People
Title:Associate Professor
Subject:Soil Biochemistry
Phone:86-24-83970376
Email:zhangw@iae.ac.cn
Address:Institute of Applied Ecology, Chinese Academy of Sciences.No. 72 Wenhua Road, Shenyang, Liaoning, China, 110016
Resume:

EMPLOYMENT BACKGROUND
2010- Associate Professor, Institute of Applied Ecology, Chinese Academy of Sciences
2008-2010 Assistant Professor, Institute of Applied Ecology, Chinese Academy of Sciences

EDUCATION
1999- 2003, Northeastern University, B.S. in Chemistry
2003- 2008, Institute of Applied Ecology, Chinese Academy of Sciences, Ph.D in Soil Science

  • Soil Chemistry and Biochemistry
  • Journal Articles
    1. Shao S., Zhao Y. , Zhang W., Hu, G.Q., Xie, H.T., Yan J.H., Han S.J., He, H.B., Zhang, X.D. 2017. Linkage of microbial residue dynamics with soil organic carbon accumulation during subtropical forest succession. Soil Biology & Biochemistry,114:114-120.
    2. Zhang, W., Liang, C., Kao-Kniffin, J., He, H.B., Xie, H.T., Zhang, X.D. 2017. Effects of drying and wetting cycles on the transformations of extraneous inorganic N to soil microbial residues. Scientific Reports.
    3. Hu, G.Q., He, H.B., Zhang, W., Zhao, J.S., Cui, J.H., Li, B., Zhang, X.D. 2016. The transformation and renewal of soil amino acids induced by the availability of extraneous C and N. Soil Biology & Biochemistry, 96: 86-96.
    4. Zhang, W., Cui, Y.H., Lu, X.K., Bai, E., He, H.B., Xie, H.T., Liang, C., Zhang, X.D. 2016. High nitrogen deposition decreases the contribution of fungal residues to soil carbon pools in a tropical forest ecosystem. Soil Biology & Biochemistry, 97: 211-214.
    5. Liu, X., Hu, G.Q., He, H.B., Liang, C., Zhang, W., Bai, Z., Wu, Y.Y., Lin, G.F., Zhang,X.D. 2016. Linking microbial immobilization of fertilizer nitrogen to in situ turnover of soil microbial residues in an agro-ecosystem. Agriculture, Ecosystems and Environment, 229: 40-47.
    6. Hu, G.Q., Liu, X., He,H.B., Zhang,W., Xie,H.T., Wu, Y.Y., Cui, J.H., Sun, C., Zhang,X.D. 2015. Multi-seasonal nitrogen recoveries from crop residue in soil and crop in a temperate agro-ecosystem. PLoS ONE, 10: e0133437.
    7. Zhang, W., Liang, C., Kao-Kniffin, J., He, H.B., Xie, H.T., Zhang, H., Zhang, X.D. 2015. Differentiating the mineralization dynamics of the originally present and newly synthesized amino acids in soil amended with available carbon and nitrogen substrates. Soil Biology & Biochemistry, 85:162-169.
    8. Zhang, W., He, H.B., Li, Q., Lu, C.Y., Zhang, X.D., Zhu, J.G.2014. Soil microbial residue dynamics after 3-year elevated O3 exposure are plant species-specific. Plant and Soil, 376: 139-149.
    9. Lü, H.J., He, H.B., Zhao, J.S., Zhang, W., Xie, H.T., Hu, G.Q., Liu, X., Wu, Y.Y., Zhang, X.D.2013.Dynamics of fertilizer-derived organic nitrogen fractions in an arable soil during a growing season. Plant and Soil, 373(01): 595-607.
    10. He, H.B., Li, X.B., Zhang, W., Zhang, X.D. 2011. Differentiating the dynamics of native and newly immobilized amino sugars in soil frequently amended with inorganic nitrogen and glucose. European Journal of Soil Science, 62: 144-151.
    11. He, H.B., Zhang, W., Zhang, X.D., Xie, H.T., Zhuang, J. 2011. Temporal responses of soil microorganisms to substrate addition as indicated by amino sugar differentiation. Soil Biology & Biochemistry, 43: 1155-1161.
    12. He, H.B., Lü, H.J., Zhang, W., Hou, S.M., Zhang, X.D. 2011. A liquid chromatographic/mass spectrometric method to evaluate 13C and 15N incorporation into soil amino acids. Journal of Soils and Sediments 11: 731-740.
    13. Hou, S.M., He, H.B., Zhang, W., Xie, H.T. Zhang, X.D. 2009. Determination of soil amino acids by high performance liquid chromatography-electro spray ionization-mass spectrometry derivatized with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate. Talanta, 80: 440-447.
    14. Zhang, W., He, H.B., Zhang, X.D. 2007. Determination of neutral sugars in soil by capillary gas chromatography after derivatization to aldononitrile acetates. Soil Biology & Biochemistry, 39: 2665-2669.