Modelling microalgae biofouling on porous buildings materials: a novel approach

被引:3
|
作者
Quagliarini, Enrico [1 ]
Gregorini, Benedetta [1 ]
D'Orazio, Marco [1 ]
机构
[1] Univ Politecn Marche, Dept Construct Civil Engn & Architecture DICEA, Via Brecce Bianche, I-60131 Ancona, Italy
关键词
Microalgae growth; Facades biodeterioration; Avrami's model; Logistic function; Porous building materials; ALGAL COLONIZATION; GROWTH; BIORECEPTIVITY; ROUGHNESS; KINETICS; FACADES; SURFACE;
D O I
10.1617/s11527-022-01993-x
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A correct assessment of microalgae growth on porous building materials (i.e.: fired bricks, sandstones and limestones) can provide a useful tool for researchers and practitioners. In fact, it may help predicting the biofouling damage extension and it can assist the experts in a correct planning of maintenance interventions to limit costs. The literature regarding such issue outlined the Avrami's model as the most recurrent one, even considering the influence of biocidal treatments on the substrate. However, it seems to have some limitations when the growth is very fast or, conversely, when the latency time is extended over the time. Therefore, a different modelling approach is here proposed, by using the logistic function (extensively used i.e. in population growth). Results reveal that the logistic function seems to succeed in better modelling the available experimental data. Moreover, it seems to overcome the limits of the Avrami's model, as well as to be less influenced by the main drivers of microalgae growth, such as porosity and roughness of the substrate, biocides treatments and environmental conditions (temperature).
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Modelling microalgae biofouling on porous buildings materials: a novel approach
    Enrico Quagliarini
    Benedetta Gregorini
    Marco D’Orazio
    Materials and Structures, 2022, 55
  • [2] In vitro modelling of biofouling of dental composite materials
    Walker, JT
    Bradshaw, DJ
    Marsh, PD
    Gangnus, B
    JOURNAL OF DENTAL RESEARCH, 1998, 77 : 948 - 948
  • [3] Modelling dynamic compaction of porous materials with the overstress approach
    Partom, Y.
    18TH APS-SCCM AND 24TH AIRAPT, PTS 1-19, 2014, 500
  • [4] A novel approach to modelling of flow in fractured porous medium
    Sembera, Jan
    Maryska, Jiri
    Kralovcova, Jirina
    Severyn, Otto
    KYBERNETIKA, 2007, 43 (04) : 577 - 588
  • [5] Modelling of rigid-frame porous materials - A simple approach
    Brennan, M.J.
    To, W.M.
    American Society of Mechanical Engineers, Noise Control and Acoustics Division (Publication) NCA, 2000, 27 : 479 - 485
  • [6] Vibro-acoustics of porous materials - waveguide modelling approach
    Darula, R.
    Sorokin, S.
    13TH INTERNATIONAL CONFERENCE ON MOTION AND VIBRATION CONTROL (MOVIC 2016) AND THE 12TH INTERNATIONAL CONFERENCE ON RECENT ADVANCES IN STRUCTURAL DYNAMICS (RASD 2016), 2016, 744
  • [7] Controlling biofouling by a kosmotrope approach for surfaces and materials
    Bandyopadhyay, Debjyoti
    Sejwal, Preeti
    Prashar, Deepali
    Luk, Yan Yeung
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2010, 240
  • [8] A novel effective medium theory for modelling the thermal conductivity of porous materials
    Gong, Lunlun
    Wang, Yonghong
    Cheng, Xudong
    Zhang, Ruifang
    Zhang, Heping
    International Journal of Heat and Mass Transfer, 2014, 68 : 295 - 298
  • [9] A novel effective medium theory for modelling the thermal conductivity of porous materials
    Gong, Lunlun
    Wang, Yonghong
    Cheng, Xudong
    Zhang, Ruifang
    Zhang, Heping
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2014, 68 : 295 - 298
  • [10] Modelling of porous materials evolution
    Bernard, D
    Vignoles, GL
    Heintz, JM
    X-RAY TOMOGRAPHY IN MATERIAL SCIENCE, 2000, : 177 - 192