1. Su, Z., Zhu, S., Wei, Z., He, Y., Su, B., Zhang, K., ... & Shangguan, Z. (2025). Vegetation restoration changed the soil aggregate stability and aggregate carbon stabilization pathway according to δ13C signatures. Agriculture, Ecosystems & Environment, 378, 109317. 2. Su, Z., Zhong, Y., Zhu, X., Wu, Y., Shen, Z., & Shangguan, Z. (2023). Vegetation restoration altered the soil organic carbon composition and favoured its stability in a Robinia pseudoacacia plantation. Science of the Total Environment, 899, 165665. 3. Su, Z., & Shangguan, Z. (2023). Nitrogen addition decreases the soil cumulative priming effect and favours soil net carbon gains in Robinia pseudoacacia plantation soil. Geoderma, 433, 116444. 4. Su, Z., Su, B., Wu, Y., Zhang, Y., Wang, J., Chen, Y., & Shangguan, Z. (2023). A less complex but more specialized microbial network resulted in faster fine-root decomposition in young stands of Robinia pseudoacacia. Applied Soil Ecology, 182, 104735. 5. Su, Z., Su, B., Mao, S., & Shangguan, Z. (2023). Leaf C: N: P stoichiometric homeostasis of a Robinia pseudoacacia plantation on the Loess Plateau. Journal of Forestry Research, 34(4), 929-937. 6. Su, Z., Zhu, X., Wang, Y., Mao, S., & Shangguan, Z. (2022). Litter C and N losses at different decomposition stages of Robinia pseudoacacia: The weaker effects of soil enzyme activities compared with those of litter quality and the soil environment. Frontiers in Environmental Science, 10, 956309. 7. 苏卓侠, 苏冰倩 & 上官周平.(2022).植物凋落物分解对土壤有机碳稳定性影响的研究进展. 水土保持研究29(02),406-413. 8. 苏卓侠, 苏冰倩 & 上官周平.(2020).黄土高原刺槐叶片-土壤生态化学计量参数对降雨量的响应特征. 生态学报40(19),7000-7008. |