Location: Home > Scientist > Faculty and Staff
Faculty and Staff
 
Name:
JIANG Xiaojin
Education:
Ph.D
Positions:
 
Academic title:
Professor
Postal Code:
666303
Subject categories:
Ecology
Mailing Address:
XTBG, Menglun, Mengla, 666303, Yunnan, China
E-mail:
jiangxiaojin@xtbg.ac.cn

Resume:
 

Education  

Ph.D. September, 2011–July, 2015. Ecology, College of Life Sciences, Lanzhou University 

M.S. September, 2008–July, 2011. Soil & water conservation and desertification control, School of Forestry, Northeast Forestry University  

B.S. September, 2004–July, 2008. Soil & water conservation and desertification control, College of Forestry, Shanxi Agricultural University 

Work experiences 

2024.06now: Professor, XTBG 

2019.01–2024.05: Associate Professor, XTBG  

2016.07–2018.12: Assistant Professor, XTBG 

Research interests 

Preferential flow, water infiltration, soil physical, vegetation transpiration. 

Direction:
 

Achievements:
 

Article:
 

 (*corresponding author) 

Jiang X-J, Wang HF, Zakari S, Zhu XA, Singh AK, Lin YX, Liu WJ, Liu JQ*, Chen CF*. Assessing the impact of forest conversion to plantations on soil degradation and forest water conservation in the humid tropical region of Southeast Asia: Implications for forest restoration. Geoderma. 2023, 440: 116712. 

Zhang WJ, Zhu XA, Ji SY, Chen CF, Zeng HH, Zou X, Yang B, Jiang XJ*, Liu WJ*. Soil water movement differences relating to banana (Musanana Lour.) plantation regime. Land Degradation & Development. 2022,1-13. 

Chen CF, Zou X, Singh AK, Zhu XA, Zhang WJ, Yang B, Jiang XJ*, Liu WJ*. Effects of hillslope position on soil water infiltration and preferential flow in tropical forest in southwest China. Journal of Environmental Management. 2021, 299: 113672. 

Jiang X-J, Zhu XA, Yuan Z-Q, Li XG, Liu WJ*, Zakari S*. Lateral ?ow between bald and vegetation patches induces the degradation of alpine meadow in Qinghai-Tibetan Plateau. Science of the Total Environment. 2021, 751: 142338. 

Zakari S#, Jiang XJ#, Zhu XA, Liu WJ*, Allakonon MGB, Singh AK, Chen CF, Zou X, Akponikpe PBI, Dossa GGO, Yang B. Influence of sulfur amendments on heavy metals phytoextraction from agricultural contaminated soils: A meta-analysis. Environmental Pollution. 2021, 288: 117820.  

Zakari S, Liu WJ*, Wu JE, Singh AK, Jiang XJ*, Yang B, Chen CF, Zhu XA. Decay and erosion-related transport of sulfur compounds in soils of rubber based agroforestry. Journal of Environmental Management. 2020, 274: 111200. 

Jiang XJ*, Zakari S, Wu JE, Singh AK, Chen CF, Zhu XA, Zhang WJ, Liu WJ*. Can complementary preferential flow and non-preferential flow domains contribute to soil water supply for rubber plantation? Forest Ecology and Management. 2020, 461: 117948. 

Jiang XJ, Chen CF, Zhu XA, Zakari S, Singh AK, Zhang WJ, Zeng HH, Yuan ZQ, He CG, Yu SQ, Liu WJ*. Use of dye infiltration experiments and HYDRUS-3D to interpret preferential flow in soil in a rubber-based agroforestry systems in Xishuangbanna, China. CATENA . 2019, 178: 120-131. 

Chen CF, Liu WJ*, Wu JE, Jiang XJ*, Zhu XA. Can intercropping with the cash crop help improve the soil physico-chemical properties of rubber plantations? Geoderma. 2019, 335: 149-160. 

Zhu XA, Chen CF, Wu JE, Yang JB, Zhang WJ, Zou X, Liu WJ*, Jiang XJ*. Can intercrops improve soil water infiltrability and preferential flow in rubber-based agroforestry system? Soil & Tillage Research. 2019, 191: 327-339. 

Wang H, Zhu X, Zakari S, Chen C, Liu W*, Jiang X-J*. Assessing the Effects of Plant Roots on Soil Water In?ltration Using Dyes and Hydrus-1D. Forests. 2022, 13, 1095. 

 Jiang XJ, Chen CF, Zhu XA, Zakari S, Singh AK, Zhang WJ, Zeng HH, Yuan ZQ, He CG, Yu SQ, Liu WJ*. Use of dye infiltration experiments and HYDRUS-3D to interpret preferential flow in soil in a rubber-based agroforestry systems in Xishuangbanna, China. Catena, 2019, 178: 120-131.  

Chen CF, Liu WJ*, Wu JE, Jiang XJ*, Zhu XA. Can intercropping with the cash crop help improve the soil physico-chemical properties of rubber plantations? Geoderma, 2019, 335:149-160.  

Jiang XJ*, Liu WJ, Chen CF, Liu JQ, Yuan ZQ, Jin BC, Yu XY. Effects of three morphometric features of roots on soil water flow behavior in three sites in China. Geoderma, 2018, 320,161-171.  

Zhu XA, Liu WJ*, Jiang XJ*, Wang PY, Li WX. Effects of land‐use changes on runoff and sediment yield: Implications for soil conservation and forest management in Xishuangbanna, Southwest China. Land Degradation & Development, 2018, 1-13.  

 Chen CF, Liu WJ*, Wu JE, Jiang XJ*. Spatio-temporal variations of carbon and nitrogen in biogenic structures of two fungus-growing termites (M. annandalei and O. yunnanensis) in the Xishuangbanna region. Soil Biology and Biochemistry, 2018, 177:125-134.  

Jiang XJ, Liu WJ*, Wu JE, Wang PY, Liu CA, Yuan ZQ. Land degradation controlled and mitigated by rubber–based agroforestry systems through optimizing soil physical conditions and water supply mechanisms: A case study in Xishuangbanna, China. Land Degradation & Development, 2017, 28: 2277–2289.   

Jiang XJ*, Liu WJ, Zhou TZ, Xin P. Residual plastic mulch fragments effects on soil physical properties and water flow behavior in the Minqin Oasis, northwestern China. Soil & Tillage Research, 2017, 166: 100-107.  

Jiang XJ, Liu S*, Zhang H. Effects of different management practices on vertical soil water flow patterns in the Loess Plateau. Soil & Tillage Research, 2017, 166: 33–42.  

Chen CF, Liu WJ*Jiang XJ*, Wu JE. Effects of rubber-based agroforestry systems on soil aggregation and associated soil organic carbon: implications for land use. Geoderma, 2017, 299: 13-24.   

Jiang XJ, Wang EH, Li XG*, Sun R, Shi WJ. Effects of tillage pan on soil water distribution in alfalfa-corn crop rotation systems using a dye tracer and geostatistical methods. Soil & Tillage Research2015, 150: 68-77.  

Jiang XJ, Li XG*. Assessing the effects of plastic film fully mulched ridge-furrow on rainwater distribution in soil using dye tracer and simulated rainfall methods. Soil & Tillage Research2015, 152: 67-73.  

Community service:
 

Commitment to research the situation:
 

1) 2023.012026.12National Natural Science Foundation of China (NSFC): Soil water bidirectional recharge processes (precipitation infiltration and capillary- rise water) in response to forest stand increase of rubber plantations (32271648) (RMB: 510,000). 

2) 2022.06–2025.05: Yunnan Applied Basic Research Projects, China: Water cycling at the root-soil interface in rubber agroforestry systems (202201AT070216) (RMB:100,000). 

3) 2018.01–2021.12: Youth Innovation Promotion Association CAS (2018430) (RMB: 800,000).  

4) 2018.01–2020.12: National Natural Science Foundation of China (NSFC):  The regulating capabilities of plant water source by soil water migration behaviors in different types of rubber-based agroforestry systems (41701029) (RMB: 260,000).  

5) 2018.06–2021.05: Yunnan Applied Basic Research Projects, China: Study on soil moisture transport in rubber-agroforestry composite system (2018FB076) (RMB:100,000).