The Use of Phosphogypsum as a Source of Raw Materials for Gypsum-Based Materials

被引:2
作者
Levickaya, Kseniya [1 ,2 ]
Alfimova, Nataliya [2 ]
Nikulin, Ivan [3 ,4 ]
Kozhukhova, Natalia [1 ,5 ]
Buryanov, Aleksander [6 ]
机构
[1] Belgorod Natl Res Univ, Lab Adv Mat & Technol, 85 Pobedy Str, Belgorod 308015, Russia
[2] Belgorod State Technol Univ, Dept Bldg Mat Sci Prod & Struct, 46 Kostyukova Str, Belgorod 308012, Russia
[3] Engn Ctr NRU BelSU, 2a-712 Koroleva St, Belgorod 308033, Russia
[4] Fund Innovat Sci Technol, 1,Room 3-3 Perspektivnaya Str Novosadovy Mkr, Belgorod 308518, Russia
[5] Belgorod State Technol Univ, Dept Mat Sci & Mat Technol, 46 Kostyukova Str, Belgorod 308012, Russia
[6] Moscow State Univ Civil Engn, Natl Res Univ, Dept Bldg Mat Sci, 6 Yaroslavskoye Shosse, Moscow 129337, Russia
来源
RESOURCES-BASEL | 2024年 / 13卷 / 05期
关键词
phosphogypsum; alternative source of gypsum raw materials; by-product; origin characteristics; gypsum binder;
D O I
10.3390/resources13050069
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Gypsum binders and the products based on them are widely in demand in the construction materials market, which is due to their easy production technology, lower energy consumption, and low environmental impact in relation to Portland cement. Not only natural gypsum (NG), but also phosphogypsum (PG), which is a by-product of the synthesis of orthophosphoric acid from phosphorite rock, can be used as a source of raw materials for the production of gypsum materials. PG is produced annually in large quantities throughout the world. In chemical composition, PG mainly consists of calcium sulfate dihydrate CaSO4<middle dot>2H(2)O, so it is a good potential analogue of natural gypsum, which is used as the main component of gypsum building materials. Thus, the useful recycling of PG as a technogenic resource with valuable properties will expand the raw material base for the production of gypsum materials. This approach to handling technogenic resources fits well with the principles of a circular economy. However, like any technogenic resource, PGs from different enterprises normally differ in their deposits of the original phosphate rock and production technologies. Therefore, PG contains a large number of undesirable impurities, the proportion and composition of which vary over a wide range. This feature does not allow for predicting the properties of PG-based materials without a preliminary detailed study of PG. This research was aimed at carrying out a comprehensive study of the characteristics of PGs from three different industrial plants to evaluate their relationship with the properties of gypsum materials based on them. It was found that PGs have significant differences in their structural and morphological characteristics both in relation to each other and in relation to NG. Also, binders based on PG and NG have significant differences in their physical properties. The average density, compressive strength, and flexural strength for the PG binders with equal workability are lower than those of NG binders. At a water/solid ratio (W/S) < 0.7, all PG binders exhibit comparable compressive strength to NG binders. Thus, PG can act as an alternative to natural gypsum in gypsum binders.
引用
收藏
页数:16
相关论文
共 24 条
[1]  
Alfimova N., 2020, Bull. Belgorod State Technol. Univ. Named V. G. Shukhov, V5, P8, DOI [10.34031/2071-7318-2020-5-11-8-23, DOI 10.34031/2071-7318-2020-5-11-8-23]
[2]   The Production of Gypsum Materials with Recycled Citrogypsum Using Semi-Dry Pressing Technology [J].
Alfimova, Nataliya ;
Pirieva, Sevda ;
Levickaya, Ksenia ;
Kozhukhova, Natalia ;
Elistratkin, Mikhail .
RECYCLING, 2023, 8 (02)
[3]   Characterization and optimization of eco-friendly gypsum materials using response surface methodology [J].
Balti, Sameh ;
Boudenne, Abderrahim ;
Hamdi, Noureddine .
JOURNAL OF BUILDING ENGINEERING, 2023, 69
[4]   Phosphogypsum circular economy considerations: A critical review from more than 65 storage sites worldwide [J].
Bilal, Essaid ;
Bellefqih, Hajar ;
Bourgier, Veronique ;
Mazouz, Hamid ;
Dumitras, Delia-Georgeta ;
Bard, Frederic ;
Laborde, Marie ;
Caspar, Jean Pierre ;
Guilhot, Bernard ;
Iatan, Elena-Luisa ;
Bounakhla, Moussa ;
Iancu, Maruta Aurora ;
Marincea, Stefan ;
Essakhraoui, Meriem ;
Li, Binlin ;
Diwa, Reymar R. ;
Ramirez, Jennyvi D. ;
Chernysh, Yelizaveta ;
Chubur, Viktoriia ;
Roubik, Hynek ;
Schmidt, Horst ;
Beniazza, Redouane ;
Canovas, Carlos Ruiz ;
Nieto, Jose Miguel ;
Haneklaus, Nils .
JOURNAL OF CLEANER PRODUCTION, 2023, 414
[5]   Recycling of phosphogypsum to prepare gypsum plaster: Effect of calcination temperature [J].
Cao, Wenxiang ;
Yi, Wei ;
Peng, Jiahui ;
Li, Jing ;
Yin, Suhong .
JOURNAL OF BUILDING ENGINEERING, 2022, 45
[6]   Energy efficient cement free binder developed from industry waste-A sustainable approach [J].
Garg, Mridul ;
Pundir, Aakanksha .
EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING, 2017, 21 (05) :612-628
[7]   Modifications in water resistance and engineering properties of β-calcium sulphate hemihydrate plaster-superplasticizer blends [J].
Garg, Mridul ;
Pundir, Aakanksha ;
Singh, Randhir .
MATERIALS AND STRUCTURES, 2016, 49 (08) :3253-3263
[8]   Calcination parameters on phosphogypsum waste recycling [J].
Geraldo, Rodrigo H. ;
Costa, Ana Rita D. ;
Kanai, Julia ;
Silva, Jefferson S. ;
Souza, Janaina D. ;
Andrade, Heloysa M. C. ;
Goncalves, Jardel P. ;
Fontanini, Patricia S. P. ;
Camarini, Gladis .
CONSTRUCTION AND BUILDING MATERIALS, 2020, 256
[9]  
Iglenkova M.G., 2011, Proc. Saratov Univ. New Epis. Ser. Chem. Biol. Ecol, V11, P60
[10]   Development of sustainable water-resistant binder with FGD gypsum & fly ash, and its environmental impact evaluation via carbon footprint and energy consumption analysis [J].
Jain, Neeraj ;
Maiti, Soumitra ;
Aakriti ;
Malik, Jaideep ;
Sondhi, Deepak .
SUSTAINABLE CHEMISTRY AND PHARMACY, 2024, 37