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| 1 | An overview of the resources and environment conditions and major geological problems in the Yangtze River economic zone, China显示文摘Focusing on the Yangtze River economic zone,the previous geological researches are systematically summarized,resources and environment conditions and major geological problems which are needing to be concerned in land planning and construction are studied.The results show that the resource conditions of cultivated land,shale gas,geotherm,lithium and so on are superior in the Yangtze River economic zone,and the resources and environment conditions are conducive to develop the modern agriculture,clean energy industry and strategic emerging industries.3×1013 m^2 farmlands without heavy metal pollution are concentrated;there are three national level shale gas exploration and development bases with explored reserves of 5.441×1011 m^3;geothermal availability is 2.4×109 t of standard coal each year,equivalent to 19% of the amount of coal in 2014;Asia's largest energy lithium metal ore deposit is found.In some parts of Yangtze River economic zone,there are some major geological problems such as active faults,karst collapse,ground subsidence,landslide-collapse-debris flow,affecting the river-crossing channels,high-speed railway,urban agglomeration and green ecological corridor planning and construction.Those problems should be concerned,and the relevant suggestions and countermeasures are put forward.Meanwhile,the ideas to further support the development of the Yangtze River economic zone are put forward. | Yue-hua Jiang Liang-jun Lin Li-de Chen Hua-yong Ni Wei-ya Ge Hang-xin Cheng Gang-yi Zhai Gui-ling Wang Yi-zhong Ban Yuan Li Ming-tang Lei Cheng-xuan Tan Jing-wen Su Quan-ping Zhou Tai-li Zhang Yun Li Hong-ying Liu Ke Peng Han-mei Wang | 2018 | China Geology2018,1,3: | 6 |
| 2 | Directional Growth of Tin Crystals Controlled by Combined Solute Concentration Gradient Field and Static Magnetic Field显示文摘A new method was introduced to achieve directional growth of Sn crystals. Microstructures in liquid(Pb)/liquid(Sn) diffusion couples were investigated under various static magnetic fields. Results show that the β-Sn crystals mainly reveal an irregular dendritic morphology without or with a relatively low static magnetic field(B0.3 T). When the magnetic field is increased to 0.5 T, the β-Sn dendrites close to the final stage of growth begin to show some directional character. With a further increase in the magnetic field to a higher level(0.8–5 T), the β-Sn dendrites have an enhanced directional growth character, but the dendrites show a certain deflection. As the magnetic field is increased to 12 T, the directional growth of the β-Sn dendrites in the center of the couple is severely destroyed. The mechanism of the directional growth of the β-Sn crystals and the deflection of the β-Sn crystals with the application of static magnetic field was tentatively discussed. | Lei Li Bo Xu Wei-Ping Tong Hui Zhang Chun-Yan Ban Li-Zi He Zhi-Hao Zhao Yu-Bo Zuo Qing-Feng Zhu Jian-Zhong Cui | 2015 | Acta Metallurgica Sinica(English Letters)2015,28,6: | 3 |
| 3 | Molecular and morphological evidence for a new species of the genus Typhlomys(Rodentia:Platacanthomyidae)显示文摘DEAR EDITOR,In this study,we reassessed the taxonomic position of Typhlomys(Rodentia:Platacanthomyidae)from Huangshan,Anhui,China,based on morphological and molecular evidence.Results suggested that Typhlomys is comprised of up to six species,including four currently recognized species(Typhlomys cinereus,T.chapensis,T.daloushanensis,and T.nanus),one unconfirmed candidate species,and one new species(Typhlomys huangshanensis sp.nov.).Morphological analyses further supported the designation of the Huangshan specimens found at mid-elevations in the southern Huangshan Mountains(600 m to 1200 m a.s.l.)as a new species. | Ting-Li Hu Feng Cheng Zhen Xu Zhong-Zheng Chen Lei Yu Qian Ban Chun-Lin Li Tao Pan Bao-Wei Zhang | 2021 | Zoological Research2021,42,1: | 2 |
| 4 | Measuring flow velocity on frozen and non-frozen slopes of black soil through leading edge method显示文摘Flow velocity is a major parameter related to hillslope hydrodynamics erosion.This study aims to measure flow velocity over frozen and non-frozen slopes through leading edge method before being calibrated with accurate flow velocity to determine the correct coefficient for convenience of flow velocity measurement.Laboratory experiments were conducted on frozen and non-frozen soil slopes with flumes involving four slope gradients of 5°,10°,15°,and 20°and three flow rates of 1,2,and 4 L/min with a flume of 6 m long and 0.1 m wide.The measurements were made with a stopwatch to record the time duration that the water flow ran over the rill segments of 2,4 and 6 m long.Accurate flow velocity was measured with electrolyte trace method,under pulse boundary condition.The leading edge and accurate flow velocities were used to determine the correction coefficient to convert the former to the latter.Results showed that the correction coefficient on frozen soil slope was 0.81 with a coefficient of determination(R2)of 0.99.The correction coefficient on non-frozen soil slope was 0.79 with R2 of 0.98.A coefficient of 0.8 was applicable to both soil surface conditions.The accurate velocities on the four frozen black soil slopes were approximately 30%,54%,71%,and 91%higher than those on non-frozen soil slopes.By contrast,the leading edge flow velocities on the frozen soil slopes were 23%,54%,67%,and 84%higher than those on non-frozen soil slopes.The flow velocities on frozen soil slopes increased with flow rate at all four slopes,but they increased from 5 to 15°before getting stabilized.Therefore,rill flow velocity can be effectively measured with leading edge method by multiplying the leading edge velocity with a correction coefficient of 0.80.This study provides a strategy to measure rill flow velocity for studies on soil erosion mechanisms. | Chao Chen Yunyun Ban Xuefeng Wang Tingwu Lei | 2017 | International Soil and Water Conservation Research2017,5,3: | 1 |
| 5 | The influence of public perception on risk acceptance of the chemical industry and the assistance for risk communication显示文摘 | HUANG Lei BAN Jie SUN Kai | 2013 | Safety Science2013,51,1: | 1 |
| 6 | Noise reduction for magnetic resonance images via adaptive multiscale products thersholding显示文摘 | Ban Paul Zhang Lei | 2003 | IEEE Transactions on Medical Imaging2003,22,9: | 1 |
| 7 | Comparison of three concentrations of simplex lidocaine in local anesthesia for inguinal hernia mesh-repairs 显示文摘 | Ban LJ Lei WZ Liu Y | 2011 | Hernia2011,15,5: | 1 |
| 8 | Recent advances based on Mg anodes and their interfacial modulation in Mg batteries显示文摘Magnesium(Mg)batteries(MBs),as post-lithium-ion batteries,have received great attention in recent years due to their advantages of high energy density,low cost,and safety insurance.However,the formation of passivation layers on the surface of Mg metal anode and the poor compatibility between Mg metal and conventional electrolytes during charge-discharge cycles seriously affect the performance of MBs.The great possibility of generating Mg dendrites has also caused controversy among researchers.Moreover,the regulation of Mg deposition and the enhancement of battery cycle stability is largely limited by interfacial stability between Mg metal anode and electrolyte.In this review,recent advances in interfacial science and engineering of MBs are summarized and discussed.Special attention is given to interfacial chemistry including passivation layer formation,incompatibilities,ion transport,and dendrite growth.Strategies for building stable electrode/interfaces,such as anode designing and electrolyte modification,construction of artificial solid electrolyte interphase(SEI)layers,and development of solid-state electrolytes to improve interfacial contacts and inhibit Mg dendrite and passivation layer formation,are reviewed.Innovative approaches,representative examples,and challenges in developing high-performance anodes are described in detail.Based on the review of these strategies,reference is provided for future research to improve the performance of MBs,especially in terms of interface and anode design. | Fanfan Liu Guoqin Cao Jinjin Ban Honghong Lei Yan Zhang Guosheng Shao Aiguo Zhou Li zhen Fan Junhua Hu | 2022 | Journal of Magnesium and Alloys2022,10,10: | 1 |
| 9 | Comparison of three concentrations of simplex lidocaine in local anesthesia for inguinal hernia mesh-repairs 显示文摘 | Ban LJ Lei WZ Liu Y | 2011 | Hernia2011,15,5: | 1 |
| 10 | Comparison of three concentrations of simplex lidocaine in local anesthesia for inguinal hernia mesh-repairs显示文摘 | Ban LJ Lei WZ Liu Y | 2011 | Hernia2011,15,5: | 1 |
| 11 | The influence of public perception on risk acceptance of the chemical industry and the assistance for risk communication显示文摘 | Lei Huang Jie Ban Kai Sun Yuting Han Zengwei Yuan Jun Bi | 2013 | Safety Science2013,,1: | 1 |
| 12 | Public Perception of Blue-Algae Bloom Risk in Hongze Lake of China显示文摘 | Lei Huang Kai Sun Jie Ban Jun Bi | 2010 | Environmental Management2010,,5: | 1 |
| 13 | Study on the facilities and procedures for meltwater erosion of thawed soil显示文摘High erosion rate of seasonal thawed soils by snow-and ice-melting runoff in the high altitude and latitude cold regions has great impacts on ecological systems,industries,agriculture and various manmade infrastructures as well as people's lives.The facilities and procedures are of great importance for the studies on simulating erosion processes of melt-frozen soil.This study focuses on the method and facility for simulating the thawing process of frozen soil.The facility includes soil freezing system,meltwater supply system and experimental flume system for thawed soil erosion.The soil freezing system provides enough space to freeze soil columns in flumes.The water supply system deliveries snow-or icemelting water flow of constant-rate at 0℃.The soil flumes of 200 or 300 cm long,10 cm wide and 12 cm high are designed to be assemble and convenient for soil freezing before they are thawed in one-dimensional manner from top to bottom.The one-dimensional thawing process is realized as follows.The frozen soil flume is put on ice boxes and thermally insulated with heat-insulating materials all around to prevent frozen soil from being thawed from sidewalls and bottom.The soil thaws with this system shows that it can meet the requirements of simulating the process of soil thawing from top to bottom.The thawed soil flumes are connected from end to end to form rills of 6–8 m long to run the erosion experiments under different designed hydraulic condition.The equipment provides facility,method and operation process for simulating one-dimensional soil thawing to serve research on the effect of thawed soil depth on erosion process. | Yunyun Ban Tingwu Lei Chao Chen Zhiqiang Liu | 2016 | International Soil and Water Conservation Research2016,4,2: | 1 |
| 14 | The influence of public perception on risk acceptance of the chemical industryand the assistance for risk communication显示文摘 | HUANG Lei BAN Jie SUN Kai | 2013 | Safety Science2013,51,1: | 1 |
| 15 | Preparation of functionalized graphene oxide/polypropylene nanocomposite with significantly improved thermal stability and studies on the crystallization behavior and mechanical properties显示文摘 | Yuan Bihe Ban Chenlu Song Lei | 2014 | Chem Eng J2014,237,5: | 1 |
| 16 | Comparison of three concentra- tions of simplex lidocaine in local anesthesia for inguinal hernia meshrepairs显示文摘 | Ban LJ Lei WZ Liu Y | 2011 | Hernia2011,15,5: | 1 |
| 17 | In-plane grain boundary induced defect state in hierarchical NiCo-LDH and effect on battery-type charge storage显示文摘Domain boundaries are regarded as the effective active sites for electrochemical energy storage materials due to defects enrichment therein.However,layered double hydroxides(LDHs)tend to grow into single crystalline nano sheets due to their unique two-dimentional(2D)lattice structure.Previously,much efforts were made on the designing hierarchical structure to provide more exposed electroactive sites as well as accelerate the mass transfer.Herein,we demonstrate a strategy to introduce low angle grain boundary(LAGB)in the flakes of Ni/Co layered double hydroxides(NiCo-LDHs).These defect-rich nano flakes were self-assembled into hydrangea-like spheres that further constructed hollow cage structure.Both the formation of hierarchical structure and grain boundaries are interpreted with the synergistic effect of Ni2+/Co2+ratio in an“etching-growth”process.The domain boundary defect also results in the preferential formation of oxygen vacancy(Vo).Additionally,density functional theory(DFT)calculation reveals that Co substitution is a critical factor for the formation of adjacent lattice defects,which contributes to the formation of domains boundary.The fabricated battery-type Faradaic NiCo-LDH-2 electrode material exhibits significantly enhanced specific capacitance of 899 C·g^(−1)at a current density of 1 A·g^(−1).NiCo-LDH-2//AC asymmetric capacitor shows a maximum energy density of 101.1 Wh·kg^(−1)at the power density of 1.5 kW·kg^(−1). | Jinjin Ban Xiaohan Wen Honghong Lei Guoqin Cao Xinhong Liu Chunyao Niu Guosheng Shao Junhua Hu | 2023 | Nano Research2023,16,4: | 0 |
| 18 | Spatial and Temporal Variation and Trend Analysis of Water Quality in Large Reservoirs in Ji’an City显示文摘Based on the water quality monitoring data of 5 large reservoirs in Ji’an City,Jiangxi Province from 2015-2021,the temporal and spatial variation characteristics and trends of water quality of the reservoirs were analyzed by single-factor evaluation method and seasonal Kendall test to evaluate the trophic status of the reservoirs and explore the influencing factors of characteristic pollutants.The results showed that:①the water quality of the reservoirs was good and could meet the water needs of various functions;②the water quality of the reservoirs had generally changed from bad to good in recent years,indicating that the implementation of“river chief system”has achieved certain results;③Kendall test analysis showed that,except for individual projects which showed an upward trend in water quality,other projects showed no obvious change trend or downward trend,indicating that the water quality of the reservoirs is indeed improving;④the causes of water pollution in reservoir area were further analyzed by exploring the natural and human factors of the characteristic pollutant total phosphorus.It is recommended to strengthen supervision in the later stage to control point and non-point source pollution. | MAO Yan ZHANG Jie BAN Lei LANG Fengxiang MIN Xiang NIU Ziqiang ZHOU Yin | 2023 | Journal of Landscape Research2023,15,5: | 0 |
| 19 | Thermosetting resin modified asphalt:A comprehensive review显示文摘Thermosetting resins have advantages such as high strength,corrosion resistance,and aging resistance,and have excellent prospects for practical application as asphalt modifiers.In order to promote the research of thermosetting resin modified asphalt,to provide direction for its further research,this paper reviews the research progress of thermosetting resin modified asphalt in recent years.The material composition,modification mechanism,and curing behavior of epoxy asphalt,thermosetting polyurethane modified asphalt,unsaturated polyester modified asphalt,and other thermosetting resin modified asphalts are overviewed.Different types of thermosetting resin modified asphalt have different performances,the performance advantages of different thermosetting resin modified asphalts are summarized.At the same time,the existing problems in thermosetting resin modified asphalt and further research directions are provided.Encouraging researchers to produce thermosetting resin modified asphalts using waste or bio-based materials,and to study the recycling technologies and life cycle assessment of thermosetting resin modified asphalt.This paper provides a reference for the study of thermosetting resin modified asphalt. | Zengping Zhang Hao Liu Xiaoyi Ban Xiaosong Liu Yinxiao Guo Jia Sun Yanqi Liu Suyu Zhang Jiahao Lei | 2023 | Journal of Traffic and Transportation Engineering(English Edition)2023,10,6: | 0 |