
    ISMAIL, IA
    ATMOSPHERIC ENVIRONMENT, 1980, 14 (03) : 297 - 304
  • [37] RATES OF PARTICLE DEPOSITION FROM AQUEOUS SUSPENSIONS IN TURBULENT-FLOW - A COMPARISON OF THEORY WITH EXPERIMENT
    TURNER, CW
    CHEMICAL ENGINEERING SCIENCE, 1993, 48 (12) : 2189 - 2195
  • [38] MODELING THE FLOW AND THE DEPOSITION OF FILLERS IN PACKED-BEDS OF PULP FIBERS
    ALJABARI, M
    VANHEININGEN, ARP
    VANDEVEN, TGM
    JOURNAL OF PULP AND PAPER SCIENCE, 1994, 20 (09): : J249 - J253
  • [39] Orientation, distribution, and deposition of elongated, inertial fibers in turbulent channel flow
    Marchioli, Cristian
    Fantoni, Marco
    Soldati, Alfredo
    PHYSICS OF FLUIDS, 2010, 22 (03) : 1 - 14
  • [40] Effect of Flow Velocity on Clogging Induced by Coal Fines in Saturated Proppant Packs: A Transition from Surface Deposition to Bridging
    Huang, Fansheng
    Wang, Fengbin
    Sang, Shuxun
    Liu, Shiqi
    You, Zhenjiang
    ACS OMEGA, 2024, 9 (29): : 32066 - 32079