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Featured researches published by Yi Zheng.


Journal of Geophysical Research | 2018

Hydrological Cycle in the Heihe River Basin and Its Implication for Water Resource Management in Endorheic Basins

Xin Li; Guodong Cheng; Y. S. Ge; Hongyi Li; Feng Han; Xiaoli Hu; Wei Tian; Yong Tian; Xiaoduo Pan; Yanyun Nian; Yanlin Zhang; Youhua Ran; Yi Zheng; Bing Gao; Dawen Yang; Chunmiao Zheng; Xu-Sheng Wang; Shaomin Liu; Ximing Cai

Endorheic basins around the world are suffering from water and ecosystem crisis. To pursue sustainable development, quantifying the hydrological cycle is fundamentally important. However, knowledge gaps exist in how climate change and human activities influence the hydrological cycle in endorheic basins. We used an integrated ecohydrological model, in combination with systematic observations, to analyze the hydrological cycle in the Heihe River Basin, a typical endorheic basin in arid region of China. The water budget was closed for different landscapes, river channel sections, and irrigation districts of the basin from 2001 to 2012. The results showed that climate warming, which has led to greater precipitation, snowmelt, glacier melt, and runoff, is a favorable factor in alleviating water scarcity. Human activities, including ecological water diversion, cropland expansion, and groundwater overexploitation, have both positive and negative effects. The natural oasis ecosystem has been restored considerably, but the overuse of water in midstream and the use of environmental flow for agriculture in downstream have exacerbated the water stress, resulting in unfavorable changes in surface-ground water interactions and raising concerns regarding how to fairly allocate water resources. Our results suggest that the water resource management in the region should be adjusted to adapt to a changing hydrological cycle, cropland area must be reduced, and the abstraction of groundwater must be controlled. To foster long-term benefits, water conflicts should be handled from a broad socioeconomic perspective. The findings can provide useful information on endorheic basins to policy makers and stakeholders around the world.


Chemosphere | 2018

Immunotoxicity of bisphenol S and F are similar to that of bisphenol A during zebrafish early development

Wenhui Qiu; Haiyang Shao; Penghui Lei; Chunmiao Zheng; Cunxin Qiu; Ming Yang; Yi Zheng

Bisphenol S (BPS) and bisphenol F (BPF) have been increasingly used as alternatives to bisphenol A (BPA) owing to health concerns. The present study aims to evaluate the impact of these two BPA analogs on oxidative stress and the immune system during zebrafish embryonic and larval development. Environmentally relevant levels of BPS and BPF exposure could increase reactive oxygen species (ROS) content, nitric oxide (NO) content, nitric oxide synthase (NOS) activity, and the expression of immunity-related genes in concentration dependent manners during the early developmental stages in zebrafish. At a concentration of 100xa0μg/L, BPS and BPF showed similar effects on the immune toxicity of zebrafish as that of BPA. Moreover, BPS and BPF induced both erα and nf-κb expression, and antagonists of estrogen receptor and NF-κB blocked the effects on immunity-related gene expression, providing evidence that the two pathways mediate the actions of BPS and BPF on fish immune response and functions. Thus we conclude that the presence of BPS and BPF in the environment, similar to BPA, may also pose risks to ecosystem and human health and cannot be widely used without limitations and precautions.


Geophysical Research Letters | 2017

What controls the partitioning between baseflow and mountain block recharge in the Qinghai‐Tibet Plateau?

Yingying Yao; Chunmiao Zheng; Charles Andrews; Yi Zheng; Aijing Zhang; Jie Liu

Mountainous areas are referred to as “water towers” since they are the source of water for many low-lying communities. The hydrologic budgets of these areas, which are particularly susceptible to climate change, are typically poorly constrained. To address this, we analyzed the partitioning between baseflow and mountain block recharge (MBR) using a regional groundwater model of the northern Qinghai-Tibet Plateau run with multiple scenarios. We found that ~19% of precipitation is recharged, approximately 35% of which becomes MBR, while 65% discharges as baseflow. This partitioning is relatively independent of the recharge rate but is sensitive to exponential depth decrease of hydraulic conductivity (K). The MBR is more sensitive to this exponential decrease in K than baseflow. The proportion of MBR varies from twice to half of baseflow as the decay exponent increases by more than fivefold. Thus, the depth dependence of K is critical for quantifying hydrologic partitioning in these sensitive areas.


Science of The Total Environment | 2019

Photolysis of enrofloxacin, pefloxacin and sulfaquinoxaline in aqueous solution by UV/H2O2, UV/Fe(II), and UV/H2O2/Fe(II) and the toxicity of the final reaction solutions on zebrafish embryos

Wenhui Qiu; Ming Zheng; Jing Sun; Yiqun Tian; Meijuan Fang; Yi Zheng; Ting Zhang; Chunmiao Zheng

In this work, the photolysis of enrofloxacin (ENR), pefloxacin (PEF), and sulfaquinoxaline (SQX) in aqueous solution by UV combined with H2O2 or ferrous ions (Fe(II)), as well as Fenton (Fe(II)/H2O2) processes, was investigated. In addition, the toxicity of the final reaction solution after UV/H2O2/Fe(II) treatment toward zebrafish embryos was determined. The degradation of the test compounds followed pseudo-first-order reaction kinetics. The optimum concentrations of H2O2 for ENR, PEF and SQX removal under UV/H2O2 treatment were 20, 20 and 5u202fmM, respectively. The optimum concentrations of Fe(II) for ENR, PEF and SQX removal in the UV/Fe(II) system were 0.25, 10, and 1u202fmM, respectively. For the UV/H2O2/Fe(II) system, pHu202f=u202f3 is the best initial pH for the degradation of ENR, PEF and SQX with the degradation efficiencies at 100%, 79.1% and 100% after 180u202fmin, respectively. Considering the degradation rate and electrical energy per order of the test compounds, the UV/H2O2/Fe(II) process was better than the UV/H2O2 and UV/Fe(II) processes because of the greater OH generation. Based on major transformation products of ENR, PEF, and SQX detected during UV/H2O2/Fe(II) treatment, the probable degradation pathway of each compound is proposed. The fluorine atom of ENR and PEF was transformed into fluorine ion, and the sulfur atom was transformed into SO2/SO42-. The nitrogen atom was mainly transformed into NH3/NH4+. Formic acid, acetic acid, oxalic acid, and fumaric acid were identified in the irradiated solutions and all the test compounds and their intermediates can be finally mineralized. In addition, after the UV/H2O2/Fe(II) process, the acute toxicity of the final reaction solutions on zebrafish embryos was lower than that of the initial solution without any treatment. In summary, UV/H2O2/Fe(II) is a safe and efficient technology for antibiotic degradation.


Environmental Modelling and Software | 2018

A comprehensive graphical modeling platform designed for integrated hydrological simulation

Yong Tian; Yi Zheng; Feng Han; Chunmiao Zheng; Xin Li

Abstract This study developed a comprehensive graphical data processing and modeling system named Visual HEIFLOW (VHF) for integrated surface water-groundwater modeling. Its distinctive features include the following. First, VHF uses a generic multivariable-space-time data cube model, which enables the system to efficiently handle large time-series datasets over a large spatial domain. Second, VHF streamlines the entire modeling procedure from data preparation at the very beginning to visualization and analysis of modeling results in a uniform environment. Third, VHF allows updating the land use input at user-specified time points without manual intervention and therefore allows a direct simulation of the hydrological effects of changing land use. The applicability and versatility of VHF were demonstrated in a case study in the Heihe River Basin, the second largest inland river basin in China. The case study also demonstrated that VFH facilitates process understanding and supports management decision-making.


Journal of Hydrology | 2018

An integrated hydrological modeling approach for detection and attribution of climatic and human impacts on coastal water resources

Dapeng Feng; Yi Zheng; Yixin Mao; Aijing Zhang; Bin Wu; Jinguo Li; Yong Tian; Xin Wu


Ecological Modelling | 2017

An integrated ecohydrological modeling approach to exploring the dynamic interaction between groundwater and phreatophytes

Xi Li; Yi Zheng; Zan Sun; Yong Tian; Chunmiao Zheng; Jie Liu; Shaomin Liu; Ziwei Xu


Water Resources Research | 2018

The Nexus of Water, Ecosystems and Agriculture in Endorheic River Basins: A System Analysis Based on Integrated Ecohydrological Modeling

Zan Sun; Yi Zheng; Xi Li; Yong Tian; Feng Han; Ye Zhong; Jie Liu; Chunmiao Zheng


Journal of Hydrology | 2018

A computer vision-based approach to fusing spatiotemporal data for hydrological modeling

Shijie Jiang; Yi Zheng; Vladan Babovic; Yong Tian; Feng Han


Journal of Geophysical Research | 2018

Role of Groundwater in the Dryland Ecohydrological System: A Case Study of the Heihe River Basin

Yingying Yao; Yong Tian; Charles Andrews; Xi Li; Yi Zheng; Chunmiao Zheng

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Chunmiao Zheng

University of Science and Technology

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Yong Tian

University of Science and Technology

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Charles Andrews

University of Science and Technology

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Feng Han

University of Science and Technology

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Shaomin Liu

Beijing Normal University

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Xin Li

Chinese Academy of Sciences

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