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| 1 | A review on China's constructed wetlands in recent three decades:Application and practice显示文摘Constructed wetlands(CWs)have been introduced to and developed in China for environmental engineering over the most prosperous three decades(1990–2020).To study the origin,development process,and future trend of CWs,this review summarized a wide range of literatures between 1990 and 2020 by Chinese authors.Firstly,the publication number over years,research highlights,and the author contributions with the most published papers in this field were conducted through bibliometric analysis.Secondly,the most principal components of CWs,substrates and macrophytes were summarized and analyzed.Thirdly,the typical application cases from traditional CWs,pond systems to combined pond-wetland systems were presented.In China,CWs were predominately distributed in the east of the so-called'Hu Huanyong Line'.Therefore CWs were limited by the socio-economic level and climatic conditions.It is unquestionable that the overall level of China's CWs has improved significantly,and one of the most prominent features has started towards the plural pattern development.There has been a trend of large-scale or low-cost CW application in the recent years.However,lifecycle research and management are required for better strategies in the future. | Hong Zhang Wenzhong Tang Weidong Wang Wei Yin Honglei Liu Xiaomin Ma Yiqi Zhou Pei Lei Dongyang Wei Litian Zhang Cao Liu Jinmiao Zha | 2021 | Journal of Environmental Sciences2021,33,6: | 13 |
| 2 | 热处理前后非脱气交联聚乙烯的介电性能和机械性能分析(英文)显示文摘In order to investigate the influence of cross-linking byproducts on dielectric and mechanical properties of 110k V cross-linked polyethylene(XLPE)cable insulation,we selected the undegassed XLPE cable insulation which is heated at 70℃in laboratory for different duration in terms of heating time,to prepare XLPE samples with different mass loss ratio.We carried out Fourier transform infrared spectroscopy(FTIR)test,electric breakdown test at 50 Hz,pulsed electro-acoustic(PEA)measurement and tensile test for XLPE samples.In FTIR spectrogram,the characteristic absorption peaks were observed to appear at 1 680 cm-1 and 1 600 cm-1,which can be related to two kinds of cross-linking byproducts includingα-methylstyrene and acetophenone.The intensity of these absorption peaks decreases with the increase of mass loss ratio.It can be proposed that the mass loss of XLPE samples in the process of thermal treatment is caused by volatiliztion ofα-methylstyrene and acetophenone.Therefore,the change of mass loss ratio can reflect the change of content ofα-methylstyrene and acetophenone in the process of thermal treatment.The results of electric breakdown test showed that the reduction ofα-methylstyrene and acetophenone leads to the enhancement of electric breakdown strength at 50 Hz.PEA measurement results showed that heterocharge is produced and accumulated when cross-linking byproducts are present,whereas no heterocharge is found whenα-methylstyrene and acetophenone are absent.The formation of heterocharge is attributed to ionization of cross-linking byproducts under electric stress.Based on these results,it can be suggested that when AC electric field is applied on XLPE samples,the occurrence of ionization of cross-linking byproducts results in the increase of free carriers in XLPE insulation,leading to a lower electric breakdown strength.The results of tensile test showed that tensile strength is proportional to the mass loss ratio of XLPE samples,which suggests that cross-linking byproducts can reduce the tensile strength of XLPE insulation. | LI Huan LI Jianying WANG Qimeng ZHOU Yunjie LI Honglei | 2015 | 高电压技术2015,41,4: | 11 |
| 3 | KD-S SiC_f/SiC composites with BN interface fabricated by polymer infiltration and pyrolysis process显示文摘Continuous silicon carbide fiber reinforced silicon carbide matrix(SiC_f/SiC) composites are attractive candidate materials for aerospace engine system and nuclear reactor system. In this paper, SiC_f/SiC composites were fabricated by polymer infiltration and pyrolysis(PIP) process using KD-S fiber as the reinforcement and the LPVCS as the precursor, while the BN interface layer was introduced by chemical vapor deposition(CVD) process using borazine as the single precursor. The effect of the BN interface layer on the structure and properties of the SiC_f/SiC composites was comprehensively investigated. The results showed that the BN interface layer significantly improved the mechanical properties of the KD-S SiC_f/SiC composites. The flexure strength and fracture toughness of the KD-S SiC_f/SiC composites were evidently improved from 314±44.8 to 818±39.6 MPa and 8.6± 0.5 to 23.0±2.2 MPa·m^(1/2), respectively. The observation of TEM analysis displayed a turbostratic structure of the CVD-BN interface layer that facilitated the improvement of the fracture toughness of the SiC_f/SiC composites. The thermal conductivity of KD-S SiC_f/SiC composites with BN interface layer was lower than that of KD-S SiC_f/SiC composites without BN interface layer, which could be attributed to the relative low thermal conductivity of BN interface layer with low crystallinity. | Honglei WANG Shitao GAO Shuming PENG Xingui ZHOU Haibin ZHANG Xiaosong ZHOU Bin Li | 2018 | Journal of Advanced Ceramics2018,7,2: | 10 |
| 4 | Highly conductive wear resistant Cu/Ti3SiC2(TiC/SiC) co-continuous composites via vacuum infiltration process显示文摘The MAX phase Ti3SiC2 has broad application prospects in the field of rail transit,nuclear protective materials and electrode materials due to its excellent electrical conductivity,selflubricating properties and wear resistance.Cu–Ti3SiC2 co-continuous composites have superior performance due to the continuous distribution of 3 D network structures.In this paper,the Cu/Ti3SiC2(Ti C/Si C)co-continuous composites are formed via vacuum infiltration process from Cu and Ti3SiC2 porous ceramics.The co-continuous composites have significantly improved the flexural strength and conductivity of Ti3SiC2 due to the addition of Cu,with the conductivity up to 5.73×10^5 S/m,twice as high as the Ti3SiC2 porous ceramics and five times higher than graphite.The reaction between ingredients leads to an increase in the friction coefficient,while the hard reaction products(Ti Cx,Si C)lower the overall wear rate(1×10^–3 mm^3/(N·m)).Excellent electrical conductivity and wear resistance make co-continuous composites more advantageous in areas such as rail transit. | Dexuan YANG Yu ZHOU Xingheng YAN Honglei WANG Xingui ZHOU | 2020 | Journal of Advanced Ceramics2020,9,1: | 4 |
| 5 | Recent advances in active control of turbulent boundary layers显示文摘In this article,we review the recent progress in active control of a turbulent boundary layer for skin-friction drag reduction.Near-wall coherent structures,which are closely associated with large skin-friction drag and are thus often the target to be manipulated,are discussed briefly,providing a rationale of various control strategies.Open-and closed-loop controls are extensively reviewed,largely focusing on techniques and drag-reduction mechanisms.Finally,some concluding remarks are given. | ZHOU Yu BAI HongLei | 2011 | Science China(Physics,Mechanics & Astronomy)2011,54,7: | 3 |
| 6 | Pathogenesis of allergic diseases and implications for therapeutic interventions显示文摘Allergic diseases such as allergic rhinitis (AR), allergic asthma (AAS), atopic dermatitis (AD), food allergy (FA), and eczema aresystemic diseases caused by an impaired immune system. Accompanied by high recurrence rates, the steadily rising incidence ratesof these diseases are attracting increasing attention. The pathogenesis of allergic diseases is complex and involves many factors,including maternal-fetal environment, living environment, genetics, epigenetics, and the body’s immune status. The pathogenesisof allergic diseases exhibits a marked heterogeneity, with phenotype and endotype defining visible features and associatedmolecular mechanisms, respectively. With the rapid development of immunology, molecular biology, and biotechnology, manynew biological drugs have been designed for the treatment of allergic diseases, including anti-immunoglobulin E (IgE), antiinterleukin(IL)-5, and anti-thymic stromal lymphopoietin (TSLP)/IL-4, to control symptoms. For doctors and scientists, it is becomingmore and more important to understand the influencing factors, pathogenesis, and treatment progress of allergic diseases. Thisreview aimed to assess the epidemiology, pathogenesis, and therapeutic interventions of allergic diseases, including AR, AAS, AD,and FA. We hope to help doctors and scientists understand allergic diseases systematically. | Ji Wang Yumei Zhou Honglei Zhang Linhan Hu Juntong Liu Lei Wang Tianyi Wang Haiyun Zhang Linpeng Cong Qi Wang | 2023 | Signal Transduction and Targeted Therapy2023,8,4: | 3 |
| 7 | Thermal spallation in rock revealed by ultraviolet laser-induced voltage显示文摘In the petroleum industry, perforation plays an important role in the exploitation of oil and gas and a considerable number of studies have been conducted with the objective of improving the recovery rates of oil and gas (1,2)Lasers have been used to drill holes in a wide variety of rock types with the advantages of feasibility, cost, benefits, and environmental impact as determined by the Gas Technology Institute [1]. | Jing Zhu HongLei Zhan Kun Zhao XinYang Miao Qiong Zhou WenZheng Yue | 2019 | Science China(Physics,Mechanics & Astronomy)2019,62,7: | 2 |
| 8 | A Putative Chloroplast-Localized Ca2+/H+ Antiporter CCHA1 Is Involved in Calcium and pH Homeostasis and Required for PSII Function in Arabidopsis显示文摘钙为叶绿体,不是在仅仅是重要的它的光合而且 nonphotosynthetic 功能。多重 Ca 2+/H+ transporters 和隧道在血浆膜和植物房间的细胞器膜被描述了并且学习;然而,分子的身份和叶绿体 Ca 2+/H+ antiporters 的生理的角色仍然保持未知。这里,我们报导 UPF0016 家庭,的一个成员的鉴定和描述 CCHA1 (叶绿体局部性的潜在的 Ca 2+/H+ antiporter ) ,在 Arabidopsis thaliana。我们观察到 ccha1 异种植物开发了苍白的绿叶子并且与损害 photosystem II (PSII ) 功能一起显示出严重地阻碍的生长。CCHA1 本地化到 PSII 核心子单元和演变氧的建筑群的叶绿体,和层次显著地与野类型相比在 ccha1 异种被减少。在高 Ca 2+ 集中, Arabidopsis CCHA1 部分救了酵母 gdt1 0 异种的生长缺点,它在 Ca 2+/H+ antiporter 是有缺点的。ccha1 异种植物也在 pH 显示出重要敏感到 CaCl 2 和 MnCl 2, 以及变化的高集中。一起拿这些结果,我们建议 CCHA1 可能在 Arabidopsis 与批评功能把通常认为的叶绿体局部性的 Ca 2+/H+ antiporter 编码为 PSII 的规定并且在叶绿体 Ca 2+ 和 pH 动态平衡。 | Chao Wang Weitao Xu Honglei Jin Taijie Zhang Jianbin Lai Xuan Zhou Shengchun Zhang Shengjie Liu Xuewu Duan Hongbin Wang Changlian Peng Chengwei Yang | 2016 | Molecular Plant2016,9,8: | 2 |
| 9 | Genomic evidence of lung carcinogenesis associated with coal smoke in Xuanwei area, China显示文摘Xuanwei area, in southwestern China,harbors the highest female lung cancer rate in the country(Supplementary Table 1) [1]. Epidemiological studies have shown that lung cancer incidence in Xuanwei area is associated with the use of different types of local coal for household cooking and heating [2]. The genomic landscape of Xuanwei female adenocarcinoma(XWFA), the most distinctive feature of lung cancer in Xuanwei, has yet to be elucidated systematically. Here,we provide the fundamental resource of genomic datasets for further exploration of XWFA molecular mechanisms and development of targetable therapy. | Honglei Zhang Chao Liu Li Li Xu Feng Qing Wang Jihua Li Shaobin Xu Shuting Wang Qianlu Yang Zhenghai Shen Jinhua Su Xiaosan Su Ruifen Sun Xuhong Zhou Junliang Wang Yongchun Zhou Baowei Jiao Wanbao Ding Xianbao Cao Yue Wang Yunchao Huang Lianhua Ye | 2021 | National Science Review2021,8,12: | 2 |
| 10 | Advanced inorganic/polymer hybrid electrolytes for all-solid-state lithium batteries显示文摘Solid-state batteries have become a frontrunner in humankind’s pursuit of safe and stable energy storage systems with high energy and power density.Electrolyte materials,currently,seem to be the Achilles’heel of solid-state batteries due to the slow kinetics and poor interfacial wetting.Combining the merits of solid inorganic electrolytes(SIEs)and solid polymer electrolytes(SPEs),inorganic/polymer hybrid electrolytes(IPHEs)integrate improved ionic conductivity,great interfacial compatibility,wide electrochemical stability window,and high mechanical toughness and flexibility in one material,having become a sought-after pathway to high-performance all-solid-state lithium batteries.Herein,we present a comprehensive overview of recent progress in IPHEs,including the awareness of ion migration fundamentals,advanced architectural design for better electrochemical performance,and a perspective on unconquered challenges and potential research directions.This review is expected to provide a guidance for designing IPHEs for next-generation lithium batteries,with special emphasis on developing high-voltage-tolerance polymer electrolytes to enable higher energy density and three-dimensional(3D)continuous ion transport highways to achieve faster charging and discharging. | Xiaoyu JI Yiruo ZHANG Mengxue CAO Quanchao GU Honglei WANG Jinshan YU Zi-Hao GUO Xingui ZHOU | 2022 | Journal of Advanced Ceramics2022,11,6: | 2 |
| 11 | Notch2/Hes-1 Pathway Plays an Important Role in Renal Ischemia and Reperfusion Injury-Associated Inflammation and Apoptosis and the γ-Secretase Inhibitor DAPT has a Nephroprotective Effect显示文摘 | RenFa Huang QiaoLing Zhou Pouranan Veeraragoo HongLei Yu Zhou Xiao | 2011 | Renal Failure2011,,2: | 1 |
| 12 | Precise quantification of the antibacterial activity of chitosan by NB medium neutralizer显示文摘In the present research,nutrient broth(NB)medium was identified to be able to neutralize the antibacterial activity of chitosan and its derivatives.Therefore,an improved test method independent of NB medium was proposed to precisely quantify the antibacterial effectiveness and efficiency of chitosan.The minimum bactericidal concentration(MBC)of chitosan was 60μg m L^(-1) against S.aureus and E.coli,and 0.01%(w/v)chitosan could kill 100%of bacteria within 3 min.From another point of view,the neutralizing efficiency of NB could be tripled by adding 25 g L^(-1) of sodium chloride.Then the neutralizing mechanism of NB medium was ascribed to flocculation between chitosan and protein.Adding extra sodium chloride could significantly reduce the size of floccules,and smaller floccules would lose the ability of binding with bacteria directly,showing higher neutralizing rate on the macro scale. | Mengyang Wang Shichao Bi Jianhui Pang Zhongzheng Zhou Di Qin Honglei Wang Xiaojie Cheng Xiguang Chen | 2021 | Journal of Materials Science & Technology2021,,11: | 1 |
| 13 | 2D SiC/SiC composite for flow channel insert (FCI) application显示文摘 | Haijiao Yu Xingui Zhou Honglei Wang Shuang Zhao Yican Wu Qunying Huang Zhiqiang Zhu Zelan Huang | 2010 | Fusion Engineering and Design2010,,7: | 1 |
| 14 | Microstructure, mechanical properties and reaction mechanism of KD-1 SiC f /SiC composites fabricated by chemical vapor infiltration and vapor silicon infiltration显示文摘 | Wang Honglei Zhou Xingui Yu Jinshan Cao Yingbin Liu Rongjun | 2010 | Materials Science & Engineering A2010,,6: | 1 |
| 15 | Partial discharge signal obtain based on adaptive wavelet with mathematical morphology显示文摘 | Zheng Wei Zhou Xichao Xu Honglei | 2012 | International Confer ence on Applied Physics and Industrial Engineering2012,24,: | 1 |
| 16 | Aqueous Synthesis of Covalent Organic Frameworks as Photocatalysts for Hydrogen Peroxide Production显示文摘Covalent organic frameworks(COFs)are crystalline porous polymers with designable structures and properties.Their crystallization typically relies on trialand-error experimentation involving harsh conditions,including organic solvents,presenting significant obstacles for rational design and large-scale production.Herein,we present a liquid crystal-directed synthesis methodology and its implementation for up to gram-scale production of highly crystalline COFs in water and air.It is compatible with monomers of different structures,shape,size,length of side chains,and electron-donating,electron-accepting,and heterocyclic substitutions near reactive sites.Seventeen types of donor-acceptor two-dimensional COFs including four types of new ones and a three-dimensional COF with a yield of up to 94%were demonstrated,showing great generality of the method.The as-synthesized donor-acceptor COFs are organic semiconductors and contain macropores besides intrinsic mesopores which make them attractive catalysts.The production of H_(2)O_(2)under visible light in water was studied and the structure-property relationships were revealed.The production rate reached 4347μmol h^(−1)gcat^(−1),which is about 467%better than that of the benchmark photocatalyst g-C_(3)N_(4).This study will inspire the mild synthesis and scale-up of a wide spectrum of COFs and organic semiconductors as efficient catalysts,promote their structure-property investigation,and boost their applications. | Fanglin Tan Yuanyuan Zheng Zhipeng Zhou Honglei Wang Xin Dong Jing Yang Zhaowei Ou Haoyuan Qi Wei Liu Zhikun Zheng Xudong Chen | 2022 | CCS Chemistry2022,4,12: | 1 |
| 17 | Partial discharge signal obtain based on adaptive wavelet with mathematical morphology显示文摘 | ZHENG Wei ZHOU Xichao XU Honglei | 2012 | Physics Procedia2012,24,: | 1 |
| 18 | Pd immobolized on magnetic chitosan as a teterogeneous catalyst for aeetalization and hydrogenation reactions 显示文摘 | Zhou Jingbui Dong Zbengping Yang Honglei | 2013 | Applied Surface Science2013,279,: | 1 |
| 19 | Synthesis of Thin Film of a Three-Dimensional Covalent Organic Framework as Anti-counterfeiting Label显示文摘Film plays a key role in the sustainable development of our society.Freestanding thin films of two-dimensional covalent organic frameworks(coFs)have been produced by interface,spin coating,microwave-assisted synthesis,and screen printing methods and are applied in nanofitration,molecular separation,photochemical sensing,anion transport,heat conduction,and proton conduction.On the other hand,the synthesis of their three-dimensional(3D)analogues and subsequent integration in devices remains challenging.Herein,self-supporting thin films of a three-dimensionai COF with tunable thickness was created by a stearic acid mediated synthesis methodology on water surface at room temperature in air.The film could be transferred onto arbitrary substrate,and when supported on indium tin oxide glass,it exhibited irreversible electrochromism.The optical feature made it act as a one-time anti-counterfeiting label in an electrochemical device.This work will inspire the synthesis of thin films of 3D COFs as well as other 3D materials,and boost their property and application exploration. | Xin Dong Jing Yang Honglei Wang Pei Zhao Fanglin Tan Zhipeng Zhou Zhaowei Ou Li Gong Wei Liu Xudong Chen Zhikun Zheng | 2022 | Chinese Journal of Chemistry2022,40,10: | 1 |
| 20 | Discussion on Abnormal Corrosion and Material Selection of Hot Iron Ladles with Steel Scrap Addition显示文摘The abnormal corrosion of hot iron ladles was investigated.The performance,the composition and the structure of bricks for hot iron ladles were analyzed.The results show that(1)compared with the alumina-silicon carbide-carbon bricks for the ladle bottom,those for the ladle wall have more pyrophyllite and the Al2O3 content of 36.32 mass%;their bulk density,apparent porosity and cold compressive strength are lower than the requirement of industry standard;they have poor anti-oxidation performance and are oxidized to form a porous layer during service,which loosens the brick lining structure thus leading to fracture,local wear and structural damage of bricks;(2)without preheating,steel scraps are not completely melted,resulting in slag or steel attachment at the mouth or the bottom of ladles thus increasing damage of ladles;(3)and the residual bricks react with the attached slag to form low melting point phases affecting their hot properties.The refractories for the lining of hot iron ladles must be improved in combination with process changes,not entirely by raw materials replacement to reduce costs. | XU Guotao ZHAO Yuan WU Jie ZHANG Honglei LIU Li ZHANG Yanwen ZHOU Wangzhi | 2023 | China's Refractories2023,32,1: | 0 |