474
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

RECENT PROGRESS IN HYDRODYNAMICS OF INVERSE FLUIDIZED BED REACTORS: A REVIEW

, &
Pages 1260-1277 | Published online: 08 May 2013

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

Read on this site (1)

Katarina S. Šućurović, Darko Jaćimovski, Mihal Đuriš, Zorana Arsenijević & Nevenka Bošković Vragolović. (2023) Minimum fluidization velocity and bed expansion of the inverse fluidized bed. Particulate Science and Technology 41:8, pages 1114-1123.
Read now

Articles from other publishers (12)

Maneesh Namburath, Babu J. Alappat & Sreekrishnan Trichur Ramaswamy. (2023) A critical review of inverse fluidized bed reactors—start-up optimization strategies and wastewater treatment. Environmental Science and Pollution Research 30:50, pages 108370-108392.
Crossref
Yicheng Deng, Keying Ma, Jiaqi Huang, Yuanyuan Shao & Jesse Zhu. (2023) Hydrodynamic characteristics of a rectangular gas-driven inverse liquid-solid fluidized bed. Particuology 78, pages 86-96.
Crossref
Yicheng Deng, Keying Ma, Yuanyuan Shao & Jesse Zhu. (2023) Hydrodynamics of a bubble-induced inverse fluidized bed reactor with a nanobubble tray. Particuology 73, pages 8-16.
Crossref
Shaoqi Chen, Ruixuan Li, Keying Ma, Yuanyuan Shao & Jesse Zhu. (2022) Hydrodynamic characteristics of a pilot-scale gas-driven inverse liquid-solid fluidized bed with a central draft tube. Chemical Engineering and Processing - Process Intensification 180, pages 108999.
Crossref
Kiruthika Sathiasivan, Samdavid Swaminathan, Jeyalakshmi Ramaswamy & Mathur Rajesh. (2021) Investigation of hydrodynamics of inverse fluidized bed reactor (IFBR) for struvite (NH4MgPO4·6H2O) recovery from urban wastewater. Chemical Papers 76:1, pages 361-372.
Crossref
H. Upender, K. Anand Kishore, Asif Afzal, Md. Tariqul Islam & Muhammad Ibrahim. (2021) Mean residence time and mass fraction of tracer in a liquid-solid tapered inverse fluidized bed: numerical modelling with experimental validation. Journal of the Taiwan Institute of Chemical Engineers 128, pages 30-40.
Crossref
Challa Mallikarjuna & Rajesh Roshan Dash. (2020) A review on hydrodynamic parameters and biofilm characteristics of inverse fluidized bed bioreactors for treating industrial wastewater. Journal of Environmental Chemical Engineering 8:5, pages 104233.
Crossref
Arindam Sinharoy & Piet N. L. Lens. (2020) Biological Removal of Selenate and Selenite from Wastewater: Options for Selenium Recovery as Nanoparticles. Current Pollution Reports 6:3, pages 230-249.
Crossref
Keying Ma, Xiliang Sun, Yuanyuan Shao, Mingyan Liu & Jesse Zhu. (2019) Hydrodynamic characteristics of bubble-induced three-phase inverse fluidized bed (BIFB). Chemical Engineering Science 209, pages 115177.
Crossref
Anup Kumar Swain, Abanti Sahoo, Hara Mohan Jena & Hemalata Patra. (2018) Industrial wastewater treatment by Aerobic Inverse Fluidized Bed Biofilm Reactors (AIFBBRs): A review. Journal of Water Process Engineering 23, pages 61-74.
Crossref
Dharmesh H. Sur & Mausumi Mukhopadhyay. (2017) Process aspects of three-phase inverse fluidized bed bioreactor: A review. Journal of Environmental Chemical Engineering 5:4, pages 3518-3528.
Crossref
S. Sabarunisha Begum & K. V. Radha. (2014) Hydrodynamic behavior of inverse fluidized bed biofilm reactor for phenol biodegradation using Pseudomonas fluorescens. Korean Journal of Chemical Engineering 31:3, pages 436-445.
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.