Dissolution effects on specific surface area, particle size, and porosity of Pentelic marble

被引:14
|
作者
Orkoula, MG
Koutsoukos, PG
机构
[1] Univ Patras, Dept Chem Engn, GR-26110 Patras, Greece
[2] Univ Patras, Inst Chem Engn & High Temp Chem Proc, GR-26110 Patras, Greece
关键词
Pentelic marble; dissolution; porosity; surface area; particle size;
D O I
10.1006/jcis.2001.7607
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Dissolution of natural stone such as marble is not limited to its surface. The porous structure, known to play an important role in stone decay, is also affected by the conditions of dissolution. In the present work, the changes in pore size distribution of Pentelic marble particles accompanying chemical dissolution in undersaturated solutions and at alkaline pH 8.25 were investigated. The specific surface area and the mesopore distribution of the Pentelic marble tested showed a pronounced decrease to very low values. On the other hand, the sizes of macropores exhibited a tendency to increase with the extent of dissolution due either to dissolution in the interior of the pores or to fusion of small pores into larger. Furthermore, the number of small particles decreased significantly, reaching complete disappearance, depending on the extent of dissolution. At the same time, the relative number of particles of intermediate size increased. (C) 2001 Academic Press.
引用
收藏
页码:483 / 488
页数:6
相关论文
共 50 条
  • [31] POROSITY EFFECTS ON PARTICLE-SIZE DETERMINATION VIA SEDIMENTATION
    HIETALA, SL
    SMITH, DM
    POWDER TECHNOLOGY, 1989, 59 (02) : 141 - 144
  • [32] Dehydration effect on pore size, porosity, specific surface area, and fractal parameters of shale rocks: USAXS study
    Lee, Sungwon
    Klingler, Robert J.
    Ilavsky, Jan
    Winans, Randall E.
    Fischer, Timothy B.
    McCarty, Douglas K.
    Wigand, Marcus O.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2014, 248
  • [33] Biomass char particle surface area and porosity dynamics during gasification
    Wu, Ruochen
    Beutler, Jacob
    Price, Cameron
    Baxter, Larry L.
    FUEL, 2020, 264
  • [34] EFFECT OF PARTICLE SHAPE ON POROSITY AND SURFACE AREA OF TRICKLING FILTER MEDIA
    SCHROEPFER, GJ
    SEWAGE AND INDUSTRIAL WASTES, 1951, 23 (11): : 1356 - 1366
  • [35] Comparison of Subsieving Techniques Based on the Relation of Particle Size and Specific Surface Area in Mineral Processing
    Kademli, Murat
    PARTICULATE SCIENCE AND TECHNOLOGY, 2013, 31 (04) : 326 - 331
  • [36] Characterization of Commercial Metal Oxide Nanomaterials: Crystalline Phase, Particle Size and Specific Surface Area
    Bushell, Michael
    Beauchemin, Suzanne
    Kunc, Filip
    Gardner, David
    Ovens, Jeffrey
    Toll, Floyd
    Kennedy, David
    Nguyen, Kathy
    Vladisavljevic, Djordje
    Rasmussen, Pat E.
    Johnston, Linda J.
    NANOMATERIALS, 2020, 10 (09) : 1 - 19
  • [37] Influence of particle size and specific surface area on the pozzolanic activity of residual rice husk ash
    Cordeiro, Guilherme Chagas
    Toledo Filho, Romildo Dias
    Tavares, Luis Marcelo
    Rego Fairbairn, Eduardo de Moraes
    Hempel, Simone
    CEMENT & CONCRETE COMPOSITES, 2011, 33 (05): : 529 - 534
  • [38] Specific surface area of mannitol rather than particle size dominant the dissolution rate of poorly water-soluble drug tablets: A study of binary mixture
    Zhang, Ke
    Qian, Shuai
    Liu, Zhenjing
    Liu, Huina
    Lin, Zezhi
    Heng, Weili
    Gao, Yuan
    Zhang, Jianjun
    Wei, Yuanfeng
    INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2024, 660
  • [39] Particle size and surface area effects on explosibility using a 20-L chamber
    Harris, Marcia L.
    Sapko, Michael J.
    Zlochower, Isaac A.
    Perera, Inoka E.
    Weiss, Eric S.
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2015, 37 : 33 - 38
  • [40] Tokamak dust particle size and surface area measurement
    Carmack, WJ
    Smolik, GR
    Anderl, RA
    Pawelko, RJ
    Hembree, PB
    FUSION TECHNOLOGY, 1998, 34 (03): : 604 - 608