Applications of high gravity technologies for wastewater treatment: a review
W Jiao, S Luo, Z He, Y Liu - Chemical Engineering Journal, 2017 - Elsevier
High gravity (Higee) has gained a great attention owing to its advantages of highly efficient
mass transfer, energy saving and cost reduction. Higee technology has been studied …
mass transfer, energy saving and cost reduction. Higee technology has been studied …
Computational fluid dynamic simulation of gas-liquid flow in rotating packed bed: A review
WC Chen, YW Fan, LL Zhang, BC Sun, Y Luo… - Chinese Journal of …, 2022 - Elsevier
The rotating packed bed (RPB) has been widely used in gas-liquid flow systems as a
process intensification device, exhibiting excellent mass transfer enhancement …
process intensification device, exhibiting excellent mass transfer enhancement …
A universal strategy for efficient synthesis of Zr‐based MOF nanoparticles for enhanced water adsorption
Y Guo, Y Wei, M Chang, D Wang, JX Wang… - AIChE …, 2023 - Wiley Online Library
Zr‐based metal‐organic framework (Zr‐MOF) nanoparticles (NPs) have attracted extensive
research thanks to their outstanding thermal and chemical stability, but their efficient …
research thanks to their outstanding thermal and chemical stability, but their efficient …
[HTML][HTML] Characteristics of liquid flow in a rotating packed bed for CO2 capture: A CFD analysis
Rotating packed beds (RPBs) have been proposed as an emerging technology to be used
for post-combustion CO 2 capture (PCC) from the flue gas. However, due to the complex …
for post-combustion CO 2 capture (PCC) from the flue gas. However, due to the complex …
Enhancing recovery of ammonia from rare earth wastewater by air stripping combination of microwave heating and high gravity technology
S Yin, K Chen, C Srinivasakannan, S Guo, S Li… - Chemical Engineering …, 2018 - Elsevier
Currently, a larger amount of NH 3-N wastewater is generated in the rare earth manufacture
process. Air stripping is one of the effective technologies for ammonia removal, but low …
process. Air stripping is one of the effective technologies for ammonia removal, but low …
Development of intensified reactors: A process intensification methodology perspective
Y Ouyang, GJ Heynderickx, KM Van Geem - Chemical Engineering and …, 2022 - Elsevier
The use of intensified equipment, heavily advocated by academia, encounters several
hurdles to break through in the chemical industry. This has several reasons, such as the …
hurdles to break through in the chemical industry. This has several reasons, such as the …
A mesoscale 3D CFD analysis of the liquid flow in a rotating packed bed
Rotating packed beds (RPBs), as a type of process intensification technology, are promising
to be employed as high-efficiency CO 2 absorbers. However, the detailed understanding of …
to be employed as high-efficiency CO 2 absorbers. However, the detailed understanding of …
Synthesized Ni/MMO catalysts via ultrathin Ni-Al-LDH in a rotating packed bed for hydrogenation of maleic anhydride
YJ Li, TT Qi, YN Dong, WH Hou, GW Chu, LL Zhang… - Fuel, 2022 - Elsevier
Fabricating highly active supported Ni-based catalysts is a fundamental challenge in the
industry. Herein, the Ni-Al-LDH with controllable thicknesses from 1 to 19 nm were first …
industry. Herein, the Ni-Al-LDH with controllable thicknesses from 1 to 19 nm were first …
Novel wire mesh packing with controllable cross-sectional area in a rotating packed bed: mass transfer studies
ZN Wen, W Wu, Y Luo, LL Zhang… - Industrial & …, 2020 - ACS Publications
Wire mesh packing has been extensively utilized in laboratory and industry applications in
rotating packed bed (RPB) because of the high mass transfer performance and low cost …
rotating packed bed (RPB) because of the high mass transfer performance and low cost …
Three-dimensional simulation on liquid flow in a rotating packed bed reactor
TY Guo, KP Cheng, LX Wen… - Industrial & …, 2017 - ACS Publications
Rotating packed bed (RPB) reactors, with strong centrifugal acceleration up to several
hundred times gravitational acceleration, can greatly intensify the gas–liquid mass transfer …
hundred times gravitational acceleration, can greatly intensify the gas–liquid mass transfer …