Arrow-Shaped Patterned Microchannel for Enhancing Droplet Coalescence and Demulsification of Oil-in-Water Emulsions with High Oil Content

27 Pages Posted: 19 Nov 2023

See all articles by Haoran Ma

Haoran Ma

Southwest Minzu University

Zhengdong Ma

Southwest Minzu University

Qiming Zhao

Southwest Minzu University

Yanhe Li

Southwest Minzu University

Keyu Zhu

Southwest Minzu University

Hao Zhang

Sichuan University

Xiao Chen

Southwest Minzu University

Abstract

The direct discharge of industrial emulsified wastewater critically threatens the environment and human health. Emulsified wastewater must be demulsified before discharge. Inspired by the applications of microchannels in oil-in-water (O/W) emulsion separation and patterned wettable surfaces to manipulate droplet formation, an arrow-shaped patterned microchannel (APM) was designed to enhance the droplet coalescence and demulsification of O/W emulsions with high oil content. The APM demulsification efficiency with 15 arrows of 5 patterns attained 70% within 4.5 s when handling the O/W emulsion of 40% (v/v) oil content. The experimental and simulation results revealed that the arrow-shaped patterns provided a series of inducing effects for dispersed droplets, enabling the coalesced droplets to form "oil-droplet-string flows". These positive inductions improved the efficiency of droplet coalescence and phase separation, thereby markedly enhancing the demulsification effect. This study provides a new technical approach for the treatment of industrial emulsified wastewater with high oil content.

Keywords: emulsified wastewater, microchannel, oil-in-water emulsion separation, Coalescence, demulsification

Suggested Citation

Ma, Haoran and Ma, Zhengdong and Zhao, Qiming and Li, Yanhe and Zhu, Keyu and Zhang, Hao and Chen, Xiao, Arrow-Shaped Patterned Microchannel for Enhancing Droplet Coalescence and Demulsification of Oil-in-Water Emulsions with High Oil Content. Available at SSRN: https://ssrn.com/abstract=4637570 or http://dx.doi.org/10.2139/ssrn.4637570

Haoran Ma

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Zhengdong Ma

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Qiming Zhao

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Yanhe Li

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Keyu Zhu

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Hao Zhang

Sichuan University ( email )

No. 24 South Section1, Yihuan Road,
Chengdu, 610064
China

Xiao Chen (Contact Author)

Southwest Minzu University ( email )

16 S 4th Section
1st Ring Rd, WuHouCi, Wuhou Qu, Chengdu Shi,
Sichuan Sheng
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
20
Abstract Views
250
PlumX Metrics