Zobrazeno 1 - 10
of 45
pro vyhledávání: '"Jianchu, Shi"'
Autor:
Tianshu Wang, Lining Liu, Qiang Zuo, Xun Wu, Yanqi Xu, Jianchu Shi, Jiandong Sheng, Pingan Jiang, Alon Ben-Gal
Publikováno v:
Agricultural Water Management, Vol 305, Iss , Pp 109121- (2024)
Characterizing the effects of previous water and salinity stresses is critical for the evaluation of plant water status, which, in turn, is essential for understanding soil-plant water relations and optimizing irrigation schemes. Recent research has
Externí odkaz:
https://doaj.org/article/79542da9f99a44978a1b7ac301afab5a
Publikováno v:
Science of Remote Sensing, Vol 8, Iss , Pp 100104- (2023)
Accurate monitoring and evaluation of root-zone soil salt content (SSC) are critical for sustainable development of irrigated agriculture in arid and semi-arid areas. Based on soil-crop water relations and farmland evapotranspiration (ET) fused throu
Externí odkaz:
https://doaj.org/article/eacb22911fd142c8a9ea1b584a729be1
Autor:
Tianshu Wang, Yanqi Xu, Qiang Zuo, Jianchu Shi, Xun Wu, Lining Liu, Jiandong Sheng, Pingan Jiang, Alon Ben-Gal
Publikováno v:
Agricultural Water Management, Vol 287, Iss , Pp 108451- (2023)
Many functions have been proposed to describe the response of root water uptake to water and/or salinity stresses. In practice, choosing a reliable stress response function is challenging, particularly when water and salinity stresses occur simultane
Externí odkaz:
https://doaj.org/article/b9e8d52cdb1e4043a05f4062c242862c
Autor:
Ting Zhang, Qiang Zuo, Ning Ma, Jianchu Shi, Yuchuan Fan, Xun Wu, Lichun Wang, Xuzhang Xue, Alon Ben-Gal
Publikováno v:
Agricultural Water Management, Vol 286, Iss , Pp 108391- (2023)
Determination of relative root-zone water depletion (RRWD) thresholds to trigger irrigation is crucial to create optimal irrigation schedules targeting maximum yield and/or water productivity with limited water supply for a crop. In this study, a num
Externí odkaz:
https://doaj.org/article/2a68140ab0ca4d9599549a646dd26404
Autor:
Jinjie Fan, Moshe Halpern, Yangliu Yu, Qiang Zuo, Jianchu Shi, Yuchuan Fan, Xun Wu, Uri Yermiyahu, Jiandong Sheng, Pingan Jiang, Alon Ben-Gal
Publikováno v:
Frontiers in Plant Science, Vol 13 (2022)
Elevated CO2 concentration [e(CO2)] often promotes plant growth with a decrease in tissue N concentration. In this study, three experiments, two under hydroponic and one in well-watered soil, including various levels or patterns of CO2, humidity, and
Externí odkaz:
https://doaj.org/article/97b91e4b6d1e4e059bde777ebf5cf5d7
Publikováno v:
Remote Sensing, Vol 14, Iss 14, p 3438 (2022)
The accurate quantification of evapotranspiration (ET) is critical to the sustainable management of irrigated agriculture. In this study, we proposed a remote sensing data fusion method for predicting ET, coupling a surface energy balance system mode
Externí odkaz:
https://doaj.org/article/4a35fc6870e04e4a887bea707e9774f4
Autor:
Lining Liu, Qiang Zuo, Jianchu Shi, Xun Wu, Congmin Wei, Jiandong Sheng, Pingan Jiang, Quanjia Chen, Alon Ben-Gal
Publikováno v:
Agricultural Water Management. 285:108366
Publikováno v:
PLoS ONE, Vol 12, Iss 7, p e0180713 (2017)
Water-saving ground cover rice production systems (GCRPS) are gaining popularity in many parts of the world. We aimed to describe the characteristics of root growth, morphology, distribution, and water uptake for a GCRPS.A traditional paddy rice prod
Externí odkaz:
https://doaj.org/article/a5ae98784dd8465caef375bd11327833
Autor:
Wei Zhang, Kai Wang, Jianchu Shi, Rong Wang, Shenghui Han, Siqi Li, Chunyan Liu, Xunhua Zheng, Qiang Zuo, Zhisheng Yao
Publikováno v:
Atmospheric Chemistry and Physics. 20:6903-6919
To meet increasing demands, tea plantations are rapidly expanding in China. Although the emissions of nitrous oxide ( N2O ) and nitric oxide (NO) from tea plantations may be substantially influenced by soil pH reduction and intensive nitrogen fertili
Autor:
Wenjie Meng, Jinliang Xing, Mu Niu, Qiang Zuo, Xun Wu, Jianchu Shi, Jiandong Sheng, Pingan Jiang, Quanjia Chen, Alon Ben-Gal
Publikováno v:
Agricultural Water Management. 275:107994