[1] ZHAO Y L, YANG C S, WANG Q, et al. Effects of phosphorus placement depth on yield and nutrient uptake of summer maize[J]. Scientia Agricultura Sinica, 2010, 43(23): 4805-4813 (in Chinese).
[2] HE B B, WEI L J, XIE D L, et al. Current situation and sustainable development of wet process phosphorus processing industry in China[J]. Inorganic Chemicals Industry, 2020, 52(1): 1-4+16 (in Chinese).
[3] HAK S A, SRAIDI A, KHALESS K, et al. Two steps leaching process for recovery of rare earths from Moroccan phosphogypsum[J]. Journal of Cleaner Production, 2023, 427: 138976.
[4] WANG T. Synthesis of sulfoaluminate cement with phosphogypsum[D]. Dalian: Dalian University of Technology, 2022 (in Chinese).
[5] CUI R Z. Present situation and suggestions on comprehensive utilization of phosphogypsum in China in 2021[J]. Phosphate & Compound Fertilizer, 2022, 37(11): 1-3 (in Chinese).
[6] QI J, ZHU H, ZHOU P, et al. Application of phosphogypsum in soilization: a review[J]. International Journal of Environmental Science and Technology, 2023, 20(9): 10449-10464.
[7] OU Z B, YANG W J, HE B B. The general introduction of phosphogypsum comprehensive utilization technology in China[J]. Yunnan Chemical Technology, 2021, 48(11): 6-9 (in Chinese).
[8] WANG J T. Study on preparation and application of anhydrite Ⅱ from phosphogypsum[D]. Mianyang: Southwest University of Science and Technology, 2023 (in Chinese).
[9] SUN T, LI W M, XU F, et al. A new eco-friendly concrete made of high content phosphogypsum based aggregates and binder: mechanical properties and environmental benefits[J]. Journal of Cleaner Production, 2023, 400: 136555.
[10] GUO S, XING D X, GUO X, et al. Preparation and modification of phosphogypsum-based architectural gypsum[J/OL]. Inorganic Chemicals Industry: 1-15 [2023-09-24]. https://doi.org/10.19964/j.issn.1006-4990.2023-0138 (in Chinese).
[11] XIANG J C, QIU J P, SONG Y Y, et al. Synergistic removal of phosphorus and fluorine impurities in phosphogypsum by enzyme-induced modified microbially induced carbonate precipitation method[J]. Journal of Environmental Management, 2022, 324: 116300.
[12] EL KATEB A, STALDER C, RGGEBERG A, et al. Impact of industrial phosphate waste discharge on the marine environment in the Gulf of Gabes (Tunisia)[J]. PLoS One, 2018, 13(5): e0197731.
[13] WEI Z Q, DENG Z B. Research hotspots and trends of comprehensive utilization of phosphogypsum: bibliometric analysis[J]. Journal of Environmental Radioactivity, 2022, 242: 106778.
[14] ZHANG J, XIE W M, DONG X B, et al. Research progress on comprehensive utilization of phosphogypsum for materials: a review[J]. Materials Reports, 2023, 37(16): 167-178 (in Chinese).
[15] XU L, FANG K N, BI Y X, et al. Preparation of anhydrous micron CaSO4 with different morphologies from phosphogypsum and its reinforcing in polyvinyl chloride[J]. Construction and Building Materials, 2023, 365: 130126.
[16] ZDAH I, AZIFA A, ENNACIRI Y, et al. Green method of phosphogypsum waste conversion to lithium sulfate monohydrate and calcium hydroxide[J]. Sustainable Chemistry and Pharmacy, 2022, 30: 100850.
[17] LI D L, TAN Y X, YAO B. Experimental study on preparation of calcium hydrogen phosphate from phosphogypsum[J]. Journal of Kunming Metallurgy College, 2021, 37(3): 97-100 (in Chinese).
[18] SAGNA Y P, DIEDHIOU S, GOUDIABY A O K, et al. Do phosphogypsum combined with organic amendments improve rice growth in a saline environment?[J]. Current Journal of Applied Science and Technology, 2023, 42(35): 52-61.
[19] PANDA L, KUMAR M, PRADHAN A. Leaching of sulphate from biochar and phosphogypsum-biochar for the treatment of acidic red soil[J]. Asian Journal of Water, Environment and Pollution, 2022, 19(3): 23-29.
[20] YAN J L, ZHANG M K, WANG D Z. Improvement effect of phosphogypsum combined with limestone powder on newly cultivated red soil farmland[J]. Journal of Agriculture, 2022, 12(7): 33-37 (in Chinese).
[21] WANG C Q, CHEN S, HUANG D M, et al. Safe environmentally friendly reuse of red mud modified phosphogypsum composite cementitious material[J]. Construction and Building Materials, 2023, 368: 130348.
[22] MESKINI S, SAMDI A, EJJAOUANI H, et al. Valorization of phosphogypsum as a road material: stabilizing effect of fly ash and lime additives on strength and durability[J]. Journal of Cleaner Production, 2021, 323: 129161.
[23] WEI X. Preparation and product development of phosphogypsum composite cementitious material[D]. Kunming: Kunming University of Science and Technology, 2021 (in Chinese).
[24] HU X Q, ZHANG L, ZHANG J, et al. Modification experiment of non-calcined phosphogypsum based cementitious materials[J]. Inorganic Chemicals Industry, 2022, 54(4): 29-33 (in Chinese).
[25] GONG Y Y, DONG S H, LIU L Y, et al. A sustainable composite cementitious material manufactured by phosphogypsum waste[J]. Applied Sciences, 2022, 12(24): 12718.
[26] LIU D M, WANG W Q, PENG Y Z, et al. Study on strength and hydration characteristics of phosphogypsum-phosphoslag based composite cementitious materials[J]. Metal Mine, 2022(9): 230-237 (in Chinese).
[27] HUANG W, TAN Y Z, CHEN J L, et al. Preparation and filling effect verification of phosphogypsum particles[J/OL]. Journal of Civil and Environmental Engineering: 1-10 [2023-11-24]. http://kns.cnki.net/kcms/detail/50.1218.tu.20221205.0845.001.html (in Chinese).
[28] CHEN Q S, ZHANG Q, QI C C, et al. Temperature-depending characteristics of strength and leaching toxicity of phosphogympsum-based cemented paste backfill[J]. The Chinese Journal of Nonferrous Metals, 2021, 31(4): 1084-1095 (in Chinese).
[29] GONG X Q, LIU J S, SUN Z G, et al. Effects of phosphogypsum and calcined phosphogypsum content on the basic physical and mechanical properties of Portland cement mortar[J]. Journal of Testing and Evaluation, 2020, 48(5): 20180380.
[30] ZHANG M, WANG H, CHEN M C, et al. Effect of calcination temperature and dosage of phosphogypsum on mechanical properties of cement mortar[J]. Sichuan Building Materials, 2022, 48(11): 1-2 (in Chinese).
[31] WU F H, JIN C Y, QU G F, et al. Enhancement of phosphogypsum mechanical block with the addition of iron and aluminum salts[J]. Journal of Building Engineering, 2022, 52: 104397.
[32] OUBAHA S, HAKKOU R, TAHA Y, et al. Elaboration of compressed earth blocks based on phosphogypsum and phosphate mining by-products[J]. Journal of Building Engineering, 2022, 62: 105423.
[33] LUO Z, MA Y Y, GUO Y Y, et al. New technology for preparing lightweight gypsum block from phosphogypsum[J]. Applied Science and Technology, 2020, 47(5): 94-99 (in Chinese).
[34] DUTTA R K, KUMAR V. Suitability of flyash-lime-phosphogypsum composite in road pavements[J]. Periodica Polytechnica Civil Engineering, 2016: 455-469.
[35] ZMEMLA R, BENJDIDIA M, NAIFAR I, et al. A phosphogypsum-based road material with enhanced mechanical properties for sustainable environmental remediation[J]. Environmental Progress & Sustainable Energy, 2022, 41(1): 13732.
[36] LYU W, WU C Q, GONG W H, et al. Research on the application of modified phosphogypsum lightweight aggregate in subgrade materials[J]. China Concrete and Cement Products, 2022(6): 82-86 (in Chinese).
[37] LIU J, TANG X C, WEI X W, et al. Discussion on the influence of phosphogypsum on cement properties[J]. Sci-Tech & Development of Enterprise, 2020(9): 82-83 (in Chinese).
[38] WANG Y, XIANG C Y, DUAN Y J, et al. Application of modified phosphogypsum as cement retarder[J]. Cement Engineering, 2022(3): 11-13 (in Chinese).
[39] HE S K, YANG L, HU G T, et al. Deep removal of phosphate impurities in phosphogypsum by two-step crystal transformation for use as Portland cement retarder[J]. Journal of Building Engineering, 2023, 79: 107831.