supported by the National Natural Science Foundation of China(92162218,42302101,42202099);the Guizhou Provincial Natural Science Foundation(ZK[2023]477)。
Unraveling the precise mineralization age is vital to understand the geodynamic setting and ore-forming mechanism of the sediment-hosted Pb-Zn deposit;this has long been a challenge.The Sichuan-Yunnan-Guizhou(SYG)tria...
Ten physical and environmental variables collected from an on-the-go soil sensor at two field sites (MF3E and MF11S) in Mississippi, USA, were analyzed to assess soil variability and the interrelationships among the m...
leveraged with support provided by the U.S.Geological Survey Aquatic GAP Project(Agreement No.G21AC00013)and Michigan State University;supported by National Key R&D Program of China(2019YFD0901203);Chinese Academy of Sciences(ZDRW-ZS-2017-3-2).
Large rivers throughout the world have been transformed by anthropogenic stressors that are known to influence the structure and composition of fish assemblages.Management of large rivers requires balancing socio-econ...
supported by National Key Research and Development Program of China(2023YFC3209002,2019YFD0901203);Chinese Academy of Sciences(QYZDB-SSW-SMC041,ZDRW-ZS-2017-3-2)
The aquatic fauna of large river systems have been the cornerstones of multiple civilizations throughout human history.Today,they remain critically important as primary resources for humans as well as indicators of ge...
funded by National Natural Science Foundation of China (Grant Nos. 42125204, 92155305, 42103068, 42372114, 42372115)。
Mississippi Valley-type(MVT) Zn-Pb deposits predominantly form within both orogenic forelands and fold-andthrust belts, yet the mineralization process within the latter tectonic setting remains inadequately understood...
partially funded by an USDA Natural Resources Conservation Service(NRCS)Conservation Innovation Grant(CIG);the NRCS Mississippi River Basin Healthy Watersheds Initiative(MRBI);National Water Quality Initiative(NWQI)programs;partially supported by National Key R&D Program of China(2019YFD0901201,2019YFD0901203);Chinese Academy of Sciences(ZDRW-ZS-2017-3-2)
Background Agriculture has greatly influenced water quality,habitats,and fish assemblages in streams of the Mississippi Alluvial Plain(MAP)ecoregion.However,MAP streams have historically been understudied compared to ...
supported by the National Natural Science Foundation of China (Grant Nos. 92155305, 91855214, and 42125204);the National Key R&D Plan (Grant No. 2021YFC2901805)。
The Tethyan domain hosts the world's most abundant hydrocarbon and Mississippi Valley-type(MVT) Pb-Zn resources. The relations among organic matter-rich sediments, MVT Pb-Zn mineralization, and the Tethyan tectonic ev...
The Mississippi River and its vast basin play a critical role in supporting ecological,economic,and social systems in the United States.However,managing this extensive watershed has become increasingly challenging due...
Numerous satellites collect imagery of the Earth’s surface daily, providing information to the public and private sectors. The fusion (pan-sharpening) of high-resolution panchromatic satellite imagery with lower-reso...
Open-source and free tools are readily available to the public to process data and assist producers in making management decisions related to agricultural landscapes. On-the-go soil sensors are being used as a proxy t...