Deciphering van der Waals interaction between polypropylene and carbonated fly ash from experimental and molecular simulation.

Sosan Hwang, Sung Hoon Jin, Yongha Kim, Jin Sung Seo, Jae-Il So, Jincheol Kim, Yongjin Lee, Sung-Hyeon Baeck, Sang Eun Shim, Yingjie Qian

Journal: Journal of hazardous materials 2021;421():126725

PMID: 34332478

Abstract

Pollution emitted from power plants, including a considerable amount of fly ash (FA) and carbon dioxide (CO), annually increases and is challenging from an environmentally friendly and sustainable point of view. To date, laboratory-scaled approaches cannot efficiently replace the FA-landfilling and mitigate the stress from CO emission. Here, a practically operatable fundamental work by combining carbonated FA (C-FA)-immobilizing CO in FA-and polypropylene (PP) matrix is reported and reveals abnormal mechanical and thermal features clarified by calculating van der Waals (vdW) interaction from an atomic scale. This is the first study wherein the interaction between instantaneous dipole moment-induced PP and fillers is simulated and examined. The vdW interactions at the (hetero)interfaces are -59.66, -82.30, and -224.39 kJ mol Å for PP, calcium oxide (CaO; before carbonation), and calcium carbonate (CaCO; after carbonation), respectively, which provides concrete theoretical support for interesting findings such as the independence of tensile strength on filler loadings and "well-grown" interface-induced higher conductivity characteristics of the composites. Therefore, this work can offer practical solutions to mitigate pollution, provide a new perspective on fundamental physical interactions, and guide the development of practical next-generation composite materials.

Copyright © 2021 Elsevier B.V. All rights reserved.

Address: Department of Chemistry and Chemical Engineering, Education and Research Center for Smart Energy and Materials, Inha University, Incheon 22212, South Korea.; Department of Chemistry and Chemical Engineering, Education and Research Center for Smart Energy and Materials, Inha University, Incheon 22212, South Korea. Electronic address: [email protected].; Department of Chemistry and Chemical Engineering, Education and Research Center for Smart Energy and Materials, Inha University, Incheon 22212, South Korea. Electronic address: [email protected].

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.