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| 1 | Rhizobacterium Bacillus amyloliquefaciens Strain SQRT3-Mediated Induced Systemic Resistance Controls Bacterial Wilt of Tomato显示文摘Tomato bacterial wilt caused by Ralstonia solanacearum seriously threats tomato growth in tropical and temperate regions around the world.This study reported an antagonistic bacterial strain, Bacillus amyloliquefaciens strain SQRT3, isolated from the rhizosphere soil of tomato plants, which strongly inhibited in vitro growth of pathogenic R.solanacearum.The suppression of tomato bacterial wilt by strain SQRT3 was demonstrated under greenhouse conditions.Additionally, induced systemic resistance(ISR) in tomato as one of the potential disease suppression mechanisms was investigated in the plants inoculated with the isolated bacterial strain SQRT3.The results showed that strain SQRT3 applied with R.solanacearum by drenching significantly reduced tomato bacterial wilt by 68.1% biocontrol efficiency(BE) and suppressed the R.solanacearum populations in the rhizosphere soil compared to the control only drenched with R.solanacearum.The BE of the isolated bacterial strain SQRT3 against tomato wilt increased to 84.1%by root-dipping.Tomato plants treated with both strain SQRT3 and R.solanacearum showed increases in activities of peroxidase and polyphenol oxidase compared with other treatments.The application of strain SQRT3 reduced membrane lipid peroxidation in tomato leaves.The expressions of marker genes for jasmonic acid-and salicylic acid-dependent signaling pathways were faster and stronger in tomato plants treated with both strain SQRT3 and R.solanacearum than in plants treated with either R.solanacearum or strain SQRT3 alone.Collectively, the findings indicated that strain SQRT3 can effectively control tomato wilt. | LI Chunyu HU Weicong PAN Bin LIU Yan YUAN Saifei DING Yuanyuan LI Rong ZHENG Xinyan SHEN Biao SHEN Qirong | 2017 | Pedosphere2017,27,6: | 18 |
| 2 | Association between interferon gamma receptor 1-56C/T gene polymorphism and tuberculosis susceptibility: a meta-analysis显示文摘 | Wang Wei Ren Weicong Zhang Xuxia Liu Yi Li Chuanyou | 2014 | Chinese Medical Journal2014,,21: | 3 |
| 3 | Micro RNA ‐24 regulates cardiac fibrosis after myocardial infarction显示文摘 | Jue Wang Weicong Huang Ruixia Xu Yu Nie Xiaoqing Cao Jiang Meng Xiuqin Xu Shengshou Hu Zhe Zheng | 2012 | J. Cell. Mol. Med2012,,9: | 2 |
| 4 | Amorphization activated FeB_(2) porous nanosheets enable efficient electrocatalytic N_(2) fixation显示文摘Designing active,robust and cost-effective catalysts for the nitrogen reduction reaction(NRR) is of paramount significance for sustainable electrochemical NH3 synthesis.Transition-metal diborides(TMB_2)have been recently theoretically predicted to be a new class of potential NRR catalysts,but direct experimental evidence is still lacking.Herein,we present the first experimental demonstration that amorphous FeB_2 porous nanosheets(a-FeB_2 PNSs) could be a highly efficient NRR catalyst,which exhibited an NH3 yield of 39.8 μg h^(-1) mg^(-1)(-0.3 V) and a Faradaic efficiency of 16.7%(-0.2 V),significantly outperforming their crystalline counterpart and most of existing NRR catalysts.First-principle calculations unveiled that the amorphization could induce the upraised d-band center of a-FeB_2 to boost d-2π~* coupling between the active Fe site and ~*N_2 H intermediate,resulting in enhanced ~*N_2 H stabilization and reduced reaction barrier.Out study may facilitate the development and understanding of earth-abundant TMB_2-based catalysts for electrocatalytic N_2 fixation. | Ke Chu Weicong Gu Qingqing Li Yaping Liu Ye Tian Wuming Liu | 2021 | Journal of Energy Chemistry2021,30,2: | 2 |
| 5 | A cost-effective detection of low-abundance mutation with DNA three-way junction structure and lambda exonuclease显示文摘We presented a low-abundance mutation detection method with lambda exonuclease and DNA threeway junction structure.The assistant strand in the DNA three-way junction structure could regulate the reaction system from the kinetics and thermodyna mics aspects.The optimization of the assista nt strand helps to improve the selectivity of the mutant-type DNA to the wild-type DNA about 35 times.Moreover,the cost of the optimization process could be saved by about 90%.The method was applied to the detection of a human ovarian cancer-related gene mutation BRCA1(rs1799949,c.2082 C>T).The limit of detection to the mutation abundance in the DNA three-way junction structure system(0.2%) was one order lower compared with that in the double-stranded DNA structure system(2%).The mutation abundance in different standard samples was quantitively measured,and the results were consistent with the initial abundance in the standard samples. | Zishan Feng Wei Zhang Longjie Li Bocheng Tu Weicong Ye Xiaofeng Tang Hongbo Wang Xianjin Xiao Tongbo Wu | 2021 | Chinese Chemical Letters2021,32,2: | 1 |
| 6 | Method for measuring the steering wheel angle of paddy field agricultural machinery by integrating RTK-GNSS and dual-MEMS gyroscope显示文摘Aiming at the application environment of paddy agricultural machinery with bumpy and undulating changes,the problems affecting the method for steering wheel angle measurement by MEMS gyroscope were analyzed,and a wheel angle measurement method combining Dual-MEMS gyroscope(dual MEMS gyroscope)and RTK-GNSS was designed.The adaptive weighting method was used to fuse the heading angle differentiation of RTK-GNSS,the MEMS gyroscope angle rate,and velocity data,and the rod-arm compensation was performed to accurately obtain the angle rates of the body and steering wheels of agricultural machinery;the difference between the combined angular rate of the steering wheel of the agricultural machinery and the angular rate of the agricultural machinery body was obtained,and the integrator is used to integrate the difference to get the wheel steering angle value,and the Kalman filter was designed to make feedback correction for the integration process of angle calculation to eliminate the errors caused by the gyroscope zero bias,random drift,and gyroscope rod arm effect,and to obtain the accurate value of wheel steering angle.A comparative test with the connecting rod wheel angle sensor was designed,and the results show that the maximum deviation is 4.99°,the average absolute average value is 1.61°,and the average standard deviation is 0.98°.The method in this study and the connecting rod wheel angle sensor were used on paddy farm machinery.The wheel angle measurement deviation of the proposed method and the connecting rod wheel angle sensor was not more than 1°,which is relatively small.It has good stability,speed adaptability,and dynamic responsiveness that meets the accuracy requirements of steering wheel angle measurement for paddy field agricultural machinery unmanned driving and can be used instead of connecting rod angle sensors for unmanned agricultural machinery. | Pei Wang Lian Hu Jie He Siqi Ke Zhongxian Man Tuanpeng Tu Luning Yang Yuanyuan Li Yanling Yi Weicong Li Xiwen Luo | 2022 | International Journal of Agricultural and Biological Engineering2022,15,6: | 1 |
| 7 | Effects of Amino Acid Selenium Foliar Fertilizer on Selenium Content and Quality of Mango显示文摘[Objectives]This study was conducted to explore the treatment methods of amino acid selenium fertilizer suitable for increasing the selenium content of mangoes and improving the quality of mangoes,so as to provide a theoretical basis for the production of selenium-enriched mangoes.[Methods]With Tainong mango as a test material,the amino acid selenium foliar fertilizer was applied by eight treatment methods to investigate the changes of selenium,soluble solid,vitamin C,and titratable acid contents in mango flesh and peel.[Results]Spraying amino acid selenium foliar fertilizer increased the selenium content of mango flesh.The selenium contents of the treatment groups T2,T3,T4 and T5 reached the selenium-enriched standard,and the T2 treatment group had the highest selenium content(0.020 mg/kg).The selenium contents in the peel of all treatment groups were greater than the corresponding selenium content in the flesh.Except for T1,the vitamin C contents of other treatment groups sprayed with amino acid selenium fertilizer increased compared with the control,and that of the T2 treatment group increased significantly(P<0.05).Compared with the control,the soluble solids of the treatment groups sprayed with amino acid selenium fertilizer once also increased.The treatment method of spraying amino acid selenium fertilizer with a dosage of 12000 ml/hm2 once(T2)achieved the best effect of increasing the selenium content and improving the quality of mangoes.[Conclusions]This study provides a scientific basis for increasing the selenium content of mangoes and improving the current situation of insufficient selenium intake. | Mengling NONG Jinping CHEN Weicong Gan Liping PAN Ying XING Yongxian LIU | 2020 | Agricultural Biotechnology2020,9,6: | 1 |
| 8 | Description of microbial community structure of sediments from the Daliao River water system and its estuary (NE China) by application of fluorescence in situ hybridization 显示文摘 | QUAN Xiangchun WANG Yulai XIONG Weicong | 2010 | Environmental Earth Sciences2010,61,8: | 1 |
| 9 | The information rate of secret sharing schemes based on seven participants by connect graphs显示文摘 | SONG Yun LI Zhihui WANG Weicong | 2012 | Recent Advance in Computer Science and Information Engineering Lecture Notes in Electrical Engineering2012,127,: | 1 |
| 10 | Effect of orthokeratology on precision and agreement assessment of a new sweptsource optical coherence tomography biometer显示文摘Background:To evaluate the effect of orthokeratology on precision of measurements in children using a new swept-source optical coherence tomography(SS-OCT)optical biometer(OA-2000),and agreement between its measurements and those provided by the commonly used IOLMaster based on partial coherence interferometry(PCI).Methods:This study recruited fifty-one eyes of 51 normal children(8–16 years).An operator took measurements with the two biometers.Then,a second operator took measurements with the SS-OCT biometer.After orthokeratology was performed for one month,the same operators repeated the same procedures.Axial length(AL),mean keratometry(Km)at 2.5 mm and 3.0 mm diameters(Km2.5 and Km3.0),central corneal thickness(CCT),anterior chamber depth(ACD),lens thickness(LT)and corneal diameter(CD)were analyzed.Results:With the SS-OCT optical biometer,the test-retest repeatability of AL measurements was<0.06 mm.For all parameters,the coefficients of variation were<1.23%and the intraclass correlation coefficients were>0.95.The 95%limits of agreement of difference between the two devices for CD parameter were up to 1.53 mm.After orthokeratology,the fluctuation ranges of difference for Km3.0 measurement was 1.11 times higher than before orthokeratology,while the absolute values of difference for AL,Km2.5,ACD and CD measurements were comparable.Conclusions:Before and after orthokeratology,the SS-OCT biometer showed high repeatability and reproducibility for all measurements.Wearing orthokeratology contact lenses affected the agreement between SS-OCT and PCI biometers for Km3.0 measurements.The CD measurement showed poor agreement between the two devices. | Bao Shu Fangjun Bao Giacomo Savini Weicong Lu Ruixue Tu Haisi Chen Benhao Song Qinmei Wang Jinhai Huang | 2020 | Eye and Vision2020,7,1: | 1 |
| 11 | Precision of a new Scheimpflug and Placido-disk analyzer in measuring corneal thickness and agreement with ultrasound pachymetry显示文摘 | Jinhai Huang Giacomo Savini Liang Hu Kenneth J. Hoffer Weicong Lu Yifan Feng Feng Yang Xiuli Hu Qinmei Wang | 2012 | Journal of Cataract & Refractive Surgery2012,,: | 1 |
| 12 | The OX40-TRAF6 axis promotes CTLA-4 degradation to augment antitumor CD8^(+)T-cell immunity显示文摘Immune checkpoint blockade(ICB),including anti-cytotoxic T-lymphocyte associated protein 4(CTLA-4),benefits only a limited number of patients with cancer.Understanding the in-depth regulatory mechanism of CTLA-4 protein stability and its functional significance may help identify ICB resistance mechanisms and assist in the development of novel immunotherapeutic modalities to improve ICB efficacy.Here,we identified that TNF receptor-associated factor 6(TRAF6)mediates Lys63-linked ubiquitination and subsequent lysosomal degradation of CTLA-4.Moreover,by using TRAF6-deficient mice and retroviral overexpression experiments,we demonstrated that TRAF6 promotes CTLA-4 degradation in a T-cell-intrinsic manner,which is dependent on the RING domain of TRAF6.This intrinsic regulatory mechanism contributes to CD8+T-cell-mediated antitumor immunity in vivo.Additionally,by using an OX40 agonist,we demonstrated that the OX40-TRAF6 axis is responsible for CTLA-4 degradation,thereby controlling antitumor immunity in both tumor-bearing mice and patients with cancer.Overall,our findings demonstrate that the OX40-TRAF6 axis promotes CTLA-4 degradation and is a potential therapeutic target for the improvement of T-cell-based immunotherapies. | Jizhang Yu Jikai Cui Xi Zhang Heng Xu Zhang Chen Yuan Li Yuqing Niu Song Wang Shuan Ran Yanqiang Zou Weicong Ye Dan Zhang Cheng Zhou Jiahong Xia Jie Wu | 2023 | Cellular & Molecular Immunology2023,20,12: | 0 |
| 13 | IMU-based motion capture system for rehabilitation applications: A systematic review显示文摘In recent years,the use of inertial measurement unit(IMU)-based motion capture(Mocap)systems in rehabilitation has grown significantly.This paper aimed to provide an overview of current IMUbased Mocap system designs in the field of rehabilitation,explore the specific applications and implementation of these systems,and discuss potential future developments considering sensor limitations.For this review,a systematic literature search was conducted using Scopus,IEEE Xplore,PubMed,and Web of Science from 2013 to 2022.A total of 65 studies were included and analyzed based on their rehabilitation application,target population,and system deployment and measurement.The proportion of rehabilitation assessment,training,and both were 82%,12%,and 6%respectively.The results showed that primary focus of the studies was stroke that was one of the most commonly studied pathological disease.Additionally,general rehabilitation without targeting a specific pathology was also examined widely,with a particular emphasis on gait analysis.The most common sensor configuration for gait analysis was two IMUs measuring spatiotemporal parameters of the lower limb.However,the lack of training applications and upper limb studies could be attributed to the limited battery life and sensor drift.To address this issue,the use of low-power chips and low-consumption transmission pathways was a potential way to extend usage time for long-term training.Furthermore,we suggest the development of a highly integrated multi-modal system with sensor fusion. | Chenyu Gu Weicong Lin Xinyi He Lei Zhang Mingming Zhang | 2023 | Biomimetic Intelligence & Robotics2023,3,2: | 0 |
| 14 | Role of artificial intelligence in early detection and screening for pancreatic adenocarcinoma显示文摘Pancreatic adenocarcinoma remains to be one of the deadliest malignancies in the world despite treatment advancement over the past few decades.Its low survival rates and poor prognosis can be attributed to ambiguity in recommendations for screening and late symptom onset,contributing to its late presentation.In the recent years,artificial intelligence(AI)as emerged as a field to aid in the process of clinical decision making.Considerable efforts have been made in the realm of AI to screen for and predict future development of pancreatic ductal adenocarcinoma.This review discusses the use of AI in early detection and screening for pancreatic adenocarcinoma,and factors which may limit its use in a clinical setting. | Kenneth Weicong Lin Tiing Leong Ang James Weiquan Li | 2022 | Artificial Intelligence in Medical Imaging2022,3,2: | 0 |
| 15 | Ka-band broadband filtering packaging antenna based on through-glass vias (TGVs)显示文摘This work presents a novel design of Ka-band(33 GHz)filtering packaging antenna(FPA)that features broadband and great filtering response,and is based on glass packaging material and through-glass via(TGV)technologies.Compared to traditional packaging materials(printed circuit board,low temperature co-fired ceramic,Si,etc.),TGVs are more suitable for miniaturization(millimeter-wave three-dimensional(3D)packaging devices)and have superior microwave performance.Glass substrate can realize 3D high-density interconnection through bonding technology,while the coefficient of thermal expansion(CTE)matches that of silicon.Furthermore,the stacking of glass substrate enables high-density interconnections and is compatible with micro-electro-mechanical system technology.The proposed antenna radiation patch is composed of a patch antenna and a bandpass filter(BPF)whose reflection coefficients are almost complementary.The BPF unit has three pairs ofλg/4 slots(defect microstrip structure,DMS)and twoλg/2 U-shaped slots(defect ground structure,DGS).The proposed antenna achieves large bandwidth and high radiation efficiency,which may be related to the stacking of glass substrate and TGV feed.In addition,the introduction of four radiation nulls can effectively improve the suppression level in the stopband.To demonstrate the performance of the proposed design,a 33-GHz broadband filtering antenna is optimized,debugged,and measured.The antenna could achieve|S11|<-10 dB in 29.4‒36.4 GHz,and yield an impedance matching bandwidth up to 21.2%,with the stopband suppression level at higher than 16.5 dB.The measurement results of the proposed antenna are a realized gain of~6.5 dBi and radiation efficiency of~89%. | Zhen FANG Jihua ZHANG Libin GAO Hongwei CHEN Wenlei LI Tianpeng LIANG Xudong CAI Xingzhou CAI Weicong JIA Huan GUO Yong LI | 2023 | Frontiers of Information Technology & Electronic Engineering2023,24,6: | 0 |
| 16 | Overview on artificial intelligence in design of Organic Rankine Cycle显示文摘Converting thermal energy into mechanical work by means of Organic Rankine Cycle is a validated technology to exploit low-grade waste heat.The typical design process of Organic Rankine Cycle system,which commonly in-volves working fluid selection,cycle configuration selection,operating parameters optimization,and component selection and sizing,is time-consuming and highly dependent on engineer’s experience.Thus,it is difficult to achieve the optimal design in most cases.In recent decades,artificial intelligence has been gradually introduced into the design of energy system to overcome above shortcomings.In order to clarify the research field of arti-ficial intelligence technique in Organic Rankine Cycle design and guide artificial intelligence technique to assist Organic Rankine Cycle design better,this study presents a preliminary literature summary on recent progresses of artificial intelligence technique in organic Rankine cycle systems design.First,this study analyzes four main procedures which constitute a typical design process of Organic Rankine Cycle systems and finds that design problems encountered during design process can be divided into three categories:decision making,parameter optimization and parameter prediction.In the second section,a detailed literature review on each design proce-dures using artificial intelligence algorithms is presented.At last,the state of art in this field and the prospects for the future work are provided. | Dongpeng Zhao Shuai Deng Li Zhao Weicong Xu Wei Wang Xianhua Nie Mengchao Chen | 2020 | Energy and AI2020,1,1: | 0 |
| 17 | Transformation of coccolithophorid Emiliania huxleyi harboring a marine virus(Coccolithoviruses)serine palmitoyltransferase(SPT)gene by electroporation显示文摘Emiliania huxleyi is the most prominent modern coccolithophore,a group of marine unicellular eukaryotes that play a critical role in ocean biogeochemistry.Coccolithoviruses are large double stranded DNA viruses,which is responsible for the demise of large oceanic blooms formed by E.huxleyi.E.huxleyi virus(EhVs)acquired a series of enzyme-coding genes predicted to be involved in the sphingolipid biosynthesis by horizontal gene transfer between virus-host.Currently,there is limited experimental validation identifying the functions of these genes in EhV.Genetic transformation of eukaryotic cells is a powerful tool to get an insight into gene functions of the studied organisms.Serine palmitoyltransferase(SPT)catalyzes the first committed step in de novo sphingolipid biosynthetic pathway.Here,a novel vector system for the transformation of E.huxleyi was designed.It contained fragments of promoter and terminator sequences of E.huxleyi endogenic fucoxanthin chlorophyll a/c-binding protein gene“fcp”and harbored EhV-99B1 spt gene.The resultant recombinant transformation vectors pEhux-I-spt and pEhux-II were co-transferred into E.huxleyi BOF92 by electroporation.Transformants were obtained upon glufosinate-ammonium selection,and confirmed by Southern hybridization,genome PCR,qRT-PCR and Western blot screening of spt gene,which indicated that spt gene was integrated into the nuclear genome and was expressed at the mRNA and protein levels.The expression of the viral spt gene led to differences in lipid compositions analyzed using thin-layer chromatography(TLC).The results present the genetic transformation system for E.huxleyi,providing additional genetic resource with potential for exploring basic biological questions such as the virus-host interactions. | Weicong CAI Xueting WANG Jinjing SU Jian LI Jun ZENG Guiling LI Jingwen LIU | 2021 | Journal of Oceanology and Limnology2021,39,2: | 0 |
| 18 | Sparse array of sub-surface aided blockage-free multi-user mmWave communication systems显示文摘Recently,Reconfigurable Intelligent Surfaces(RISs)have drawn intensive attention in the realization of the smart radio environment.However,existing works mainly consider the RIS as a whole uniform plane,which may be unrealistic to be installed on the facade of buildings when the RIS is extremely large.In contrast,this paper investigates a practical Sparse Array of Sub-surface(SAoS)deployment of the RIS for uplink multi-user millimeter Wave(mmWave)communication systems,in which the Mobile Stations(MSs)are distributed in the blind coverage area due to the blockage.In order to exploit the benefits of the sparse deployment,the correlation of the effective channel is firstly investigated.Then the approximation and lower bounds of the ergodic spectral efficiency are derived under frequency and spatial multiplexing scenarios,respectively.Based on the autocorrelation of the effective channel,we obtain an optimal reflect coefficient design as well as the deployment guidelines of RIS tiles.Moreover,the RIS tile scheduling algorithms are also proposed.Numerical results show that the ergodic spectral efficiency approximation matches well with the Monte Carlo result under frequency multiplexing scenarios,and the lower bound is tight under spatial multiplexing scenarios only when the effective channel is strongly correlated.On the basis of the RIS tile scheduling algorithm and the reflect coefficient design,the system performance can be significantly improved under frequency multiplexing scenarios.On the other hand,by deploying more sparse RIS tiles,we can increase the multiplexing gain under spatial multiplexing scenarios. | Weicong Chen Xi Yang Shi Jin Pingping Xu | 2020 | Digital Communications and Networks2020,6,3: | 0 |
| 19 | Sensitive detection of alkaline phosphatase based on terminal deoxynucleotidyl transferase and endonuclease Ⅳ-assisted exponential signal amplification显示文摘Alkaline phosphatase(ALP)is widely expressed in human tissues.ALP plays an important role in the dephosphorylation of proteins and nucleic acids.Therefore,quantitative analysis of ALP plays a vital role in disease diagnosis and the development of biological detection methods.Terminal deoxynucleotidyl transferase(TdT)catalyzes continuous polymerization of deoxynucleotide triphosphates at the 30-OH end of single-stranded DNA in the absence of a template.In this study,we developed a highly sensitive and selective method based on TdT and endonuclease Ⅳ(Endo Ⅳ)to quantify ALP activity.After ALP hydrolyzes the 30-PO_(4) end of the substrate and generates 30-OH,TdT can effectively elongate the 30-OH end with deoxynucleotide adenine triphosphate(dATP)and produce a poly A tail,which can be detected by the poly T probes.Endo Ⅳ digests the AP site in poly T probes to generate a fluorescent signal and a new 30-OH end,leading to the generation of exponential fluorescence signal amplification.The substrate for TdT elongation was optimized,and a limit of detection of 4.3×10^(-3) U/L was achieved for ALP by the optimized substrate structure.This method can also detect ALP in the cell lysate of a single cell.This work has potential applications in disease diagnosis and biomedical detection. | Weicong Ye Longjie Li Zishan Feng Bocheng Tu Zhe Hu Xianjin Xiao Tongbo Wu | 2022 | Journal of Pharmaceutical Analysis2022,12,4: | 0 |
| 20 | MnO_x/Al_2O_3/Ce_(0.45)Zr_(0.45)M_(0.10)O_y (M = Mn, Y, La) catalysts used for ethanol catalytic combustion显示文摘MnOx/Al2O3/Ce0.45Zr0.45M0.10Oy (M = Mn, Y, La) catalysts were prepared by impregnation method and characterized by BET, TPR and XRD analyses. The catalytic activities toward ethanol combustion were investigated in a microreactor. The results demonstrated that the catalytic activity of MnOx/Al2O3/Ce0.50Zr0.50O2 monolithic catalyst could be improved by doping Mn, Y and La into Ce0.50Zr0.50O2. When doping Y into Ce0.50Zr0.50O2, the catalyst MnOx/Al2O3/Ce0.45Zr0.45Y0.10O1.95 showed the highest activity. The 100% conversion temperature of ethanol was 230 °C. Furthermore, once the conversion of ethanol started, the complete conversion was quickly achieved. The doping of Mn, Y and La led to better activity for ethanol combustion and lower temperature reduction peaks in TPR profiles. The doping of Mn resulted in enhanced oxygen storage capacity (OSC), larger area of the reduction peaks, and excellent reactivity, and the doping of Y resulted in the lowest reduction temperature and the best activity. | Hongyan Cao Weicong Song Maochu Gong Jianli Wang Shenghui Yan Zhimin Liu Yaoqiang Chen | 2009 | Journal of Natural Gas Chemistry2009,18,1: | 0 |