[1] 李爱征 ,黄宗华 ,杨英英 ,等. 深度除湿技术在低湿行业中的应用及研究进展[J]. 暖通空调 , 2023, 53(9) : 1-11.
[2] 曹博文 ,殷勇高 ,GiannettiNiccolo,等. 基于离子液体的深度除湿技术及应用探索[J]. 工程热物理学报 , 2024, 45(10) : 2958- 2964.
[3] 曾瑞璇 , 颜承初 , 李梅. 除湿等级划分及深度除湿技术研究进展 [J]. 制冷学报 , 2020, 41(6) : 12-21.
[4] 周苇杭 , 殷勇高 , 程小松 , 等. 低位热驱动的工业建筑除湿降温空调系统应用研究[J]. 制冷学报 , 2022, 43(5) : 10-15.
[5] AkhtarM U S, Fadlallah SO, Khan M I, et al. Sustainable humidity controlin the built environment: recent research and technological advancements in thermal driven dehumidification systems [J]. Energy and Buildings, 2024, 304: 113846.
[6] RiveraAS V. 基于新型复合材料的除湿换热器夏季及冬季工况实验研究[D]. 上海 : 上海交通大学 , 2019:21-24.
[7] ZuK, CuiS, Qin M. Performance comparison between metal- organicframework (MOFs) and conventional desiccants (silica gel , zeolite) fora novel high temperature cooling system[J]. IOP Conference Series: Materials Science and Engineering, 2019, 609(5) : 052013.
[8] Liu M Z, ChenW D, ShaoYLetal. Experimentalanalysisand investigation of desiccant coated heat exchanger applications involving condensation and sorption mechanisms[J]. Energy, 2024, 305: 132255.
[9] VivekhP, BuiD T, WongY, etal. Performance evaluation of PVA -LiClcoated heatexchangersfornext-generation ofenergy- efficientdehumidification [J]. Applied Energy, 2019, 237: 733- 750.
[10] VivekhP, Islam M R, Chua K J. Experimental performance evaluation ofa composite superabsorbentpolymer coated heat exchanger based air dehumidification system [J]. Applied Energy, 2020, 260: 114256.
[11] LiW , Liu X Y, LiG H, etal. A fluorescentin ( Ⅲ) metal- organic framework for explosives detection [J]. Chemical Research in ChineseUniversities, 2023, 39(6) : 1005-1009.
[12] GeTS, Cao W , Pan X, etal. Experimentalinvestigation on performance of desiccant coated heat exchangerand sensible
heatexchangeroperatingin series[J]. InternationalJournalof Refrigeration, 2017, 83: 88-98.
[13] GeL R, GeTS, WangRZ. FacilesynthesisofAl-basedMOF and its applications in desiccant coated heat exchangers[J]. Renewable and Sustainable Energy Reviews, 2022, 157: 112015.
[14] 杨晚生 , 凌子鹏 , 黎毅 , 等. 南方湿热地区单级与双级固体除湿系统性能对比[J]. 制冷学报 , 2022, 43(2) : 107-114.
[15] ZhengX, Ge T S, Wang R Z. Recent progress on desiccant materials for solid desiccant cooling systems[J]. Energy, 2014, 74: 280-294.
[16] ZhangY, Wang W N, Zheng X, et al. Recent progress on compositedesiccantsforadsorption-based dehumidification[J]. Energy , 2024, 302: 131824.
[17] 周承喆 , 刘林 , 李军 , 等. LiCl/PVA/硅胶复合干燥剂涂层制备及其循环除湿特性[J]. 新能源进展 , 2023, 11(3) : 213- 220.
[18] PanY, WangJ, ZhongG etal. An ultra-hygroscopicpolymer forhigh -efficiency dehumidification[J]. CellReports Physical Science, 2023, 4(9) : 101554.
[19] KarmakarA, MileoP G M, BokI, etal. Thermo-responsive MOF/polymer composites for temperature-mediated water capture and release[J]. Angewandte Chemie International Edition, 2020, 59(27) : 11003-11009.
[20] 王玮宁 , 郑旭 , 易志翔 , 等. 温敏复合吸附剂的水蒸气动态吸脱附性能研究[J]. 制冷学报 , 2025, 46(4) : 29-35.
[21] WangW N, Zheng X, LiD etal. Synthesis and progress of thermosensitiveadsorb entsin heat and humidity treatment: a review [J]. Energy, 2024, 311: 133407.
[22] 王子航 , 梁瑞升 , 邓超和 , 等. 离子凝胶复合吸附剂的制备及空气取水性能[J]. 化工进展 , 2022, 41(S1) : 389-396.
[23] XiongZ Q, WangRZ, DaiYJ. Experimentalstudyonatwo- stage liquid desiccant dehumidification system using dual desiccantsolutions [J]. HeatTransferResearch, 2015, 46(4) : 383-397.
[24] LiK Y, Luo W J, TsaiB Y, et al. Performance analysis of two-stage solid desiccant densely coated heat exchangers[J]. Sustainability , 2020, 12(18) : 7357.