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26篇 您的检索式:作者名="CUI Yubo"
    题名 作者 年代 出处 被引量
1Performance of wastewater sludge ecological stabilization显示文摘在这篇文章,废水污泥生态的稳定(WWSES ) 为污泥除去,矿化作用,和稳定,以及为被介绍滤处理。试验性的结果显示了那污泥的飞行员规模的二年不稳定的固体, triphenyltetrazolium 氯化物(TTC ) 脱氢酶活动(DHA ) ,和象指示物的含水量显示出污泥稳定的过程和学位。过程显示出的除去上的观察那弄干的污泥在二年系统操作以后到达了 20%50% 全部的固体的一个内容。第一年里的污泥 TTC-DHA 显然比第二年的低,并且 TTC-DHA 趋于随污泥的弄干的时间的增加减少。污泥的总氮,全部的磷,和器官的内容从顶逐渐地减少了到弄干的污泥层的底部。与与污水污泥对待的看台上的自然看台比较,单个射击显著地更高、粗糙蛋白质,粗糙的脂肪,和在在系统的芦苇根,茎,和叶子的粗糙的纤维内容比野芦苇的高,在系统(7.38%)的芦苇根的特别粗糙的蛋白质内容显然比野芦苇(3.29%)的高。CUI Yubo SUN Tieheng ZHAO Lihui JIANG Tingliang ZHANG Liping 2008Journal of Environmental Sciences2008,20,4:12
2Effect of low-frequency electromagnetic field on the as-cast microstructure of a new super high strength aluminum alloy by horizontal continuous casting显示文摘The super high strength aluminum alloy ingots with 100 mm in diameter were cast by the process of low-frequency electromagnetic horizontal continuous casting (LFEHC) and the effect of electromagnetic field on the as-cast microstructure was studied. Results show that microstructure of the sample prepared by the LFEHC process was greatly refined. Microstructures at the border and the center of the ingots were fine, uniform and rosette-shaped. Electromagnetic frequency plays a key role in microstructure refining. Fine and uniform microstructures can be obtained with optimal electromagnetic frequency. In this experiment, under a frequency of 30 Hz the microstructure was the finest and the most uniform.Yubo ZUO Jianzhong CUI Yang WANG Xiaotao LIU Zhihao ZHAO Haitao Zhang 2005China Foundry2005,2,1:8
3Grain refinement of AZ91D alloy by intensive melt shearing and its persistence after remelting and isothermal holding显示文摘Intensive melt shearing has a significant grain refining effect on some light alloys.However,the persistence of the grain refining effect during isothermal holding and remelting is still unclear,although it is very important for the practical application.In this study,intensive melt shearing was achieved in a twin-screw mechanism to investigate its grain refining effect on AZ91D magnesium alloy.The refinement mechanism was discussed and the persistence of grain refinement after remelting and isothermal holding was also studied.A Zeiss imaging system with polarized light was used for quantitative measurement of grain size.The results show that the intensive melt shearing has a significant grain refining effect on AZ91D magnesium alloy.With the application of intensive melt shearing,the grain size of AZ91D magnesium alloy can be reduced from 530 μm(for a typical as-cast microstructure) to 170 μm,which is about 70% size reduction.The grain refinement achieved by the intensive melt shearing can be partially kept after isothermal holding and remelting.It is believed that the refinement effect was mainly due to the finer and well dispersed oxide particles formed by high intensive shearing.The smaller size of oxide particles and their slow motion velocity in the sheared melt could make important contributions to the remained grain refinement.Zuo Yubo Fan Zhongyun Cui Jianzhong 2013China Foundry2013,10,1:4
4Genomic prediction of the performance of hybrids and the combining abilities for line by tester trials in maize显示文摘The two most important activities in maize breeding are the development of inbred lines with high values of general combining ability(GCA)and specific combining ability(SCA),and the identification of hybrids with high yield potentials.Genomic selection(GS)is a promising genomic tool to perform selection on the untested breeding material based on the genomic estimated breeding values estimated from the genomic prediction(GP).In this study,GP analyses were carried out to estimate the performance of hybrids,GCA,and SCA for grain yield(GY)in three maize line-by-tester trials,where all the material was phenotyped in 10 to 11 multiple-location trials and genotyped with a mid-density molecular marker platform.Results showed that the prediction abilities for the performance of hybrids ranged from 0.59 to0.81 across all trials in the model including the additive effect of lines and testers.In the model including both additive and non-additive effects,the prediction abilities for the performance of hybrids were improved and ranged from 0.64 to 0.86 across all trials.The prediction abilities of the GCA for GY were low,ranging between-0.14 and 0.13 across all trials in the model including only inbred lines;the prediction abilities of the GCA for GY were improved and ranged from 0.49 to 0.55 across all trials in the model including both inbred lines and testers,while the prediction abilities of the SCA for GY were negative across all trials.The prediction abilities for GY between testers varied from-0.66 to 0.82;the performance of hybrids between testers is difficult to predict.GS offers the opportunity to predict the performance of new hybrids and the GCA of new inbred lines based on the molecular marker information,the total breeding cost could be reduced dramatically by phenotyping fewer multiple-location trials.Ao Zhang Paulino Pérez-Rodríguez Felix San Vicente Natalia Palacios-Rojas Thanda Dhliwayo Yubo Liu Zhenhai Cui Yuan Guan Hui Wang Hongjian Zheng Michael Olsen Boddupalli M.Prasanna Yanye Ruan Jose Crossa Xuecai Zhang 2022The Crop Journal2022,10,1:3
5Effect of vanadium on the microstructures and mechanical properties of an Al–Mg–Si–Cu–Cr–Ti alloy of 6XXX series显示文摘Yi Meng Jianzhong Cui Zhihao Zhao Yubo Zuo 2013Journal of Alloys and Compounds2013,,:1
6Effect of low fi'equency eleetro magnetic field on casting craek during DC casting superhigh strength aluminum alloy ingots 显示文摘Yubo Z Cui J Z 2005Materials Science and Engineering A2005,406,:1
7Experimental investigation of heat transport and solidification during low frequency electromagnetic hot-top casting of 6063 aluminum alloy显示文摘Xiangjie Wang Haitao Zhang Yubo Zuo Zhihao Zhao Qingfeng Zhu Jianzhong Cui 2008Materials Science & Engineering A2008,,1:1
8Effects of low frequency electromagnetic field on the as-cast microstructures and mechanical properties of superhigh strength aluminum alloy显示文摘Yubo Zuo Jianzhong Cui Jie Dong Fuxiao Yu 2005Materials Science & Engineering A2005,,1:1
9Ecologicalstabilization of thickened wastewater sludge from CAST process显示文摘CUI Yubo WU Xianhua LIU Zhisheng 2008Water Science & Technology2008,58,10:1
10Characteristics ofecological stabilized sewage sludge ( I ) 显示文摘CUI Yubo QI Zhixi GUO Zhiqian 2009Journal of ResidualsScience & Technology2009,6,3:1
11Plant growth forsewage sludge ecological stabilization 显示文摘CUI Yubo SUN Hongjie YANG Minglei 2012Journal of ResidualsScience & Technology2012,9,1:1
12Investigation on thermo-mechanical behavior of reinforced concrete energy pile with large cross-section in saturated sandy soil by model experiments显示文摘Energy piles are a new type of heat exchange systems with buried pipes in a pile foundation,which optimize a ground source heat pump system for the utilization of shallow geothermal energy.In this study,based on the principle of similarity,the thermo-mechanical behavior of the model energy pile with a large cross-section in saturated sandy soil was experimentally evaluated.The pre-cast model concrete pile with a diameter of 0.2 m and length of 1.5 m was buried in saturated sand in a steel box with dimensions of 2.5 m×2.5 m×2.0 m(length×width×height).The pile was heated using water in the polyethylene(PE)pipe,which was connected to a water cycle temperature controller.At a constant inlet water temperature of 55℃,three thermal cycles were carried out with the same heating and cooling periods and different water flow rates.The temperature distributions in the pile and soil,in addition to the pore pressure,soil pressure,and displacement of the pile,were monitored to clarify the thermo-mechanical behavior of the pile and soil.The heat transfer efficiency was analyzed based on the temperature difference and water flow rates.The measured strain at different locations in the pile under cyclic thermal loading revealed that the uneven strain that developed in a pile body should be considered for its long-term application.Furthermore,focus should be directed toward the long-term unrecoverable displacement of the energy pile due to the thermal plastic strain and thermal consolidation of the soil.Xiaohua Bao Yubo Li Tangjie Feng Hongzhi Cui Xiangsheng Chen 2020Underground Space2020,5,3:1
13Somatic mutation contributing to clonal haematopoiesis is a risk factor of recurrent stroke in first-ever acute ischaemic stroke:a prospective cohort study显示文摘Background Somatic mutation contributes to clonal haematopoiesis of indeterminate potential(CHIP)is related to age and associated with a higher risk of stroke and atherosclerotic cardiovascular disease.Here,we investigated the prognostic significance of CHIP in a large first-ever acute ischaemic stroke(AIS)cohort and explored the underlying mechanisms.Methods We studied a prospective cohort of 6016 patients who had a first-ever AIS in China.Whole-genome sequencing was performed to identify CHIP.High-sensitivity C reactive protein(hs-CRP)levels above 3 mg/L at baseline were defined as hyperinflammation.Recurrent stroke during the 3-month follow-up was the primary outcome.Results Among the 6016 patients who had a first-ever AIS,with a median age was 62 years(IQR,54.0‒70.0),3.70%were identified as CHIP carriers.The most common mutations occurred in the DNMT3A(30.0%)and TET2(11.4%)genes.During a follow-up of 3 months,the presence of CHIP was associated with recurrent stroke(HR 1.62,95%CI 1.04 to 2.51,p=0.03),recurrent ischaemic stroke(HR 1.64,95%CI 1.04 to 2.58,p=0.03)and combined vascular events(HR 1.58,95%CI 1.02 to 2.44,p=0.04)after adjusting for hsCRP levels at baseline in patients who had a first-ever AIS.Subgroup analysis demonstrated that CHIP was only associated with recurrent stroke when patients under hyperinflammation(OR 3.10,95%CI 1.92 to 5.00,p<0.001)but not in those without hyperinflammation(OR 0.18,95%CI 0.03 to 1.04,p=0.06,Pinteraction=0.002).Conclusion Our results suggest that somatic mutations contributing to CHIP increase the risk of short-term recurrent stroke in patients who had a first-ever AIS.Hyperinflammation may be important in the relationship between CHIP and recurrent stroke.Xin Qiu Yalun Dai Si Cheng Hong-Qiu Gu Yong Jiang Xia Meng Yilong Wang Xingquan Zhao Yingyu Jiang Zhe Xu Xinying Huang Meng Wang Tian Jie Lyu Yubo Wang Jiaxu Weng Lingyun Cui Yi Shangguan Hao Li Yongjun Wang Zixiao Li 2023Stroke & Vascular Neurology2023,8,2:1
14The use of carbon nanotubes to induce osteogenic differentiation of human adipose-derived MSCs in vitro and ectopic bone formation in vivo显示文摘Xiaoming Li Haifeng Liu Xufeng Niu Bo Yu Yubo Fan Qingling Feng Fu-zhai Cui Fumio Watari 2012Biomaterials2012,,19:1
15Mercury inhibits the L170C mutsnt of Aquaporin Z by making waters clog the water channel显示文摘Yubo Zhang Yubao Cui LY Chen 0,,1:1
16Effect of low frequency electromagnetic field on casting crack during DC casting superhigh strength aluminum alloy ingots 显示文摘Zuo Yubo Cui Jianzhong Zhao Zhihao 2005Materals Science and Engineering A2005,406,:1
17Effect of low frequency electromagnetic field on casting crack during DC casting superhigh strength aluminum alloy ingots显示文摘Zuo Yubo Cui Jianzhong Zhao Zhihao 2005Materals Science and Engineering2005,,406:1
18Temperature field in the hot-top during casting a new super-high strength Al-Zn-Mg-Cu alloy by low frequency electromagnetic process显示文摘The billets of a new super-high strength Al-Zn-Mg-Cu alloy in 200mm diameter were produced by the processesof low frequency electromagnetic casting (LFEC) and conventional direct chill (DC) casting, respectively. The effects of lowfrequency electromagnetic field on temperature field of the melt in the hot-top were investigated by temperaturemeasurement method. Temperature curves were measured from the surface to the center of the billets by locating type Kthermocouples into the casting during the processes. The results show that during LFEC process the temperature field inthe melt applying the hot-top is very uniform, which is helpful to reduce the difference of thermal gradients between thesurface and the center, and then to reduce the thermal stress and to eliminate casting crack.Yubo ZUO Jianzhong CUI Feiyue QUAN Ke QIN Zhihao ZHAO Haitao Zhang 2005China Foundry2005,2,3:0
19Passive daytime radiative cooling coatings with renewable self-cleaning functions显示文摘Passive daytime radiative cooling(PDRC)technology is emerging as one of the most promising solutions to the global problem of spacing cooling,but its practical application is limited due to reduced cooling effectiveness caused by daily wear and tear,as well as dirt contamination.To tackle this problem,we report a novel strategy by introducing a renewable armor structure for prolonging the anti-fouling and cooling effectiveness properties of the PDRC coatings.The armor structure is designed by decorating fluorinated hollow glass microspheres(HGM)inside rigid resin composite matrices.The HGM serve triple purposes,including providing isolated cavities for enhanced solar reflectance,reinforcing the matrices to form robust armored structures,and increasing thermal emittance.When the coatings are worn,the HGM on the surface expose their concave cavities with numerous hydrophobic fragments,generating a highly rough surface that guarantee the superhydrophobic function.The coatings show a high sunlight reflectance(0.93)and thermal emittance(0.94)in the long-wave infrared window,leading to a cooling of 5℃ below ambient temperature under high solar flux(∼900 W/m^(2)).When anti-fouling functions are reduced,they can be regenerated more than 100 cycles without compromising the PDRC function by simple wearing treatment.Furthermore,these coatings can be easily prepared using a one-pot spray method with low-cost materials,exhibit strong adhesion to a variety of substrates,and demonstrate exceptional environmental stability.Therefore,we anticipate their immediate application opportunities for spacing cooling.Qian Wu Yubo Cui Guifeng Xia Jinlong Yang Shuming Du Xinhong Xiong Li Yang Dong Xu Xu Deng Jiaxi Cui 2024Chinese Chemical Letters2024,35,2:0
20Layer-by-layer self-assembly and clinical application in orthopedics显示文摘Orthopedic implants for the treatment of bone defects from various causes have been challenged by insufficient osseointegration,bacterial infection,oxidative stress,immune rejection,and insufficient individualized treatment.These challenges not only impact treatment outcomes but also severely impact patients’daily lives.Layer-by-Layer(LbL)serves as a simple surface coating technique,in simple terms,to functionalize implants by sequentially adsorbing oppositely charged materials onto a substrate.In orthopaedics,LbL self-assembly technology solves some of the challenges by loading various drugs or biological agents on the implant surface and controlling their release precisely to the site of bone defects in a personalized way.This review will introduce the basic principle and the development of LbL in orthopaedics,review and analyze the chemical strategy of LbL in the preparation of bone implants to ensure the stability of the implant,and introduce the use of LbL bone implants in orthopaedics in recent years.The application of LbL includes the realization of programmed drug delivery and sustained release,thereby promoting osseointegration and the formation of new blood vessels,antibacterial,antioxidant,etc.This review focuses on the LbL technology,involving the technology selection for the preparation of bone implants,the chemical strategies of the stability guarantee of LbL implants,the pharmacological properties,loading and release mechanisms of loaded drugs,and the molecular mechanisms of osteogenesis and angiogenesis.The aim of this review is to provide an overview of current research advances,and a prospect in this field was also described.Xiao Ma Duoyi Zhao Yubo Xiang Yingqi Hua Wei Zhao Yan Cui Zhiyu Zhang 2023Journal of Materials Science & Technology2023,,16:0
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