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A timing self-cleaning nanoherbicide:Design of triple-structure nanovectors for weed control and pesticide residues treatment
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作者 Jiao Cheng Mei Li +3 位作者 Ri-xin Zhu Jing-yi Li Jun Yin Wang Xiao 《Advanced Agrochem》 2024年第4期298-307,共10页
Pesticide residues treatment is a crucial issue for both agricultural production and environmental protection.In recent years,designing self-cleaning nanoformulations has emerged as a promising strategy for reducing p... Pesticide residues treatment is a crucial issue for both agricultural production and environmental protection.In recent years,designing self-cleaning nanoformulations has emerged as a promising strategy for reducing pesticide residues in a convenient and cost-effective manner.However,traditional physical blending methods of photodegradation reagents with nanocarriers have limitations in terms of pesticide residue degradation efficiency and active ingredient efficacy.Here,a new type of timing self-cleaning nanoherbicide dicamba@mSiO_(2)/ATA/TiO_(2)with a triple structure was fabricated.Dicamba,a widely used herbicide that was attracting increasing concern over its high efficiency and broad spectrum,was selected as the model herbicide and loaded on the mSiO_(2)shell.In the stage of pesticide release,the TiO_(2)and dicamba were separated by the timing-barrier.Therefore,the efficacy of dicamba was not affected by the photocatalyst.During the release process,the ATA layer continuously absorbed the reactive oxygen species(ROS)produced by TiO_(2)and was gradually degraded.Finally,the barrier was destroyed,and the residual dicamba in the carrier was degraded by TiO_(2).Compared with the traditional physical blending method,this triple structure avoided the degradation of active ingredients by photocatalysts during the pesticide release period.The experimental results suggested that this nanoformulation improved the efficacy of the herbicide,and reduced the pesticide residues,providing a new approach for self-cleaning nanopesticides research. 展开更多
关键词 Nanopesticide self-cleanING Pesticide residues Photocatalytic degradation
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Construction of Self-Assembly Based Tunable Absorber:Lightweight,Hydrophobic and Self-Cleaning Properties 被引量:16
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作者 Zehua Zhou Qianqian Zhu +3 位作者 Yue Liu Yan Zhang Zirui Jia Guanglei Wu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第9期148-163,共16页
Although multifunctional aerogels are expected to be used in applications such as portable electronic devices,it is still a great challenge to confer multifunctionality to aerogels while maintaining their inherent mic... Although multifunctional aerogels are expected to be used in applications such as portable electronic devices,it is still a great challenge to confer multifunctionality to aerogels while maintaining their inherent microstructure.Herein,a simple method is proposed to prepare multifunctional NiCo/C aerogels with excellent electromagnetic wave absorption properties,superhydrophobicity,and self-cleaning by water-induced NiCo-MOF self-assembly.Specifically,the impedance matching of the three-dimensional(3D)structure and the interfacial polarization provided by CoNi/C as well as the defect-induced dipole polarization are the primary contributors to the broadband absorption.As a result,the prepared NiCo/C aerogels have a broadband width of 6.22 GHz at 1.9 mm.Due to the presence of hydrophobic functional groups,CoNi/C aerogels improve the stability in humid environments and obtain hydrophobicity with large contact angles>140°.This multifunctional aerogel has promising applications in electromagnetic wave absorption,resistance to water or humid environments. 展开更多
关键词 MOF aerogel self-cleanING Electromagnetic wave absorption HYDROPHOBIC
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Comparative Study of Structure and Property Changes in Corrosive Media for Self-cleaning Superhydrophobic Magnesium Alloys 被引量:2
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作者 史雪婷 ZHU Yali +1 位作者 LIU Yanhua 冯利邦 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第2期410-416,共7页
Magnesium alloys with superhydrophobicity are constructed by controlling rough surface structure and grafting long hydrophobic alkyl chains. Changes of morphology, phase structure, chemical composition as well as wett... Magnesium alloys with superhydrophobicity are constructed by controlling rough surface structure and grafting long hydrophobic alkyl chains. Changes of morphology, phase structure, chemical composition as well as wettability, corrosion resistance of superhydrophobic magnesium alloy upon immersing in corrosive media are investigated comparatively. Meanwhile, the contaminating particles on as-prepared superhydrophobic surfaces can be taken away easily by rolling water droplets. Therefore, the results show that as-prepared superhydrophobic magnesium alloys exhibit enhanced corrosion resistance and self-healing performance. Finally, anti-corrosion and self-cleaning mechanisms are deduced. It can be concluded that it is an effective strategy of preparing superhydrophobic surfaces for improving the corrosion resistance and selfcleaning performance of magnesium alloys. 展开更多
关键词 MAGNESIUM alloy SUPERHYDROPHOBICITY ANTI-CORROSION self-cleanING
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Application of Sol Self-Clean Bonded Al_2O_3-SiC-C Castable for Iron Runner 被引量:3
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作者 XU Guotao ZHANG Honglei +3 位作者 CHEN Huasheng WANG Yue LI Huaiyuan XIONG Yafei 《China's Refractories》 CAS 2006年第3期10-12,共3页
The properties and microstructure of sol self-clean bonded Al2O3-SiC-C castable in iron runner were studied, and the relation between the amount of sol self- clean binder and the properties of castable were discussed.... The properties and microstructure of sol self-clean bonded Al2O3-SiC-C castable in iron runner were studied, and the relation between the amount of sol self- clean binder and the properties of castable were discussed. It is believed that the addition of sol self-clean binder can improve the compressive strength, but has little effect on the bulk density and the apparent porosity, which enable the castable to be applicable in different conditions. 展开更多
关键词 Sol self-clean castable Blast furnace Iron runner Alumina-Silicon carbide-carbon material
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Self-cleaning glass coated with Fe^(3+)-TiO_2 thin film 被引量:2
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作者 卢安贤 林娜 +1 位作者 李雪 谭常优 《Journal of Central South University of Technology》 2004年第2期124-127,共4页
The self-cleaning glass coated with Fe3+-TiO2 photocatalytic thin film was prepared by sol-gel process from the system Ti(OC4H9)4-NH(C2H4OH)2-C2H5OH-H2O containing FeCl3. The microstructure and properties of the f... The self-cleaning glass coated with Fe3+-TiO2 photocatalytic thin film was prepared by sol-gel process from the system Ti(OC4H9)4-NH(C2H4OH)2-C2H5OH-H2O containing FeCl3. The microstructure and properties of the film were studied using differential thermal analysis-thermogravimetry(DTA-TG), X-ray diffration(XRD) and scanning electron microscope(SEM). The transmittance of the self-cleaning glass was measured by using UV-Vis spectrometer. The effects of content of Fe3+ and the thickness of Fe3+-TiO2 thin film on the photocatalytic activity were examined. The results show that the photocatalytic thin films are mainly composed of Fe3O4 and TiO2 particles within 10100 nm. The appropriate amount of Fe3+ is effective for improving the photocatalytic activities of TiO2. The best photocatalytic activity is obtained when the molar ratio of Fe3+ to TiO2 is 0.005 and the glass is coated with 9 layers. 展开更多
关键词 coating Fe^(3+) TiO_2 self-cleaning glass PHOTOCATALYSIS DEGRADATION
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Superhydrophobic Micro/Nanostructured Copper Mesh with Self-Cleaning Property for E ective Oil/Water Separation 被引量:1
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作者 Tai-heng Zhang Tao Yan +2 位作者 Guo-qing Zhao Wenjihao Hu Fei-peng Jiao 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第5期635-642,共8页
In this work, a simple method was carried out to successfully fabricate superoleophilic and superhydrophobic N-dodecyltrimethoxysilane@tungsten trioxide coated copper mesh. The as-fabricated copper mesh displayed prom... In this work, a simple method was carried out to successfully fabricate superoleophilic and superhydrophobic N-dodecyltrimethoxysilane@tungsten trioxide coated copper mesh. The as-fabricated copper mesh displayed prominent superoleophilicity and superhydrophobicity with a huge water contact angle about 154.39° and oil contact angle near 0° Moreover, the coated copper mesh showed high separation efficiency approximately 99.3%, and huge water flux about 9962.3 L·h^-1·m-2, which could be used to separate various organic solvents/ water mixtures. Furthermore, the coated copper mesh showed favorable stability that the separation efficiency remained above 90% after 10 separation cycles. Benefiting from the excellent photocatalytic degradation ability of tungsten trioxide, the coated copper mesh possessed the self-cleaning capacity. Therefore, the mesh contaminated with lubricating oil could regain superhydrophobic property, and this property of self-cleaning permitted that the fabricated copper mesh could be repeatedly used for oil and water separation. 展开更多
关键词 SUPERHYDROPHOBICITY MICRO/NANOSTRUCTURE TUNGSTEN TRIOXIDE self-cleanING Oil/water separation
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Self-Cleaning Properties of Vanadium Doped TiO<sub>2</sub>Sol-Gel Derived Thin Films 被引量:1
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作者 Mehrnoush Mokhtarimehr Akbar Eshaghi Mahmoud Pakshir 《New Journal of Glass and Ceramics》 2013年第3期87-90,共4页
In this study, vanadium doped TiO2 thin films were deposited on glass substrates using a sol-gel dip-coating process. X-Ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR) and UV-Vis spectrophotomete... In this study, vanadium doped TiO2 thin films were deposited on glass substrates using a sol-gel dip-coating process. X-Ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR) and UV-Vis spectrophotometer were used to characterize the structural, chemical and the optical properties of the thin films. The photo-catalytic activities of films were investigated by methylene blue degradation. Water contact angle on the film surfaces was measured by a water contact angle analyzer. The results indicated that vanadium doping had a significant effect on the self-cleaning properties of TiO2 thin films. 展开更多
关键词 TiO2 SOL-GEL VANADIUM DOPING self-cleanING Property
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A simple way to fabricate an aluminum sheet with superhydrophobic and self-cleaning properties
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作者 杨周 吴以治 +2 位作者 叶逸凡 公茂刚 许小亮 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第12期383-388,共6页
A superhydrophobic aluminum sheet is fabricated via a hot water immersing process and subsequently surface modification with heptadecafluorodecyltrimethoxy-silane (HTMS). As revealed by the scan electron microscopy ... A superhydrophobic aluminum sheet is fabricated via a hot water immersing process and subsequently surface modification with heptadecafluorodecyltrimethoxy-silane (HTMS). As revealed by the scan electron microscopy (SEM), X-ray diffraction (XRD), and Fourier-transform infrared spectrophotometer (FTIR) results, a rough pseudoboehmite film is formed on the aluminum sheet, and HTMS molecules are grafted on the film surface successfully. These two factors make the treated aluminum sheet present superhydrophobicity with a water contact angle larger than 160° and sliding angle less than 5°, and possess a self-cleaning property. Furthermore, the flexible superhydrophobic aluminum sheet could be pasted to a cylinder surface without destroying its superhydrophobicity. At the end, the effect of hot water treatment time on superhydrophobicity is investigated. 展开更多
关键词 SUPERHYDROPHOBIC self-cleanING surface modification
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Self-cleaning performance of a self-cleaning pre-coated steel sheet in an industrial environment
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作者 YANG Jiayun DONG Hang +2 位作者 LI Shuyuan MA Yuan DAI Yigang 《Baosteel Technical Research》 CAS 2016年第1期44-48,共5页
A type of self-cleaning pre-coated steel sheet with excellent self-cleaning performance was developed using hydrophilic surface treatment technology. To understand the self-cleaning properties of this pre-coated steel... A type of self-cleaning pre-coated steel sheet with excellent self-cleaning performance was developed using hydrophilic surface treatment technology. To understand the self-cleaning properties of this pre-coated steel sheet in an industrial environment, the Jiangjin natural environmental test station was chosen as the outdoor exposure test to be conducted, and the self-cleaning performance of the steel sheet was studied by measuring the water contact angle, stain resistance factor, color difference, and gloss of the steel sheet during the outdoor exposure test. The water contact angle of the self-cleaning steel sheet quickly decreased from 84° to 29° during the outdoor exposure test, and the steel sheet showed excellent hydrophilic properties, which were beneficial to the spread of rain drops and detrimental to the accumulation of the surface pollutants. After an outdoor exposure of 12 months,the self-cleaning steel sheet had a higher stain resistance and cleaner surface than the comparison sample sheet, demonstrating its excellent self-cleaning properties. Moreover, the color difference and gloss rate of the self-cleaning steel 'sheet were similar to those of the pre-coated steel sheet without hydrophilic surface treatment. Therefore, the hydrophilic surface treatment technology used in this study did not affect the anti-aging property of the self-cleaning steel sheet. 展开更多
关键词 self-cleanING pre-coated steel sheet outdoor exposure stain resistance HYDROPHILICITY
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Antireflective and Self-cleaning Properties of SiO2/TiO2 Double-Layer Films Prepared by Cost-Effective Sol-Gel Process
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作者 Hui Zhang Duo-wang Fan +1 位作者 Tian-zhi Yu Cheng-long Wang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2015年第6期-,共4页
关键词 SiO2/TiO2 double-layer films ANTIREFLECTIVE self-cleanING Sol-gel process
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Super-hydrophobic and Self-cleaning PVDF Film Fabricated by Chemical Bath Deposition
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作者 郑振荣 顾振亚 +2 位作者 霍瑞亭 叶永红 张之秋 《Journal of Donghua University(English Edition)》 EI CAS 2010年第4期451-457,共7页
Self-cleaning surfaces have received a great deal of attention recently,both in theoretical studies and commercial applications.The self-cleaning surface of lotus leaf is hydrophobic and rough,showing a micro-and nano... Self-cleaning surfaces have received a great deal of attention recently,both in theoretical studies and commercial applications.The self-cleaning surface of lotus leaf is hydrophobic and rough,showing a micro-and nano-scale morphology.The micro-reliefs of lotus leaf were mimicked using polyvinylidene fluoride(PVDF)film and nano-scale peaks on the top of the micro-reliefs were implemented by the reaction between methyltrichlorosilane and the reactive groups of PVDF film treated by oxygen plasma.A lotus-leaf-like surface of the PVDF film was clearly observed by scanning electronic microscopy(SEM)and atomic force microscope(AFM).Elemental composition analysis by X-ray photoelectron spectroscopy(XPS)revealed that the material of the nanostructure of PVDF film was polymethylsiloxane.The superhydrophobic property of the mimicked self-cleaning surface was validated by the water contact angle and sliding angle on the lotus-leaf-like PVDF film,which were 156.6° and 4°,respectively.In this case,water droplets can easily move across the PVDF film surface,carrying dirt particles away,leaving no contamination. 展开更多
关键词 lotus effect self-cleanING superhydrophobic property chemical bath deposition
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Rendering of Cellulose Acetate Fabrics Self-Cleaning through Treatment with TiO<sub>2</sub>Nano Particles
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作者 M. A. Ramadan W. M. Raslan +1 位作者 E. M. El-Khatib A. Hebeish 《Materials Sciences and Applications》 2012年第12期872-879,共8页
Finishing using TiO2-nanosol treatment of cellulose acetate (CA) fabrics before and after the latter were pretreated with H2O2was undertaken with a view to impart unique properties to CA fabrics, notably, self-cleanin... Finishing using TiO2-nanosol treatment of cellulose acetate (CA) fabrics before and after the latter were pretreated with H2O2was undertaken with a view to impart unique properties to CA fabrics, notably, self-cleaning. Finishing was performed as per the pad-dry-cure method. The finishing treatment involved dispersing the nano-sized TiO2particles in a mixture of water and ethylene glycol (1:1) and application of the dispersions to CA fabrics was made under a variety of conditions. Self cleaning ability of the fabrics is favored by 1) increasing the concentration of TiO2-nanosol to certain limit;2) prolongation of curing time up to 15 second;3) raising the microwave power from 80% to 100% but with the certainty that power of 90% is the most proper. Besides, exposure time-to UV radiation-up to 90 minutes is essential to have remarkable self cleaning properties while keeping other technical properties, namely, strength, roughness and wettability practically unaltered. Incorporation of binder in the finishing pad-bath helps stabilizing the deposition of TiO2 with excellent self-cleaning. Pretreatment of CA fabrics with H2O2 is a pre requisite to guarantee excellent self-cleaning ability. Thermofixation and microwave fixation produces fabrics with very comparable technical properties. 展开更多
关键词 self-cleanING Cellulose ACETATE Microwave Thermofixation Tio2-Nano Particles
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Green Superhydrophobic Paper with Self-cleaning Properties Prepared via One-step Impregnation
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作者 Xiangbin Zhang Shanshan Gao +4 位作者 Xiaoming Song Jiale Wang Xunqian Wu Fushan Chen Shiyuan Xie 《Paper And Biomaterials》 CAS 2023年第4期9-19,共11页
In this study,a green and pollution-free multifunctional superhydrophobic paper-based material was prepared using a simple and efficient dipping method.The superhydrophobic paper with a water contact angle(WCA)of 160&... In this study,a green and pollution-free multifunctional superhydrophobic paper-based material was prepared using a simple and efficient dipping method.The superhydrophobic paper with a water contact angle(WCA)of 160°was prepared by attaching micro-and nanocomposite particles,made of stearic acid-modified chitosan and two kinds of titanium dioxide(TiO_(2))nanoparticles of different sizes,to a paper substrate.The surface morphology,elemental composition,and wetting properties of the coatings were examined using scanning electron microscopy(SEM),X-ray photoelectron spectroscopy(XPS),Fourier transform infrared spectroscopy(FT-IR),and contact angle measurements.Additionally,superhydrophobic coatings exhibited good self-cleaning properties,liquid repellency,ease of repair,and antifouling properties in organic solutions. 展开更多
关键词 SUPERHYDROPHOBIC IMPREGNATION green PAPER-BASED self-cleanING
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A Review on Self-Cleaning Coatings for Tunnels
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作者 Yu Han Ang Zhan 《Journal of Architectural Research and Development》 2022年第1期13-19,共7页
Self-cleaning coatings for tunnels can effectively remove dust and stains accumulated over the surface of tunnel linings and their appurtenances due to the closed environment and poor ventilation.This paper systematic... Self-cleaning coatings for tunnels can effectively remove dust and stains accumulated over the surface of tunnel linings and their appurtenances due to the closed environment and poor ventilation.This paper systematically introduces the current research status of self-cleaning coatings for tunnels,focusing on the development of super-hydrophobic self-cleaning coatings,superamphiphobic self-cleaning coatings,exhaust gas degradation coatings,fire retardant coatings,and tunnel de-icing coatings.The advantages and disadvantages of the five functional coatings are then briefly described,and the problems of self-cleaning coatings for tunnels at the present stage are pointed out.Finally,the development direction of self-cleaning coatings for tunnels is proposed to provide a reference for the research and application of self-cleaning coatings for tunnels. 展开更多
关键词 Tunnel coatings self-cleanING SUPER-HYDROPHOBIC Superamphiphobic Fire retardant Exhaust gas degradation DE-ICING
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Multifunctional cellular carbon foams derived from chitosan toward self-cleaning, thermal insulation, and highly efficient microwave absorption properties 被引量:4
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作者 Beibei Zhan Yanling Hao +7 位作者 Xiaosi Qi Yunpeng Qu Junfei Ding Jing-liang Yang Xiu Gong Yanli Chen Qiong Peng Wei Zhong 《Nano Research》 SCIE EI CSCD 2024年第3期927-938,共12页
To adapt the practical demand,designing and constructing the multifunctional microwave absorbers(MAs)is the key future direction of research and development.However,effective integrating the multiple functions into a ... To adapt the practical demand,designing and constructing the multifunctional microwave absorbers(MAs)is the key future direction of research and development.However,effective integrating the multiple functions into a single material remains a huge challenge.Herein,cellular carbon foams(CCFs)with different porous structures were elaborately designed and fabricated in high efficiency through a facile continuous freeze-drying and carbonization processes using a sustainable biomass chitosan as the precursor.The obtained results revealed that the thermal treated temperature and g-C_(3)N_(4) amount played a great impact on the carbonization degrees,pore sizes,and morphologies of CCFs,which led to their tunable electromagnetic(EM)parameters,improved conduction loss,and polarization loss abilities.Owing to the special cellular structure,the designed CCFs samples simultaneously displayed the strong absorption capabilities,broad absorption bandwidths,and thin matching thicknesses.Meanwhile,the as-prepared CCFs exhibited the strong hydrophobicity and good thermal insulation,endowing its attractive functions of self-cleaning and thermal insulation.Therefore,our findings not only presented a facile approach to produce different porous structures of CCFs,but also provided an effective strategy to develop multifunctional high-performance MAs on basis of three-dimensional CCFs. 展开更多
关键词 multifunctional microwave absorbers carbon foams cellular structure self-cleanING thermal insulation
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Self-cleaning effect and secondary swirling clean gas for suppressing particle deposition on vortex finder of gas cyclones 被引量:2
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作者 Zhanpeng Sun Huandi Yang +3 位作者 Kaixuan Zhang Zhiyuan Wang Zhenyuan Hong Guang Yang 《Particuology》 SCIE EI CAS CSCD 2024年第7期72-87,共16页
In order to suppressing the particle deposition on vortex finder,a series of gas cyclones with the secondary swirling clean gas were developed inspired by the gas purge effect.Effects of the width and extension length... In order to suppressing the particle deposition on vortex finder,a series of gas cyclones with the secondary swirling clean gas were developed inspired by the gas purge effect.Effects of the width and extension length of the flow channel as well as the secondary inlet velocity and running time on the particle deposition pattern,the deposited particle mass and the cyclones'performance were experimentally investigated,respectively.The results show that the ultrafine particles(Stokes number Stk<0.0358)are mainly loose deposited on the walls under the secondary gas.Compare to the conventional cyclone with single tangential inlet,the total deposited particle mass of the improved cyclone has a maximum reduction more than 60%,and the collecting efficiency is increased up to 97.5%under the basically same pressure drop.The corresponding no-deposition area is increased by about 13%,and remains constant in spite of extending the running time.Moreover,an interesting phenomenon named"self-cleaning effect"of the vortex finder was captured for the gas cyclones,and mechanism of the secondary clean gas on the particle deposition is preliminarily analyzed.The results can deepen the understanding of the particle deposition on the vortex finder and guide the design of the anti-coking gas cyclones. 展开更多
关键词 CYCLONES Vortex finder Particle deposition Gas purge effect self-cleaning effect
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Hybrid superamphiphobic anti-corrosion coating with integrated functionalities of liquid repellency,self-cleaning,and anti-icing
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作者 Binbin Zhang Guang Yang +2 位作者 Weichen Xu Jizhou Duan Baorong Hou 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第17期256-268,共13页
Superhydrophobic materials have shown tremendous potential in various fields.However,the adhesion,wetting,and pinning of low-surface-tension liquids greatly limit their multifunctional applications.Therefore,the creat... Superhydrophobic materials have shown tremendous potential in various fields.However,the adhesion,wetting,and pinning of low-surface-tension liquids greatly limit their multifunctional applications.Therefore,the creation of superamphiphobic coatings that combine superhydrophobic and superoleophobic properties through a simple preparation strategy is desirable.In this study,we successfully developed an organic-inorganic hybrid superamphiphobic coating on Q235 carbon steel using aluminum oxide nanopar-ticles,organosilanes,and waterborne epoxy resin via a versatile spray-coating technique.The coating ex-hibited high contact angles(>151°)and low sliding angles(<7°)for water and oil liquids,demonstrating excellent superamphiphobic characteristics.Electrochemical tests demonstrated significant improvements in charge transfer resistance and low-frequency modulus for the superamphiphobic coating.The corro-sion potential shifted positively by 590 mV,and the corrosion current density decreased by four orders of magnitude.Additionally,the coating endured 480 h of salt spray and 2400 h of outdoor atmospheric exposure,showcasing superior anti-corrosion capacity.Freezing tests of water droplets at-10℃ and-15℃ confirmed that the coating significantly prolonged the freezing time with reduced ice adhesion strength.We believe that the designed superamphiphobic coating with integrated functionalities of selfcleaning,anti-corrosion,anti-icing,and anti-liquid-adhesion can provide important solutions for extending the lifespan of materials in marine and industrial environments. 展开更多
关键词 SUPERHYDROPHOBIC Superamphiphobic ANTI-CORROSION ANTI-ICING self-cleanING
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A Trimode Self-Cleaning Composite Membrane with an Eco-friendly Substrate for Energy-Saving Wastewater Recycling
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作者 Yuelin Yu Yongtao Yu +3 位作者 Hongyi Wu Jian Shi Hideaki Morikawa Chunhong Zhu 《Advanced Fiber Materials》 SCIE EI CAS 2024年第5期1495-1508,共14页
A separation membrane with low or clean energy costs is urgently required for energy-saving and long-term service since electric energy generated from burning non-renewable resources will gradually cause a burden to t... A separation membrane with low or clean energy costs is urgently required for energy-saving and long-term service since electric energy generated from burning non-renewable resources will gradually cause a burden to the environment.At present,the conventional membrane being used in one mode is critical for a variety of scenarios in real life,which suffers from a trade-off effect,short service life,being difficult to recycle after damage.Herein,we report a trimode purification membrane composed of an eco-friendly polycaprolactone(PCL)substrate and functional graphene dioxide/polyaniline(GO/PANI)particles.Due to the photothermal transfer and photocatalytic properties of GO/PANI blend,the composite membrane can absorb 97.44%solar energy to handle natural seawater or mixed wastewater,which achieves a high evaporation rate of 1.47 kg m^(-2)h^(-1)in solar-driven evaporation mode.For the photocatalytic adsorption-degradation mode,93.22%of organic dyes can be adsorbed and degraded after 12 h irradiation under 1 kW m^(-2).Moreover,electric-driven cross-flow filtration mode as a supplement also shows effective rejection over 99%for organic dyes with a high flux over 40 L m^(-2)h^(-1)bar^(-1).The combination of solar-driven evaporation,photocatalytic adsorption-degradation,and electric-driven cross-flow filtration demonstrates a prospective and sustainable strategy to generating clean water from sewages. 展开更多
关键词 Trimode purification Eco-friendly substrate self-cleaning and anti-fouling ENERGY-SAVING Seawater desalination
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Ultra-low reflection electromagnetic interference shielding nanofiber film with effective solar harvesting and self-cleaning
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作者 Bin Lyu Yunchuan Wang +3 位作者 Dangge Gao Shihao Guo Yingying Zhou Jianzhong Ma 《Collagen and Leather》 EI CAS 2024年第1期47-60,共14页
It is urgent to develop low-reflection electromagnetic interference shielding material to shield electromagnetic waves(EMW)and reduce their secondary radiation pollution.Herein,an electromagnetic interference shieldin... It is urgent to develop low-reflection electromagnetic interference shielding material to shield electromagnetic waves(EMW)and reduce their secondary radiation pollution.Herein,an electromagnetic interference shielding nanofiber film is composed of ZnO and carbon nanofiber(CNF)via electrospinning and carbonization approachs,and subsequently coating perfuorooctyltriethoxysilane as a protective layer.On the one hand,ZnO coated by porous carbon,which is derived from ZIF-8,endows the nanofiber film low reflection property through optimizing impedance matching between free space and the nanofiber film.On the other hand,the nanofiber film possesses high electromagnetic interference shielding efficiency,which is beneficial by excellent electrical conductivity of CNF derived from waste leather scraps.Furthermore,the nanofiber film involves abundant interface,which contributes to high interfacial polarization loss.Thus,the nanofiber film with a thickness of 250 pm has electrical conductivity of 53 S/m and shielding efficiency of 50 dB.The reflection coefficient of the nanofiber film is inferior to 0.4 indicates that most of EMW are absorbed inside the materials and the nanofiber film is effective in reducing secondary radiation contamination of electromagnetic waves.Fortunately,the nanofiber film exhibits outstanding solar harvesting performance(106℃at 1 sun density)and good self-cleaning performance,which ensure that the nanofiber film can work in harsh environments.This work supplies a credible reference for fabricating low-reflection electromagnetic shielding nanofiber film to reduce secondary radiation pollution and facilitates the upcycling of waste leather scraps. 展开更多
关键词 Electromagnetic interference shielding Nanofiber film Solar harvesting self-cleanING
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密闭空间微生物消杀方法研究进展
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作者 戴荣继 郭子沐 张莹 《北京理工大学学报》 EI CAS 北大核心 2025年第1期87-104,共18页
空间站是一种在近地轨道长时间运行、可供多名航天员巡访、长期工作和生活的载人航天器,在密闭恒温恒湿的环境下,微生物的数量会快速增加,如果不加以控制,就会危害宇航员的身体健康,腐蚀或损坏航天器材,对航天安全产生不利的影响.通过... 空间站是一种在近地轨道长时间运行、可供多名航天员巡访、长期工作和生活的载人航天器,在密闭恒温恒湿的环境下,微生物的数量会快速增加,如果不加以控制,就会危害宇航员的身体健康,腐蚀或损坏航天器材,对航天安全产生不利的影响.通过阐明空间微生物污染的主要来源与空间微生物污染对宇航员健康和设备安全方面造成的危害,综述了各种杀菌消毒方法如高温、辐射、环氧乙烷、臭氧、超临界流体、气体等离子体、光催化氧化、自清洁表面和诱导发光聚集等的作用原理、应用场景以及各方法可否应用于空间环境的优缺点,并且对适用于空间微生物污染防控的方法进行了评价. 展开更多
关键词 空间生物学 空间站消毒杀菌方法 超临界流体 气体等离子体 光催化氧化 自清洁表面 聚集诱导发光
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