[1] O’connor J, Nguyen T B T, Honeyands T, et al. Production, characterisation, utilisation, and beneficial soil application of steel slag: A review [J]. Journal of Hazardous Materials 2021, 419: 126478
[2] 刘智伟. 电炉钢渣铁组分回收及尾泥制备水泥材料的技术基础研究[D]. 北京: 北京科技大学, 2016(in Chinese) Liu Z W. Fundamental study on iron recovering from EAF slag and preparing cementitious material from its residual mud[D]. Beijing: University of Science and Technology Beijing, 2016
[3] 刘智伟, 李宇, 苍大强. 电炉氧化钢渣全组分高效利用的试验研究[J]. 武汉科技大学学报,2013,36(05):326−330(in Chinese) doi: 10.3969/j.issn.1674-3644.2013.05.002 Liu Z W, Li Y, Cang D Q. Experimental research on efficient utilization of whole components in EAF oxidizing slag[J]. Journal of Wuhan University of Science and Technology,2013,36(05):326−330 doi: 10.3969/j.issn.1674-3644.2013.05.002
[4] Pang L, Liao S, Wang D, et al. Influence of steel slag fineness on the hydration of cement-steel slag composite pastes[J]. Journal of Building Engineering,2022,57:104866 doi: 10.1016/j.jobe.2022.104866
[5] Ren Z, Li D. Application of steel slag as an aggregate in concrete production: a review[J]. Materials,2023,16(17):5841 doi: 10.3390/ma16175841
[6] 钱强. 电炉钢渣综合利用分析及建议[J]. 鞍钢技术,2020(06):9−12(in Chinese) doi: 10.3969/j.issn.1006-4613.2020.06.002 Qian Q. Comprehensive utilization of electric furnace slag and suggestions[J]. Angang Technology,2020(06):9−12 doi: 10.3969/j.issn.1006-4613.2020.06.002
[7] Gao W, Zhou W, Lyu X, et al. Comprehensive utilization of steel slag: a review[J]. Powder Technology,2023,422:118449 doi: 10.1016/j.powtec.2023.118449
[8] 汪杰, 梁月华. 电炉钢渣-粉煤灰复合掺合料水泥胶砂性能研究[J]. 钢铁钒钛,2022,43(05):123−128(in Chinese) Wang J, Liang Y H. Study on the effect of electric furnace steel slag-fly ash compound admixture on the properties of cement mortar[J]. Iron Steel Vanadium Titanium,2022,43(05):123−128
[9] Wang Y J, Tao M J, Li J G, et al. Carbonation of EAF stainless steel slag and its effect on chromium leaching characteristics[J]. Crystals,2021,11(12):1498 doi: 10.3390/cryst11121498
[10] 谢大为. 钢渣组成对其自粉化过程影响的研究[D]. 马鞍山: 安徽工业大学, 2015(in Chinese) Xei D W. Research on influence of slag composition on self-pulverization[D]. Maanshan: Anhui University of Technology, 2015
[11] Hussain A, Hussaini S K K. Use of steel slag as railway ballast: A review [J]. Transportation Geotechnics 2022, 35: 10079
[12] 梁晓杰, 常钧, 吴昊泽. 钢渣粉粒度对复合胶凝材料水化性能的影响[J]. 矿产综合利用,2021(03):180−186(in Chinese) Liang X J, Chang J, Wu H Z. Effect of particle size of steel slag powder on hydration performance of composite cementitious material[J]. Multipurpose Utilization of Mineral Resources,2021(03):180−186
[13] Wang L, Yan J, Wang Q, et al. Study on permeability of steel slag and steel slag modifying silt soil as new geo-backfill materials[J]. Advances in Civil Engineering,2019,2019:5370748
[14] Liu J, Qin Q, Yu Q. The effect of size distribution of slag particles obtained in dry granulation on blast furnace slag cement strength[J]. Powder Technology,2020,362:32−36 doi: 10.1016/j.powtec.2019.11.115
[15] 唐勇. 钢渣-固硫灰渣复合掺合料制备及其性能[J]. 水泥,2022(05):6−9(in Chinese) Tang Y. Preparation and properties of steel slag-solid sulfur ash composite admixture[J]. Cement,2022(05):6−9
[16] 林超. 石煤改质转炉钢渣自粉化及提钒的基础研究[D]. 马鞍山: 安徽工业大学, 2018(in Chinese) Lin C. Study on pulverization and vanadium extraction of stone coal modified converter steel slag[D]. Maanshan: Anhui University of Technology, 2018
[17] 何娟, 程从密, 刘晓初. 电炉钢渣易磨性试验研究[J]. 广东建材,2011,27(06):124−126(in Chinese) doi: 10.3969/j.issn.1009-4806.2011.06.043 He J, Cheng C M, Liu X C. Experimental study on the grindability of electric furnace steel slag[J]. Guangdong Building Materials,2011,27(06):124−126 doi: 10.3969/j.issn.1009-4806.2011.06.043
[18] 邓志豪. 转炉钢渣相演变和自粉化规律研究[D]. 北京: 北京科技大学, 2015(in Chinese) Deng Z H. Study on phase evolution and self-pulverization of converter steel slag[D]. Beijing: University of Science and Technology Beijing, 2015
[19] 孟华栋. f-CaO含量对钢渣高温蒸压粉化性能影响[J]. 水泥工程,2022(05):11−13(in Chinese) Meng H D. Effect of different f-CaO content on high temperature autoclaved pulverization properties of steel slag[J]. Cement Engineering,2022(05):11−13
[20] Tyutrin A A, Nemchinova N V, Baranov A N. Analysis of steel slag composition and properties to facilitate the search for rational slag recycling methods[J]. IOP Conference Series: Materials Science and Engineering,2020,969(1):012042 doi: 10.1088/1757-899X/969/1/012042
[21] 陈银胜. 碱度对高炉渣与钢渣熔融混合渣组成与结构的影响[D]. 包头: 内蒙古科技大学, 2022(in Chinese) Chen Y S. Influence of basicity on composition and structure of molten mixed slag of blast furnace slag and steel slag[D]. Baotou: Inner Mongolia University of Science & Technology, 2022
[22] 兴超, 姚娜, 张利武. SiO2含量对钢渣自粉化影响的机理研究[J]. 矿产综合利用,2016(06):89−91(in Chinese) doi: 10.3969/j.issn.1000-6532.2016.06.021 Xing C, Yao N, Zhang L W. Study on the mechanism of SiO2 content in the steel slag self-disintegration[J]. Multipurpose Utilization of Mineral Resources,2016(06):89−91 doi: 10.3969/j.issn.1000-6532.2016.06.021
[23] Rao L, Wu L S, Wang J, et al. The study on self-pulverization rate of steelmaking slag modified and reduced[J]. Solid State Phenomena,2018,279:247−254 doi: 10.4028/www.scientific.net/SSP.279.247
[24] 向瑞衡. 中高活性重构钢渣微粉的制备及其发泡改性研究[D]. 桂林: 桂林理工大学, 2021(in Chinese) Xiang R H. Study on preparation and foaming modification of medium-high activity reconstructed steel slag powder[D]. Guilin: Guilin university of technology, 2021
[25] Li B, Huang R, Xie R, et al. A novel process for the direct utilization of copper slag and phosphate rock by compound modification and coreduction[J]. Process Safety and Environmental Protection,2022,161:629−639 doi: 10.1016/j.psep.2022.03.079
[26] Li M, Zhu R, Huang R, et al. Effect of MgO on vacuum carbothermal reduction mechanism of Ca3(PO4)2 in SiO2–C–Ca3(PO4)2–MgO-based system[J]. Journal of Sustainable Metallurgy,2023,9(3):1−15
[27] Xu A, Huang R, Xie R, et al. Preparation of ferrophosphorus by synergistic reduction of phosphate rock and copper slag: optimization of carbon addition[J]. Journal of Sustainable Metallurgy,2022,8(3):1349−1357 doi: 10.1007/s40831-022-00568-y
[28] 黄东阳. 转炉钢渣碳热还原自粉化研究[D]. 马鞍山: 安徽工业大学, 2016(in Chinese) Huang D Y. Research on carbothermal reduction and self-pulverization of converter steel slag[D]. Maanshan: Anhui University of Technology, 2016