Risheng Ding

About Risheng Ding

Risheng Ding, With an exceptional h-index of 30 and a recent h-index of 27 (since 2020), a distinguished researcher at China Agricultural University, specializes in the field of Evapotranspiration, plant water relations, plant-environment interactions, water management.

His recent articles reflect a diverse array of research interests and contributions to the field:

Elevated CO2 concentration increases maize growth under water deficit or soil salinity but with a higher risk of hydraulic failure

Multi-growth stage regulated deficit irrigation improves maize water productivity in an arid region of China

Stomatal conductance modulates maize yield through water use and yield components under salinity stress

Maintaining grain number by reducing grain abortion is the key to improve water use efficiency of maize under deficit irrigation and salt stress

Irrigation expansion has kept pace with the CO2 fertilization effect on vegetation growth in a typical arid region

Response of soil respiration and carbon budget to irrigation quantity/quality and biochar addition in a mulched maize field under drip irrigation

The journal of the International Commission on Irrigation and Drainage

Multi-scale spectral characteristics of latent heat flux over flooded rice and winter wheat rotation system

Risheng Ding Information

University

Position

___

Citations(all)

3300

Citations(since 2020)

2507

Cited By

1779

hIndex(all)

30

hIndex(since 2020)

27

i10Index(all)

61

i10Index(since 2020)

55

Email

University Profile Page

Google Scholar

Risheng Ding Skills & Research Interests

Evapotranspiration

plant water relations

plant-environment interactions

water management

Top articles of Risheng Ding

Elevated CO2 concentration increases maize growth under water deficit or soil salinity but with a higher risk of hydraulic failure

Journal of Experimental Botany

2024/1/1

Risheng Ding
Risheng Ding

H-Index: 21

Qing Zhao
Qing Zhao

H-Index: 6

Multi-growth stage regulated deficit irrigation improves maize water productivity in an arid region of China

Agricultural Water Management

2024/5/31

Stomatal conductance modulates maize yield through water use and yield components under salinity stress

Agricultural Water Management

2024/4/1

Maintaining grain number by reducing grain abortion is the key to improve water use efficiency of maize under deficit irrigation and salt stress

Agricultural Water Management

2024/4/1

Irrigation expansion has kept pace with the CO2 fertilization effect on vegetation growth in a typical arid region

Environmental Sciences Europe

2024/2/26

Response of soil respiration and carbon budget to irrigation quantity/quality and biochar addition in a mulched maize field under drip irrigation

Journal of the Science of Food and Agriculture

2024/1/30

Multi-scale spectral characteristics of latent heat flux over flooded rice and winter wheat rotation system

Agricultural Water Management

2023/10/1

Combination of suitable planting density and nitrogen rate for high yield maize and their source–sink relationship in Northwest China

Journal of the Science of Food and Agriculture

2023/8/30

Salinity-specific stomatal conductance model parameters are reduced by stomatal saturation conductance and area via leaf nitrogen

Science of The Total Environment

2023/6/10

Evaluation of two surface renewal methods for calculating the sensible heat flux over a tea field ecosystem in hilly terrain

Agronomy

2023/5/5

Yongguang Hu
Yongguang Hu

H-Index: 2

Risheng Ding
Risheng Ding

H-Index: 21

Quantitative responses of tomato yield, fruit quality and water use efficiency to soil salinity under different water regimes in Northwest China

Agricultural Water Management

2023/3/1

Hao Li
Hao Li

H-Index: 5

Risheng Ding
Risheng Ding

H-Index: 21

Effects of biochar addition and deficit irrigation with brackish water on yield-scaled N2O emissions under drip irrigation with mulching

Agricultural Water Management

2023/3/1

Stomatal conductance parameters of tomatoes are regulated by reducing osmotic potential and pre-dawn leaf water potential via increasing ABA under salt stress

Environmental and Experimental Botany

2023/2/1

Risheng Ding
Risheng Ding

H-Index: 21

Ling Tong
Ling Tong

H-Index: 1

Drought, salt, and combined stresses in plants: Effects, tolerance mechanisms, and strategies

2023/1/1

Risheng Ding
Risheng Ding

H-Index: 21

Ling Tong
Ling Tong

H-Index: 1

The trade-offs between resistance and resilience of forage stay robust with varied growth potentials under different soil water and salt stress

Science of the Total Environment

2022/11/10

Risheng Ding
Risheng Ding

H-Index: 21

The controlling factors of ecosystem water use efficiency in maize fields under drip and border irrigation systems in Northwest China

Agricultural Water Management

2022/10/1

Plasticity in stomatal behaviour across a gradient of water supply is consistent among field‐grown maize inbred lines with varying stomatal patterning

Plant, Cell & Environment

2022/8

Risheng Ding
Risheng Ding

H-Index: 21

Andrew Db Leakey
Andrew Db Leakey

H-Index: 40

Stomatal conductance drives variations of yield and water use of maize under water and nitrogen stress

Agricultural Water Management

2022/6/30

Comparison of several models for estimating gross primary production of drip-irrigated maize in arid regions

Ecological Modelling

2022/6/1

See List of Professors in Risheng Ding University(China Agricultural University)

Co-Authors

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