Development of Compound Dust Suppressants for Innovative Management of Construction‐Induced Dust Pollution.
Saved in:
| Title: | Development of Compound Dust Suppressants for Innovative Management of Construction‐Induced Dust Pollution. |
|---|---|
| Authors: | Zhang, Huan1 (AUTHOR), Xu, Yong2 (AUTHOR), Chen, Lei1 (AUTHOR), Liu, Zihao3 (AUTHOR), Wang, Xi1 (AUTHOR), Fan, Yujie2 (AUTHOR), Zhao, Fuchao2 (AUTHOR), Cheng, Yilang2 (AUTHOR), Zhang, Yingda2 (AUTHOR) yingda.zhang@xhu.edu.cn, Biswas, Arnab (AUTHOR) arnbiswas@wiley.com |
| Source: | International Journal of Chemical Engineering (1687806X). 11/14/2025, Vol. 2025, p1-18. 18p. |
| Subjects: | Dust, Dust control, Cellulose chemistry, Surface active agents, Glycerin, Environmental standards, Building design & construction, Polymers |
| Abstract: | This study addresses the escalating issue of dust pollution arising from construction activities, impacting both the environment and human health. The research explores the development of a compound dust suppressant through single‐factor optimization experiments. The compound inhibitor, featuring a polymer as the primary ingredient, demonstrates excellent viscosity, water retention, and hydrophilic properties. The study optimizes three functional additives, namely, a binder (hydroxyethyl cellulose), a water‐retaining agent (glycerol), and a surfactant (isomerized tridecyl polyoxyethylene ether), each chosen based on their specific performance characteristics. The optimal concentrations are determined to be 0.2%–0.4% for hydroxyethyl cellulose as the binder, 1%–3% for glycerol as the water‐retaining agent, and 0.5%–1% for isomerized tridecyl polyoxyethylene ether as the surfactant. The resulting compound dust suppressant proves effective in mitigating dust dispersion during construction, offering a cost‐efficient and environmentally friendly solution. The raw materials used are nontoxic, free from harmful substances, and biodegradable, aligning with modern environmental standards. This innovative approach contributes to the global effort to address dust pollution in construction sites and provides a sustainable alternative to traditional dust suppression methods. [ABSTRACT FROM AUTHOR] |
| Copyright of International Journal of Chemical Engineering (1687806X) is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.) | |
| Database: | Engineering Source |
|
Full text is not displayed to guests.
Login for full access.
|
|
| Abstract: | This study addresses the escalating issue of dust pollution arising from construction activities, impacting both the environment and human health. The research explores the development of a compound dust suppressant through single‐factor optimization experiments. The compound inhibitor, featuring a polymer as the primary ingredient, demonstrates excellent viscosity, water retention, and hydrophilic properties. The study optimizes three functional additives, namely, a binder (hydroxyethyl cellulose), a water‐retaining agent (glycerol), and a surfactant (isomerized tridecyl polyoxyethylene ether), each chosen based on their specific performance characteristics. The optimal concentrations are determined to be 0.2%–0.4% for hydroxyethyl cellulose as the binder, 1%–3% for glycerol as the water‐retaining agent, and 0.5%–1% for isomerized tridecyl polyoxyethylene ether as the surfactant. The resulting compound dust suppressant proves effective in mitigating dust dispersion during construction, offering a cost‐efficient and environmentally friendly solution. The raw materials used are nontoxic, free from harmful substances, and biodegradable, aligning with modern environmental standards. This innovative approach contributes to the global effort to address dust pollution in construction sites and provides a sustainable alternative to traditional dust suppression methods. [ABSTRACT FROM AUTHOR] |
|---|---|
| ISSN: | 1687806X |
| DOI: | 10.1155/ijce/1546065 |