Interaction mechanism between copolymer inhibitor and β-dicalcium silicate surface based on molecular dynamics simulation

被引:1
|
作者
Tong, Zhi-Fang [1 ]
Zhang, Yu-Heng [1 ]
Xie, Yun-Bing [1 ]
机构
[1] Jiangxi Univ Sci & Technol, Coll Met & Chem Engn, Ganzhou 341000, Peoples R China
基金
中国国家自然科学基金;
关键词
Copolymer inhibitor; molecular dynamics; adsorption; radial distribution functions; adsorption configurations; POLYMER INHIBITORS; ADSORPTION; CRYSTAL;
D O I
10.1080/00268976.2019.1597196
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Copolymer inhibitor with multifunctional groups has a good effect on inhibiting the secondary reaction in the clinker leaching process for alumina production, but the inhibition mechanism of the copolymer is not clear yet. In this paper, molecular dynamics simulation was used to study the adsorption process of the copolymer inhibitor with multifunctional groups, such as acrylic acid-vinyl alcohol copolymer (PAV) and acrylic acid-hydroxypropyl acrylate copolymer (PAH), on the beta-dicalcium silicate (C2S) crystal surface, and reveal its inhibiting mechanism. Meanwhile, the polyacrylic acid (PAA) with only the carboxyl group also is simulated for comparing the inhibition effect with copolymer inhibitors. The results show that the binding energy between copolymer (PAV, PAH) and beta-C2S is greater than that of PAA with a single functional group. The order of binding energy is as follows: PAH > PAV > PAA. In aqueous solution, the water molecule can restrict the degree of deformation of polymers, increase the distance between polymers and beta-C2S and then lead to weakening of the adsorption of polymers on the crystal surface. The comprehensive and coordination effect of carboxyl and hydroxyl functional groups in PAV and PAH can strengthen the adsorption of copolymers on the beta-C2S surface. The different spatial distribution of multifunctional groups in the molecular structure has a different influence on the adsorption of the copolymer. The results can provide a theoretical basis for researching new and highly effective copolymer inhibitors with multifunctional groups. Compared the adsorption state: The comprehensive and coordinate action of carboxyl and hydroxyl groups of the inhibitor with multifunctional groups make the inhibitor have a stronger adsorption ability on the surface of beta-C2S than that with a single functional group. The results obtained in this paper can provide a theoretical basis for the research and development of new and highly effective polymeric inhibitors with multifunctional groups. [GRAPHICS] Highlights The interaction between copolymer and beta-C2S was investigated by MD simulation. The binding energy order between polymers and beta-C2S is PAH > PAV > PAA. The presence of water molecules can weaken the adsorption of the copolymer on the surface of beta-C2S. The comprehensive and coordinate action of carboxyl and hydroxyl groups of the inhibitor with multifunctional groups make the inhibitor have a stronger adsorption ability on the surface of beta-C2S than that with a single functional group.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Molecular dynamics simulation on the interaction between polymer inhibitors and β-dicalcium silicate surface
    Tong, Zhifang
    Xie, Yunbing
    Zhang, Yuheng
    JOURNAL OF MOLECULAR LIQUIDS, 2018, 259 : 65 - 75
  • [2] Molecular dynamics simulation of the interaction between polyaspartic acid and calcium carbonate
    Zeng, Jian-Ping
    Wang, Feng-He
    Gong, Xue-Dong
    MOLECULAR SIMULATION, 2013, 39 (03) : 169 - 175
  • [3] Molecular dynamics simulation of interaction between carboxylate copolymer and calcite crystal
    Shi Wen-Yan
    Wang Feng-Yun
    Xia Ming-Zhu
    Lei Wu
    Zhang Shu-Guang
    ACTA CHIMICA SINICA, 2006, 64 (17) : 1817 - 1823
  • [4] Molecular dynamics simulation of the interaction between aggregates and calcium silicate hydrate and influence of ethylene vinyl acetate copolymer modifier
    Qin, Dajing
    Feng, Yong
    Li, Lijuan
    MOLECULAR SIMULATION, 2024, 50 (11) : 665 - 675
  • [5] Molecular dynamics simulation on the interaction mechanism between polymer inhibitors and calcium phosphate
    Zeng, Jian-Ping
    Qian, Xiao-Rong
    Wang, Feng-He
    Shao, Jing-Ling
    Bai, Yun-Shan
    JOURNAL OF CHEMICAL SCIENCES, 2014, 126 (03) : 649 - 658
  • [6] Hydration Mechanism of Reactive and Passive Dicalcium Silicate Polymorphs from Molecular Simulations
    Wang, Qianqian
    Manzano, Hegoi
    Guo, Yanhua
    Lopez-Arbeloa, Inigo
    Shen, Xiaodong
    JOURNAL OF PHYSICAL CHEMISTRY C, 2015, 119 (34): : 19869 - 19875
  • [7] Molecular Dynamics Simulation of the Chemical Interaction between Hydrogen Atom and Graphene
    Ito, Atsushi
    Nakamura, Hiroaki
    Takayama, Arimichi
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2008, 77 (11)
  • [8] Adsorption behavior of carbonic acid on γ-dicalcium silicate surface from molecular simulations
    Zhao, Meicheng
    Lu, Linnu
    Tao, Yong
    He, Yongjia
    Wang, Fazhou
    Zhang, Wenqin
    Hu, Shuguang
    JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2022, 105 (01) : 564 - 576
  • [9] Molecular dynamics simulation on the interaction between polymer inhibitors and anhydrite surface
    Zeng, Jian-Ping
    Dai, Yong
    Shi, Wen-Yan
    Shao, Jing-Ling
    Sun, Guo-Xiang
    SURFACE AND INTERFACE ANALYSIS, 2015, 47 (09) : 896 - 902
  • [10] Molecular dynamics simulation of the interfacial interaction mechanism between functional groups on graphene-based two-dimensional matrix and calcium silicate hydrate
    Zhou, Yang
    Xiong, Chenchen
    Peng, Zechuan
    Huang, Jiale
    Chang, Honglei
    CONSTRUCTION AND BUILDING MATERIALS, 2021, 284