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                 conversion of carbon dioxide from cement production to microalgae  [20]   Li  Bo,  Huang  Jie,  Yang  Tao,  et  al.  Analysis  on  high  temperature
                 biomass[J].  Applied  Microbiology  and  Biotechnology,  2023,  fretting  wear  behaviour  of  20Cr13  stainless  steel[J].  Tribology,
                 107(23): 7375–7390. doi: 10.1007/s00253-023-12769-w.  2024, 44(4): 494–508 (in Chinese) [李波, 黄杰, 杨韬, 等. 20Cr13不
            [15]   Sun  Zhongliang,  Chen  Hui,  Sun  Liqin,  et  al.  Converting  carbon  锈钢高温微动摩擦磨损特性研究[J]. 摩擦学学报(中英文), 2024,
                 dioxide  to  high  value-added  products:  microalgae-based  green  44(4): 494–508]. doi: 10.16078/j.tribology.2023028.
                 biomanufacturing[J].  GCB  Bioenergy,  2023,  15(4):  386–398.  doi:  [21]   Erdemir A, Ramirez G, Eryilmaz O L, et al. Carbon-based tribofilms
                 10.1111/gcbb.13031.                               from  lubricating  oils[J].  Nature,  2016,  536(7614):  67–71.  doi:  10.
            [16]   Lu Shijian, Li Qingfang, Zhang Jian. Overview of CO 2  absorption
                                                                   1038/nature18948.
                 with  organic  amines  solution  and  reaction  theory[J].  Science  and
                                                               [22]   Yu Hongxiang, Liu Xiaolong, Zheng Zhiwen, et al. In situ graphene
                 Technology Innovation Herald, 2009, 6(13): 4–5,7 (in Chinese) [陆
                                                                   formation  induced  by  tribochemical  reaction  for  sustainable
                 诗建, 李清方, 张建. 醇胺溶液吸收二氧化碳方法及反应原理概
                                                                   lubrication[J].  ACS  Sustainable  Chemistry  &  Engineering,  2023,
                 述 [J].  科 技 创 新 导 报 ,  2009,  6(13):  4–5,7].  doi:  10.16660/j.cnki.
                                                                   11(6): 2238–2248. doi: 10.1021/acssuschemeng.2c05639.
                 1674-098x.2009.13.004.
                                                               [23]   Yu Hongxiang, Liu Xiaolong, Meng Weisheng, et al. Synthesis of
            [17]   Han Zhonghe, Wang Yingying, Zhou Quan, et al. Improvement and
                                                                   ultrathin  two-dimensional  metal-organic  framework  nanosheets  for
                 economic analysis of the coupling scheme of coal-fired power plant
                                                                   lubricant  additives[J].  Materials  &  Design,  2022,  223(3):  111251.
                 and alcohol-amine-based carbon capture system[J]. Journal of China
                                                                   doi: 10.1016/j.matdes.2022.111251.
                 Coal Society, 2015, 40(S1): 222–229 (in Chinese) [韩中合, 王营营,
                                                               [24]   Yamada  H,  Matsuzaki  Y,  Chowdhury  F,  et  al.  Computational
                 周权, 等. 燃煤电厂与醇胺法碳捕集系统耦合方案的改进及经济
                                                                   investigation  of  carbon  dioxide  absorption  in  alkanolamine
                 性分析[J]. 煤炭学报, 2015, 40(S1): 222–229]. doi: 10.13225/j.cnki.
                                                                   solutions[J].  Journal  of  Molecular  Modeling,  2013,  19(10):
                 jccs.2014.0842.
                                                                   4147–4153. doi: 10.1007/s00894-012-1749-9.
            [18]   Yu  Hongxiang,  Zuo  Xiangyu,  Zhang  Xia,  et  al.  CO 2   capture  and
                                                               [25]   Liu Fan. Research on the regulation mechanism of carbon dioxide
                 conversion  into  carbon-based  tribofilm  by  in  situ  tribochemical
                                                                   capture  by  non-aqueous  phase  absorber  by  2-amino-2-methyl-1-
                 reaction  for  green  lubrication[J].  ACS  Sustainable  Chemistry  &
                 Engineering,   2024,   12(10):   4070–4080.   doi:   10.1021/  propanol  (AMP)[D].  Quanzhou:  Huaqiao  University,  2018  (in
                 acssuschemeng.3c07283.                            Chinese) [刘凡. 2-氨基-2-甲基-1-丙醇(AMP)对非水相吸收剂捕集
            [19]   Xue Qunji, Liu Weimin. Major research fields of friction chemistry  二氧化碳的调控机制研究[D]. 泉州: 华侨大学, 2018].
                 and their development trend[J]. Progress in Chemistry, 1997, 9(3):  [26]   Yu  Hongxiang,  Chen  Haijie,  Zheng  Zhiwen,  et  al.  Effect  of
                 91–98 (in Chinese) [薛群基, 刘维民. 摩擦化学的主要研究领域及        functional  groups  on  tribological  properties  of  lubricants  and
                 其发展趋势[J]. 化学进展, 1997, 9(3): 91–98.]. doi: 10.1088/0256-  mechanism investigation[J]. Friction, 2023, 11(6): 911–926. doi: 10.
                 307X/13/10/016.                                   1007/s40544-022-0630-9.
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