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16篇 您的检索式:作者名="Ruipeng LIU"
    题名 作者 年代 出处 被引量
1Effect of potential HONO sources on peroxyacetyl nitrate(PAN)formation in eastern China in winter显示文摘As an important secondary photochemical pollutant,peroxyacetyl nitrate(PAN)has been studied over decades,yet its simulations usually underestimate the corresponding observations,especially in polluted areas.Recent observations in north China found unusually high concentrations of PAN during wintertime heavy haze events,but the current model still cannot reproduce the observations,and researchers speculated that nitrous acid(HONO)played a key role in PAN formation.For the first time we systematically assessed the impact of potential HONO sources on PAN formation mechanisms in eastern China using the Weather Research and Forecasting/Chemistry(WRF-Chem)model in February of 2017.The results showed that the potential HONO sources significantly improved the PAN simulations,remarkably accelerated the RO x(sum of hydroxyl,hydroperoxyl,and organic peroxy radicals)cycles,and resulted in 80%–150%enhancements of PAN near the ground in the coastal areas of eastern China and 10%–50%enhancements in the areas around 35–40°N within 3 km during a heavy haze period.The direct precursors of PAN were aldehyde and methylglyoxal,and the primary precursors of PAN were alkenes with C>3,xylenes,propene and toluene.The above results suggest that the potential HONO sources should be considered in regional and global chemical transport models when conducting PAN studies.Jingwei Zhang Yitian Guo Yu Qu Yong Chen Ruipeng Yu Chaoyang Xue Rui Yang Qiang Zhang Xingang Liu Yujing Mu Jing Wang Can Ye Haihan Zhao Qiangqiang Sun Ziwen Wang Junling An 2020Journal of Environmental Sciences2020,32,8:3
2Choline-based ionic liquids for CO_2 capture and conversion显示文摘Choline-based ionic liquids(Ch-ILs) with anions possessing interacting sites to attract CO_2 were designed, which could capture CO_2 with capacity >1.0 mol CO_2 per molar IL under ambient conditions. Moreover, this kind of ILs combining with Cu Cl could catalyze the formylation of amines with CO_2/H_2 at 120 °C. Especially, choline imidazolate showed the best performance,affording a series of N-formamides in excellent yields. It was demonstrated that the IL activated CO_2 and the synergistic effect between the IL and Cu Cl resulted in the high activity for catalysing the formylation of amines with CO_2/H_2.Ruipeng Li Yanfei Zhao Zhiyong Li Yunyan Wu Jianji Wang Zhimin Liu 2019Science China Chemistry2019,62,2:3
3Cooperative effect from cation and anion of pyridine-containing anion-based ionic liquids for catalysing CO_2 transformation at ambient conditions显示文摘Pyridine-containing anion-based ionic liquids(PA-ILs) with two kinds of interaction sites to bind CO_2, e.g., [P4444][2-OP], were found to be highly efficient for catalysing the cycloaddition reactions of atmospheric CO_2 with epoxides at room temperature under metal-and halogen-free conditions, producing a series of cyclic carbonates in high yields. It was demonstrated that the cooperative interaction from two interaction sites in the anions of PA-ILs activated CO_2, while the cation activated the epoxides substrates via coordination to the central P+ unit, thus resulting in the high activity of the IL catalysts.Guangfeng Yuan Yanfei Zhao Yunyan Wu Ruipeng Li Yu Chen Dongmei Xu Zhimin Liu 2017Science China Chemistry2017,60,7:2
4Gankyrin promotes tumor growth and metastasis through activation of IL‐6/STAT3 signaling in human cholangiocarcinoma显示文摘Tongsen Zheng Xuehui Hong Jiabei Wang Tiemin Pei Yingjian Liang Dalong Yin Ruipeng Song Xuan Song Zhaoyang Lu Shuyi Qi Jiaren Liu Boshi Sun Changming Xie Shangha Pan Yuejin Li Xiaohe Luo Shuai Li Xiang Fang Nishant Bhatta Hongchi Jiang Lianxin Liu 2014Hepatology2014,,:2
5Application of Laser Ultrasonic Technique for Non-contact Detection of Angled Surface Defects显示文摘Based on the finite element method,the angled surface defects have been investigated by using the laser generated surface acoustic wave(SAW).The feature of laser generated SAW interaction with the angled defect is analyzed in time and frequency domains.An increase in the amplitude of SAW at the edge of the defect is observed,and the spectral feature is angle dependent.With the angle decreasing from 120°to 30°,the maximum amplitude of frequency spectrum of SAW increases gradually.The corresponding experimental results verify the feasibility of numerical analyses and reach a good agreement with simulation results.Guo Ruipeng Liu Jinghua Wang Haitao 2018Transactions of Nanjing University of Aeronautics and Astronautics2018,35,5:2
6Comparative gene expression profiling of normal and human colorectaladenomatous tissues显示文摘Gongliang Du Xuehong Fang Wei Dai Ruipeng Zhang Ruiting Liu Xingbo Dang 2014Oncology Letters2014,,5:1
7True and appar- ent scaling: The proximity of the Markov switching multifrac tal model to long-range dependence显示文摘Ruipeng LIU T D MATTEO L THOMAS 2007Physica A: Statistical Mechanics and its Applications2007,383,1:1
8Evaluating the applicability of the water erosion prediction project(WEPP)model to runoff and soil loss of sandstone reliefs in the Loess Plateau,China显示文摘Soil erosion is one of the most serious environmental issues,especially in vulnerable areas such as the Pisha sandstone regions located in the Loess Plateau(China).In these types of reliefs,long-term studies monitoring runoff and soil loss are scarce,and even more considering the efficiency of different soil management techniques applied to reduce land degradation.In this study,seven years(2014-2020)of in-situ measurements of surface runoff and soil loss for different land uses(forestland,shrubland,grassland,farmland,and bare land)in a Pisha Sandstone environment at the Loess Plateau were con-ducted.We applied the Water Erosion Prediction Project(WEPP)model combining the large database with the precipitation regimes.Our results showed that runoff volume coming from observed and simulated data exhibited significant differences among them depending on the different vegetation types.Runoff and soil loss were different among diverse land use types as follows:farmland>grassland>shrubland>forestland.After conducting a calibration,we found satisfactorily simulated surface runoff and sediment yield based on precipitation regimes and land uses at sandstone reliefs.Simulation performance of surface runoff was better than sediment yield.The range of standard error of the model simulation for event and annual values of runoff were 4.71 mm and 12.19 mm,respectively.The standard error for event and annual values of soil loss were 4.19 t/hm^(2)and 21.86 t/hm^(2).In the calibration group,R2 of runoff and soil loss were 0.92 and 0.86 respectively,while Nash-Sutcliffe coefficient(E)reached 0.90 and 0.85,respectively.In the validation group,the R2 for both runoff and soil loss were 0.82 and 0.56,respectively.Nash-Sutcliffe coefficient(E)were 0.77 and 0.54 for the runoff and sediment yield.We concluded that using a detailed monitoring dataset,the WEPP model could accu-rately simulate and predict water erosion in the hillslopes of Pisha sandstone area.Ruipeng Zhu Yang Yu Jiongchang Zhao Dianjun Liu Siyu Cai Juanlong Feng Jesús Rodrigo-Comino 2023International Soil and Water Conservation Research2023,11,2:1
9Reasonable location of stopping line in close‑distance underlying coal seam and partition support of large cross‑section roadway显示文摘Close-distance coal seams are widely distributed over China,and the coal pillars left by the overlying coal seams afect the retracement channel of the underlying coal seam in the stopping stage.Based on the engineering background of close-distance seam mining in a coal mine,the reasonable position of the underlying coal seam's stopping line and the support method of the large section roadway during stopping are investigated using feld measurements,similar simulation experiments,and numerical simulations.There are three types of location relationships between the stopping line of the underlying coal seam and the stopping line of the overlying coal seam:'externally staggered with the upper stopping line'(ESUL,stops mining under the overlying goaf),'overlapped with upper stopping line'(OUL),and'internally staggered with the upper stopping line'(ISUL,ISUL-SD for shorter internal staggered distances,ISUL-LD for longer ones).There are diferent stress arch structures in the overlying strata of the above three positions,and the stress arch evolution process exists in the process of ESUL→OUL→ISUL-SD→ISUL-LD:a front and rear double stress arch structure→the front arch gradually decreases→the front arch dies out,and the double arch synthesizes the single arch→the single-arch range expands→the nested double arch.The relationship between the stress arch structure and the position of the stopping line is evaluated as follows:(1)ESUL:the stress concentration in the roof plate of the retracement channel of the underlying coal seam is the highest,because the overburden block of the extensive collapse zone acts directly on the roof plate of the retracement channel,resulting in relative difculties in roof support.(2)OUL:although the retracement channel roof pressure is minimal,the overlying rock structure has the potential for rotation or slippage instability.(3)ISUL-SD:the pressure on the roof of the retracement channel is small and the overburden structure is stable,which is conducive to the safe retraction of the support and not limited by the width of the end-mining coal pillar.(4)ISUL-LD:it is basically the same as the condition of stopping under the non-goaf;however,it has a limitation on the width of the end-mining coal pillar.The location of the stopping line is selected as ISUL-SD,and the retraction process of the self-excavating retraction channel was adopted.A partition asymmetric support scheme which is proven by feld practice is proposed,through a comprehensive analysis of the pre-stress feld simulation of the support scheme,based on the diferent control requirements of the roof above the support and the roof of the retracement channel in the stopping area.This method realizes safe and smooth withdrawal of the support.Dongdong Chen Yiyi Wu Shengrong Xie Fangfang Guo Fulian He Ruipeng Liu 2022International Journal of Coal Science & Technology2022,9,4:1
10Perovskite Solar Cells toward Eco-Friendly Printing显示文摘Eco-friendly printing is important for mass manufacturing of thin-film photovoltaic(PV)devices to preserve human safety and the environment and to reduce energy consumption and capital expense.However,it is challenging for perovskite PVs due to the lack of eco-friendly solvents for ambient fast printing.In this study,we demonstrate for the first time an eco-friendly printing concept for high-performance perovskite solar cells.Both the perovskite and charge transport layers were fabricated from eco-friendly solvents via scalable fast blade coating under ambient conditions.The perovskite dynamic crystallization during blade coating investigated using in situ grazing incidence wide-angle X-ray scattering(GIWAXS)reveals a long sol-gel window prior to phase transformation and a strong interaction between the precursors and the eco-friendly solvents.The insights enable the achievement of high quality coatings for both the perovskite and charge transport layers by controlling film formation during scalable coating.The excellent optoelectronic properties of these coatings translate to a power conversion efficiency of 18.26%for eco-friendly printed solar cells,which is on par with the conventional devices fabricated via spin coating from toxic solvents under inert atmosphere.The eco-friendly printing paradigm presented in this work paves the way for future green and highthroughput fabrication on an industrial scale for perovskite PVs.Xiaoming Chang Yuanyuan Fan Kui Zhao Junjie Fang Dongle Liu Ming-Chun Tang Dounya Barrit Detlef-MSmilgies Ruipeng Li Jing Lu Jianbo Li Tinghuan Yang Aram Amassian Zicheng Ding Yonghua Chen Shengzhong(Frank)Liu Wei Huang 2021Research2021,,1:1
11Failure analysis and control technology of intersections of large‑scale variable cross‑section roadways in deep soft rock显示文摘In deep underground mining,achieving stable support for roadways along with long service life is critical and the complex geological environment at such depths frequently presents a major challenge.Owing to the coupling action of multiple factors such as deep high stress,adjacent faults,cross-layer design,weak lithology,broken surrounding rock,variable cross-sections,wide sections up to 9.9 m,and clusters of nearby chambers,there was severe deformation and breakdown in the No.10 intersection of the roadway of large-scale variable cross-section at the−760 m level in a coal mine.As there are insufcient examples in engineering methods pertaining to the geological environment described above,the numerical calculation model was oversimplifed and support theory underdeveloped;therefore,it is imperative to develop an efective support system for the stability and sustenance of deep roadways.In this study,a quantitative analysis of the geological environment of the roadway through feld observations,borehole-scoping,and ground stress testing is carried out to establish the FLAC 3D variable cross-section crossing roadway model.This model is combined with the strain softening constitutive(surrounding rock)and Mohr–Coulomb constitutive(other deep rock formations)models to construct a compression arch mechanical model for deep soft rock,based on the quadratic parabolic Mohr criterion.An integrated control technology of bolting and grouting that is mainly composed of a high-strength hollow grouting cable bolt equipped with modifed cement grouting materials and a high-elongation cable bolt is developed by analyzing the strengthening properties of the surrounding rock before and after bolting,based on the Heok-Brown criterion.As a result of on-site practice,the following conclusions are drawn:(1)The plastic zone of the roof of the cross roadway is approximately 6 m deep in this environment,the tectonic stress is nearly 30 MPa,and the surrounding rock is severely fractured.(2)The deformation of the roadway progressively increases from small to large cross-sections,almost doubling at the largest cross-section.The plastic zone is concentrated at the top plate and shoulder and decreases progressively from the two sides to the bottom corner.The range of stress concentration at the sides of the intersection roadway close to the passageway is wider and higher.(3)The 7 m-thick reinforced compression arch constructed under the strengthening support scheme has a bearing capacity enhanced by 1.8 to 2.3 times and increase in thickness of the bearing structure by 1.76 times as compared to the original scheme.(4)The increase in the mechanical parameters c andφof the surrounding rock after anchoring causes a signifcant increase inσt;the pulling force of the cable bolt beneath the new grouting material is more than twice that of ordinary cement grout,and according to the test,the supporting stress feld shows that the 7.24 m surrounding rock is compacted and strengthened in addition to providing a strong foundation for the bolt(cable).On-site monitoring shows that the 60-days convergence is less than 30 mm,indicating that the stability control of the roadway is successful.Shengrong Xie Yiyi Wu Dongdong Chen Ruipeng Liu Xintao Han Qiucheng Ye 2022International Journal of Coal Science & Technology2022,9,2:1
12Understanding the source of muhifractality in financial markets 显示文摘Barunik Jozef Aste Tomaso Di Matteo T&Liu Ruipeng 2012Physica A Statistical Mechanics and its Applications2012,88,17:1
13MOCVD derived double-sided YBa_2Cu_3O_(7-δ) films on Y_2O_3 /YSZ/CeO_2 buffered textured metal substrates显示文摘We have successfully employed metal-organic chemical vapor deposition(MOCVD)technique to simultaneously deposit double-sided YBa2Cu3O7-δ(YBCO)films on both sides of Y2O3/yttria-stabilized zirconia(YSZ)/CeO2(YYC)buffered biaxially textured Ni-5 at.%W substrates,which is of great prospect to cut the production cost of YBCO coated conductors.X-ray diffraction analysis revealed that both sides of YBCO film were purely c-axis oriented and highly textured.Theφ-scan of(005)YBCO andφ-scan of(103)YBCO yielded full width at half maximum(FWHM)values of 4.9°and 6.6°for one side of double-sided YBCO film,respectively,as well as 4.4°and 6.4°for the other side.The current transportation measurements performed on such double-sided 500 nm-thickness YBCO films showed the self-field critical current density(Jc)at 77 K of0.6 MA/cm2 and 1.2 MA/cm2,respectively.Further research is in the process of exploring new solution to improve the Jc in practice.XIONG Jie ZHANG Fei XIA YuDong LIU Xin ZHAO RuiPeng ZHAO XiaoHui TAO BoWan 2014Science China(Technological Sciences)2014,57,4:0
14Ethical framework on risk governance of synthetic biology显示文摘Synthetic biology is an emerging multidisciplinary field that aims to design and construct new biological systems not found in nature.Whereas synthetic biology may yield tremendous benefits,it may also pose substantial risks to human health and the environment that must be addressed.In this paper,we examined the environmental risks associated with synthetic biology,including changes to or depletion of the environment,competition with native species,horizontal gene transfer,pathogenicity or toxicity,bioterrorism,and laboratory biosecurity.We highlight three approaches for assessing environmental risks in synthetic biology:solution-focused risk assessment,Bayesian networks,and network of networks for sustainable capacity building.An ethical governance framework is proposed to facilitate innovation while minimising risks.This framework emphasises the precautionary principle and balancing stakeholder interests prior to project development and commercialisation.Overall,we underscore the importance and urgency of assessing and managing the environmental risks of synthetic biology to ensure its safe and ethical development and application.Liao Bohua Wang Yuexin Ou Yakun Zuo Kunlan Liu Huan Lei Ruipeng 2023Journal of Biosafety and Biosecurity2023,5,2:0
15Monitoring and evaluation of disaster risk caused by linkage failure and instability of residual coal pillar and rock strata in multi-coal seam mining显示文摘Comprehensive research methods such as literature research,theoretical analysis,numerical simulations and field monitoring have been used to analyze the disasters and characteristics caused by the linkage failure and instability of the residual coal pillars-rock strata in multi-seam mining.The effective monitoring area and monitoring design method of linkage instability of residual coal pillar-rock strata in multi-seam mining have been identified.The evaluation index and the risk assessment method of disaster risk have been established and the project cases have been applied and validated.The results show that:①The coal pillar will not only cause disaster in singleseam mining,but also more easily cause disaster in multi-seam mining.The instability of coal pillars can cause not only dynamical disasters such as rock falls and mine earthquakes,but also cause surface subsidence and other disasters.②When monitoring the linkage instability of residual coal pillar-rock strata,it is not only necessary to consider the monitoring of the apply load body(key block),the transition body(residual coal pillar)and the carrier body(interlayer rock and working face),but also to strengthen the monitoring of the fracture development height(linkage body).③According to the principles of objectivity,easy access and quantification,combined with investigation,analysis,and production and geological characteristics of this mining area,the main evaluation indexes of the degree of disaster caused by linkage instability of residual coal pillar-rock strata are determined as:microseismic energy,residual coal pillar damage degree,fracture development height.And the evaluation index classification table was also given.④According to the measured value of the evaluation index,the fuzzy comprehensive evaluation method was used to calculate the disaster risk degree in the studied mine belongs to class III,that is,medium risk level.The corresponding pressure relief technology was adopted on site,which achieved a good control effect,and also verified the accuracy and effectiveness of the risk evaluation results.Qing Ma Xiaoli Liu Yunliang Tan Yurui Wang Ruosong Wang Enzhi Wang Xuesheng Liu Zenghui Zhao Darui Ren Weiqiang Xie Ruipeng Qian Nan Hu 2023Geohazard Mechanics2023,1,4:0
16Dynamic regulation of anti-oxidation following donation repairing after circulatory determined death renal transplantation with prolonged non-heart-beating time显示文摘Donation after circulatory-determined death(DCD)is an important part of renal transplantation.Therefore,DCD renal transplantation animal model should be established to study the mechanism of organ injury.Here,we established a stable DCD rat renal transplantation model and investigated the dynamic regulation of graft self-repairing and antioxidant capacities with different non-heart-beating times(NHBTs).Male Sprague-Dawley rats were randomly divided into four groups with the NHBT of the donors from 0 to 15,30,and 45 minutes.Recipients in long NHBT groups had a significantly lower survival rate and poorer graft function than those in short NHBT groups.Grafts from the 15-minute and 30-minute NHBT groups showed light and severe injury respectively at an early stage after transplantation and recovered within 7 days after transplantation,whereas the self-repairing of the grafts in the 45-minute NHBT group was delayed.The expressions of proliferating cell nuclear antigen(PCNA)and von Willebrand factor(vWF)were dependent on NHBT.The expression of antioxidant proteins paralleled graft recovery.In conclusion,the recipients can up-regulate antioxidant capacity to enhance graft self-repairing in DCD renal transplantation.Prolonged NHBT can delay the self-repairing and antioxidation of grafts.Xinning Wang Changcheng Zhou Jingyu Liu Ruipeng Jia 2021The Journal of Biomedical Research2021,35,5:0
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