[3] YANG J K, LIU W C, ZHANG L L, et al. Preparation of load-bearing building materials from autoclaved phosphogypsum[J]. Construction and Building Materials, 2009, 23(2): 687-693.
[4] ZHANG Y Y, YANG J S, CAO X Y. Effects of several retarders on setting time and strength of building gypsum[J]. Construction and Building Materials, 2020, 240: 117927.
[7] XIE L, ZHOU Y S, XIAO S H, et al. Research on basalt fiber reinforced phosphogypsum-based composites based on single factor test and RSM test[J]. Construction and Building Materials, 2022, 316: 126084.
[9] LI M, PU Y Q, THOMAS V M, et al. Recent advancements of plant-based natural fiber-reinforced composites and their applications[J]. Composites Part B: Engineering, 2020, 200: 108254.
[12] MITTAL V, SAINI R, SINHA S. Natural fiber-mediated epoxy composites: a review[J]. Composites Part B: Engineering, 2016, 99: 425-435.
[13] KANG H L, LIU R G, HUANG Y. Graft modification of cellulose: methods, properties and applications[J]. Polymer, 2015, 70: A1-A16.
[15] LIU Y J, WANG Y, YUAN X H, et al. The function of water absorption and purification of lotus fiber[J]. Materials Science Forum, 2020, 980: 162-167.
[18] PRASAD V, JOSEPH M A, SEKAR K. Investigation of mechanical, thermal and water absorption properties of flax fibre reinforced epoxy composite with nano TiO2 addition[J]. Composites Part A: Applied Science and Manufacturing, 2018, 115: 360-370.
[22] HOLKOV M, VAVNOV N, LONGAUEROV V. Mechanical properties of the gypsum composite reinforcement with wooden fibers[J]. International Review of Applied Sciences and Engineering, 2019, 10(1): 15-21.
[23] IUCOLANO F, CAPUTO D, LEBOFFE F, et al. Mechanical behavior of plaster reinforced with abaca fibers[J]. Construction and Building Materials, 2015, 99: 184-191.