429
Views
17
CrossRef citations to date
0
Altmetric
Selected Papers from the 19th International Drying Symposium (IDS 2014), Part 2

Reaction Engineering Approach (REA) to Modeling Drying Problems: Recent Development and Implementations

&

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Chang Chen, Shrinivasa Upadhyaya, Ragab Khir & Zhongli Pan. (2022) Simulation of walnut drying under hot air heating using a nonequilibrium multiphase transfer model. Drying Technology 40:5, pages 987-1001.
Read now
Kieu Hiep Le, Thi Thu Hang Tran, Abdolreza Kharaghani & Evangelos Tsotsas. (2020) Experimental benchmarking of diffusion and reduced models for convective drying of single rice grains. Drying Technology 38:1-2, pages 200-210.
Read now
Yuejin Yuan, Libin Tan, Zhe Zhao, Yingying Xu, Yu Zhao & Yueding Yuan. (2016) Multiscale and multilayer structural modeling and simulation on drying of grain packing porous media. Drying Technology 34:14, pages 1664-1676.
Read now

Articles from other publishers (14)

Ken O’Connell, Akeem K. Olaleye & Harry E.A. Van den Akker. (2023) A porous-crust drying model for a single dairy droplet. Chemical Engineering Research and Design 200, pages 741-752.
Crossref
Lyes Bennamoun & Macmanus Chinenye Ndukwu. 2023. Drying Technology in Food Processing. Drying Technology in Food Processing 341 377 .
Belal Al Zaitone, Abdulrahim Al-Zahrani, Osama Ahmed, Usman Saeed & Aqeel Ahmad Taimoor. (2022) Spray Drying of PEG6000 Suspension: Reaction Engineering Approach (REA) Modeling of Single Droplet Drying Kinetics. Processes 10:7, pages 1365.
Crossref
Lingxiao Zhan, Tiejia Shen, Heng Chen, Liyan Gu, Hao Zhou, Qianyuan Feng, Linjun Yang, Ning Zhao & Yongxin Feng. (2022) Evaporation Characteristics of a Single Desulfurization Wastewater Droplet in High-temperature Gas. International Journal of Heat and Mass Transfer 185, pages 122317.
Crossref
Chang Chen & Zhongli Pan. (2021) Heat and moisture transfer studies on walnuts during hot air drying in a fixed-bed column dryer. Applied Thermal Engineering 199, pages 117554.
Crossref
K. Y. Kwong & E. J. Marek. (2021) Combustion of Biomass in Fluidized Beds: A Review of Key Phenomena and Future Perspectives. Energy & Fuels 35:20, pages 16303-16334.
Crossref
Belal Al Zaitone & Abdulrahim Al-Zahrani. (2021) Spray Drying of Cellulose Nanofibers: Drying Kinetics Modeling of a Single Droplet and Particle Formation. Chemical Engineering & Technology 44:7, pages 1270-1277.
Crossref
Daniel I Onwude, Norhashila Hashim, Guangnan Chen, Aditya Putranto & Nsikak R Udoenoh. (2020) A fully coupled multiphase model for infrared‐convective drying of sweet potato . Journal of the Science of Food and Agriculture 101:2, pages 398-413.
Crossref
Kieu Hiep Le, Thi Thu Hang Tran, Evangelos Tsotsas & Abdolreza Kharaghani. (2020) Superheated Steam Drying of Single Wood Particles: Modeling and Comparative Study with Hot Air Drying. Chemical Engineering & Technology 44:1, pages 114-123.
Crossref
Anand Chavan & Bhaskar Thorat. (2020) Mathematical analysis of solar conduction dryer using reaction engineering approach. International Journal of Chemical Reactor Engineering 18:5-6.
Crossref
Kieu Hiep Le, Thi Thu Hang Tran, Nguyen An Nguyen & Abdolreza Kharaghani. (2020) Multiscale Modeling of Superheated Steam Drying of Particulate Materials. Chemical Engineering & Technology 43:5, pages 913-922.
Crossref
Penghua Guo, Tiantian Li, Peiwen Li, Yaxin Zhai & Jingyin Li. (2020) Study on a novel spray-evaporation multi-effect distillation desalination system. Desalination 473, pages 114195.
Crossref
Peyman Rahimi Borujerdi, Babak Shotorban, Shankar Mahalingam & David R. Weise. (2019) Modeling of water evaporation from a shrinking moist biomass slab subject to heating: Arrhenius approach versus equilibrium approach. International Journal of Heat and Mass Transfer 145, pages 118672.
Crossref
Abdolreza Kharaghani, Kieu Hiep Le, Thi Thu Hang Tran & Evangelos Tsotsas. (2019) Reaction engineering approach for modeling single wood particle drying at elevated air temperature. Chemical Engineering Science 199, pages 602-612.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.