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4篇 您的检索式:作者名="Zechang Wei"
    题名 作者 年代 出处 被引量
1Towards highly salt-rejecting solar interfacial evaporation:Photothermal materials selection,structural designs,and energy management显示文摘With the development of the industry,water pollution and shortage have become serious global problems.Owing to the abundance of seawater storage on earth,efficient solar-driven evaporation is a promising approach to relieve the freshwater shortage.The solar-driven evaporation has attracted tremendous attention due to its potential application in the seawater desalination and wastewater treatment fields.Also,the solar-driven evaporation efficiency can be enhanced by designing both solar absorbers and structures.Up to now,many strategies have been explored to achieve high solar-driven evaporation efficiency,mainly including the selection of photothermal conversion materials and structure optimization.In this review,the solar absorbers,structural designs,and energy management are proposed as the keys for high performance solar-driven evaporation systems.We report four kinds of solar absorbers based on different photothermal conversion mechanisms,substrate structure designs,and energy management methods for the purpose to achieve high conversion efficiency.And we also systematically investigate the available salt-rejections strategies for seawater desalination.This review aims to summarize the current development of efficient solar-driven evaporation systems and provide insights into the photothermal conversion materials,structural designs,and energy management.Finally,we propose the perspectives of the salt-rejection technologies for seawater desalination.Zechang Wei Jiang Wang Shuai Guo Swee Ching Tan 2022Nano Research Energy2022,1,2:3
2A Capacity Fa- ding Model of Lithium-Ion Battery Cycle Life Based on the Kinet- ics of Side Reactions for Electric Vehicle Applications显示文摘Gua Weijun Sun Zechang Wei Xuezhe 2014Elec- trochimica Acta2014,133,:1
3Model based SOC estimation for high-power Li-ion battery packs used on FCHVs显示文摘戴海峰 Wei Xuezhe Sun Zechang 2007High Technology Letters2007,13,3:1
4Large scalable,ultrathin and self-cleaning cellulose aerogel film for daytime radiative cooling显示文摘Passive cooling strategy shows great potential in mitigating global warming and reducing energy consumption.Because of the high emissivity in the atmospheric transparency window(λ≈8–13μm),cellulose is considered as a good candidate for radiative cooling.However,traditional cellulose coolers generally show poor solar reflection and can be polluted by dust outside,thereby resulting in poor daytime cooling efficiency.To address these drawbacks,we developed sustainable cellulose nanowhiskers(CNWs)/ZnO composite aerogel films with favorable optical performance,mechanical robustness,and self-cleaning function for efficient daytime radiative cooling,which can be achieved via freeze casting and hot-pressing process.Due to formation of multi-level porous structure and chemical bonds(Si-O-C/Si-O-Si),such aerogel film exhibited high solar reflectance(97%)and high infrared emittance(92.5%).It achieved a sub-ambient temperature drop of 6.9℃under direct sunlight in hot weather.Most importantly,the surface roughness and low surface energy enable cellulose aerogel film hydrophobicity(contact angle=133°),thereby resulting in an anti-dust function.This work provides insight into the design of sustainable thermal regulating materials to realize carbon neutrality.Chenyang Cai Yuanbo Sun Yi Chen Zechang Wei Yibo Wang Fuling Chen Wanquan Cai Jiawen Ji Yuxin Ji Yu Fu 2023Journal of Bioresources and Bioproducts2023,8,4:0
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