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Renwei Feng

Associate Research Fellow

Organization: Institute of Agro-Environmental Protection, The   Ministry of Agriculture;

Address: 31  FuKang Road, NanKai District, TianJin 300191, China;

Researcher ID: http://www.researcherid.com/rid/B-6274-2012; 

E-mail: frwzym@aliyun.com

 

 

 

Research Area

ü Remidiation of agricultural environmental pollution;

ü Plant stress physiology;

ü The safety production technology for polluted farmland. 

Ph.D. College of Resources and Environment, Huazhong Agricultural University, Wuhan, 430070, China. 

Affiliation

ü Editorial advisory board member:

1. Environmental and Experimental Botany,

(http://www.journals.elsevier.com/environmental-and-experimental-botany//editorial-board);

2.      Journal of Agro-Environmental Science (Chinese),

(http://www.aes.org.cn/nyhjkxxb/ch/first_menu.aspx?parent_id=20130816110249001).

Research Project

ü  Principal Investigator:

  1. “The study on the mechanisms of antimony migration and transformation in soil-rice system” Duration, 4 fears (2015-2018); Funding agency, the National Science Foundation of China; Amount, Yuan. 0.9 Million.

  2. “Investigation on the mechanisms on the detoxification of antimony by selenium in paddy rice Conclusion, 3 fears (2012-2014); Funding agency, the National Science Foundation of China; Amount, Yuan. 0.25 Million.

  3. “The mechanisms on the effects of selenium on the uptake and detoxification of cadmium in paddy rice Duration, 2 fears (2014-2015); Funding agency, the Central Public Research Institute Basic Fund for Research and Development; Amount, Yuan. 0.35 Million.

  4. “The effects of selenium on the uptake and detoxification of multiple heavy metals in leaf vegetables exposed to elevated CO2 Conclusion, 2 fears (2011-2012); Funding agency, the Central Public Research Institute Basic Fund for Research and Development; Amount, Yuan. 0.60 Million.

Publications

1.     Feng R W, Liao G J, Guo J K, Wang R G, Xu Y M, Ding Y Z, Mo L Y, Fan Z L, Li N Y*. Responses of root morphological characteristics and antioxidative systems of paddy rice exposed to antimony and selenium. Environ Exp Bot 10.1016/j.envexpbot.2015.08.007.

2.     Wang R G, Guo J K, Xu Y M, Ding Y Z, Shen Y, Feng R W*. Evaluation of silkworm excrement and mushroom dreg as metal immobilizing soil additives for the remediation of multiple heavy metal contaminated soil with Pb, Cd, As and Zn. Ecotox Environ Safe (Revised) 

3.      Ding Y Z, Wang R G, Guo J K, Wu F C, Xu Y M, Feng R W*. The effect of selenium on the subcellular distribution of antimony to regulate the toxicity of antimony in paddy rice. Environ Sci Pollut Res, 22: 5111–5123, 2015

4.      Feng R W, Wang X L, Wei C Y *, Tu S X. The accumulation and subcellular distribution of arsenic and antimony in four fern plants. Int J phytoremediat, 17: 348-354, 2015

5.      Ding Y Z, Feng R W*, Wang R G, Guo J K, Zheng X Q*, Xu Y M. A dual role of Se on Cd toxicity: evidence from plant growth, root morphology and responses of the antioxidative systems of paddy rice. Plant Soil, 375:289-301, 2014

6.      Guo J K, Feng R W*, Ding Y Z, Wang R G*, Xu Y M. Applying carbon dioxide, plant growth-promoting rhizobacterium and EDTA can enhance the phytoremediation efficiency of ryegrass in a soil polluted with zinc, arsenic, cadmium and lead. J Environ Manage, 141: 1-8, 2014

7.      Tian S, Jia Y, Ding Y Z*, Wang R G, Feng R W*, Song Z G, Guo J K, Zhou L. Elevated atmospheric CO2 enhanced the copper uptake in crops and pasture species grown on copper contaminated soils in a micro-plot study. Clean-Soil, Air Water, 42(3): 347-354, 2014

8.      Feng R W*, Wei C Y*, Tu S X. A review: The roles of selenium in protecting plants against abiotic stresses. Environ Exp Bot, 87: 58-68, 2013

9.      Feng R W*, Wei C Y*, Tu S X, Ding Y Z, Wang R G, Guo J K. The uptake and detoxification of antimony by plants: a review. Environ Exp Bot, 96: 28-34, 2013

10.  Feng R W, Qiu W W, Lian F, Yu Z H, Yang Y X, Song Z G*. Field evaluation of in situ remediation of Cd contaminated soil using four additives, two foliar fertilizers and two varieties of pakchoi. J Environ Manage, 124: 17-24, 2013

11.  Feng R W*, Wei C Y*, Tu S X. Interactive effects of selenium and antimony on the uptake of selenium, antimony and essential elements in paddy-rice. Plant Soil, 365: 375-386, 2013

12.  Feng R W*, Wei C Y*, Tu S X, Ding Y Z, Song Z G. A dual role of Se on Cd toxicity: evidences from the uptake of Cd and some essential elements and the growth responses in paddy-rice. Biol Trace Element Res, 151: 113-121, 2013

13.  Feng R W*, Wei C Y. Antioxidative mechanisms on selenium accumulation in Pteris vittata L., a potential selenium phytoremediation plant. Plant Soil Environ, 58: 105-110, 2012

14.  Feng R W, Wei C Y*, Tu S X, Tang S R, Wu F C. Simultaneous hyperaccumulation of arsenic and antimony in Cretan brake fern: evidence of plant uptake and subcelluar distributions. Microchem J, 97(1): 38-43, 2011

15.  Feng R W, Wei C Y*, Tu S X, Tang S R, Wu F C. Detoxification of antimony by selenium and their interaction in paddy rice under hydroponic conditions. Microchem J, 97(1): 57-61, 2011

16.  Feng R W, Wei C Y*, Tu S X, Tang S R, Wu F C. Antimony accumulation and antioxidative responses in four fern plants. Plant Soil, 317: 93-101, 2009

17.  Feng R W, Wei C Y*,Tu S X, Wu F C. Effects of Se on the uptake of essential elements in Pteris vittata L. Plant Soil, 325 (1-2): 123-132, 2009

18.  Feng R W, Wei C Y*, Tu S X*, Sun X. Interactive effects of selenium and arsenic on their uptake by Pteris vittata L. under hydroponic conditions. Environ Exp Bot, 65(2-3): 363-368, 2009

19.  Ding Y Z*, Song Z G, Feng R W, Guo J K. Interaction of organic acids and pH on multi-heavy metals extraction from alkaline and acid mine soils. Int J Environ Sci Tech, 11:33-42, 2014

20.  Jia Y, Tang S R*, Ju X H, Shu L N, Tu S X, Feng R W, Giusti, L. Effects of elevated CO2 levels on root morphological traits and Cd uptake of two Lolium species under Cd stress. J Zhejiang Univ Sci b, 12(4): 313-325, 2011

21.  Wei C Y*, Ge Z F, Chu W S, Feng R W. Speciation of antimony and arsenic in the soils and plants in an old antimony mine. Environ Exp Bot, 109: 31-39, 2015

22.  Guo J K*, Ding Y Z, Feng R W, Wang R G, Xu Y M, Chen C, Wei X L, Chen W M. Burkholderia metalliresistens sp. nov., a multiple metalresistant and phosphate-solubilising species isolated from heavy metal-polluted soil in Southeast China. Antonie van Leeuwenhoek 107:1591–1598, 2015