State Key Laboratory of Herbage Improvement and Grassland Agro-Ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China.
College of Grassland Science, Shanxi Agricultural University, Taigu, 030801, China.
Environ Res. 2023 Sep 15;233:116501. doi: 10.1016/j.envres.2023.116501. Epub 2023 Jun 24.
The soil carbon (C) and nitrogen (N) availability are important in the regulation of soil C cycling under climate change. Fertilizers alter soil C and N availability, which can affect C balance. However, the impact of fertilizers on C balance in grassland restoration has been equivocal and warrants more research. We determined the direct and indirect effects of the addition of three levels of C (sucrose) (0, 60, and 120 kg C ha yr), three levels of N (urea) (0, 50, and 100 kg N ha yr), and a combination of C plus N at each of the levels on soil respiration (Rs) dynamics and C balance in an alpine meadow in northern Tibet (4700 m above sea level). This study was undertaken during the middle of the growing season in 2011-2012. The addition of C and/or N stimulated CO emission, which was 2-fold greater in 2011 (102-144 g C m) than in 2012 (43-54 g C m). The rate of Rs increased with the addition of N, but was not affected with the addition of C plus N. Microbial biomass C, dissolved organic C and inorganic N were the main drivers of Rs. We concluded that N addition stimulated Rs to a greater extent than C addition in the short term. The application of fertilizer in the restoration of degraded grassland should be re-considered.
土壤碳 (C) 和氮 (N) 的有效性在气候变化下调节土壤 C 循环中起着重要作用。肥料会改变土壤 C 和 N 的有效性,从而影响 C 平衡。然而,肥料对草原恢复中 C 平衡的影响一直存在争议,需要进一步研究。我们确定了在青藏高原北部的高寒草甸中,添加三种水平的 C(蔗糖)(0、60 和 120 kg C ha yr)、三种水平的 N(尿素)(0、50 和 100 kg N ha yr)以及 C 和 N 组合对土壤呼吸(Rs)动态和 C 平衡的直接和间接影响。本研究于 2011-2012 年生长季节中期进行。C 和/或 N 的添加刺激了 CO 的排放,2011 年(102-144 g C m)比 2012 年(43-54 g C m)增加了两倍。Rs 的速率随 N 的添加而增加,但随 C 和 N 的添加而不受影响。微生物生物量 C、溶解有机 C 和无机 N 是 Rs 的主要驱动因素。我们得出结论,短期内,N 添加比 C 添加更能刺激 Rs。退化草原恢复中肥料的应用应重新考虑。