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应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2116-2126.doi: 10.13287/j.1001-9332.202607.004

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氮添加对落叶松次生林凋落物和土壤10种元素含量的影响

赵秋兰1, 朱文聪1, 王庆贵2, 全先奎1*   

  1. 1东北林业大学森林生态系统可持续经营教育部重点实验室, 哈尔滨 150040;
    2曲阜师范大学生命科学学院, 山东曲阜 273165
  • 收稿日期:2026-02-08 接受日期:2026-05-20 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: quanxiankui@nefu.edu.cn
  • 作者简介:赵秋兰, 女, 2000年生, 硕士研究生。主要从事森林生态学研究。E-mail: zhaoqiulan0807@163.com
  • 基金资助:
    国家重点研发计划项目(2021YFD220040107)资助。

Effects of nitrogen addition on the contents of 10 elements in litter and soil of Larix gmelinii secondary forest

ZHAO Qiulan1, ZHU Wencong1, WANG Qinggui2, QUAN Xiankui1*   

  1. 1Ministry of Education Key Laboratory of Sustainable Forest Ecosystem Management, Northeast Forestry University, Harbin 150040, China;
    2School of Life Sciences, Qufu Normal University, Qufu 273165, Shandong, China
  • Received:2026-02-08 Accepted:2026-05-20 Online:2026-07-18 Published:2027-01-18

摘要: 本研究以兴安落叶松次生林为研究对象,测定氮添加处理(0、25、50、75 kg N·hm-2·a-1,分别为对照、低氮、中氮和高氮处理)下凋落物未分解层和分解层及0~10和10~20 cm土层土壤中的C、N、P、K、Ca、Mg、S、Fe、Mn和Zn 10种元素含量。结果表明:与对照相比,凋落物未分解层N和Mn含量在各氮添加处理下分别显著增加15.0%~28.5%和13.1%~22.2%,K含量在中氮和高氮处理下显著增加19.3%~24.8%,P含量在高氮处理下显著降低8.8%,Ca和S含量在中氮和高氮处理下分别显著降低12.2%~13.1%和9.9%~13.5%,C、Mg、Fe和Zn含量在各氮添加处理下均无显著变化。与对照相比,凋落物分解层C和S含量在中氮和高氮处理下分别显著降低10.2%~20.9%和19.5%~33.9%,Fe含量在低氮和中氮处理下显著降低6.5%~9.4%,Mn含量在各氮添加处理下显著增加10.7%~21.2%,Zn含量在高氮处理下显著增加9.3%,N、P、K、Ca和Mg含量无显著变化。氮添加处理加快了凋落物C、N、K和S的释放速率,减缓了P、Ca和Zn的释放速率,对Mg、Fe和Mn的释放速率无显著影响。与对照相比,0~10 cm土层土壤有机碳和N含量在各氮添加处理下分别显著增加40.1%~70.0%和6.6%~18.8%,P和Zn含量在各氮添加处理下分别显著降低6.2%~25.0%和15.1%~32.8%,土壤Fe含量在低氮和中氮处理下显著增加1.8%~3.9%,K含量在低氮和中氮处理下显著降低2.4%~3.4%,Ca和S含量在高氮处理下分别显著降低8.8%和39.4%,Mg和Mn含量无显著变化。与对照相比,10~20 cm土层N和S含量在各氮添加处理下分别显著增加4.3%~13.7%和24.2%~69.3%,土壤有机碳含量在低氮和中氮处理下显著增加55.6%~72.7%,P和Zn含量在中氮和高氮处理下分别显著降低19.1%~24.2%和17.8%~24.9%,K含量在低氮处理下显著降低5.8%,Ca、Mg、Fe和Mn含量无显著变化。0~10 cm土层土壤的N和Ca含量分别与凋落物未分解层的N和Ca含量呈显著正相关,土壤有机碳、N、P、Ca、Mg和Zn含量均与凋落物中相应元素的释放率呈显著正相关。

关键词: 氮沉降, 凋落物, 土壤, 落叶松次生林

Abstract: We conducted a nitrogen addition experiment (0, 25, 50 and 75 kg N·hm-2·a-1 denoted as control, low nitrogen, middle nitrogen and high nitrogen, respectively) in a secondary Larix gmelinii forest to measure C, N, P, K, Ca, Mg, S, Fe, Mn and Zn contents in undecomposed and decomposed litter layers, as well as that in 0-10 cm and 10-20 cm soil layers. The results showed that N and Mn contents in undecomposed litter layer significantly increased by 15.0%-28.5% and 13.1%-22.2% respectively under nitrogen addition treatments; K content significantly increased by 19.3%-24.8% under middle and high nitrogen treatments; P content significantly decreased by 8.8% under high nitrogen treatment; Ca and S contents significantly decreased by 12.2%-13.1% and 9.9%-13.5% respectively under middle and high nitrogen treatments; C, Mg, Fe and Zn contents showed no significant change under nitrogen addition treatments. Compared with control, C and S contents in decomposed litter layer significantly decreased by 10.2%-20.9% and 19.5%-33.9% respectively under middle and high nitrogen treatments; Fe content significantly decreased by 6.5%-9.4% under low and middle nitrogen treatments; Mn content significantly increased by 10.7%-21.2% under nitrogen addition treatments; Zn content significantly increased by 9.3% under high nitrogen treatment; N, P, K, Ca and Mg contents showed no significant changes. Nitrogen addition accelerated the release rates of C, N, K and S from litter, suppressed the release rates of P, Ca and Zn, and did not affect that of Mg, Fe and Mn. Compared with control, Soil organic carbon (SOC) and N contents in 0-10 cm soil layer significantly increased by 40.1%-70.0% and 6.6%-18.8% respectively under nitrogen addition treatments, whereas P and Zn contents significantly decreased by 6.2%-25.0% and 15.1%-32.8%, respectively. Fe content significantly increased by 1.8%-3.9% under low and middle nitrogen treatments, while K content signifi-cantly decreased by 2.4%-3.4% under low and middle nitrogen treatments. Ca and S contents significantly decreased by 8.8% and 39.4%, respectively, under high nitrogen treatment. Mg and Mn contents showed no significant changes. Compared with control, N and S contents in 10-20 cm soil layer significantly increased by 4.3%-13.7% and 24.2%-69.3% respectively under nitrogen addition treatments, while SOC content significantly increased by 55.6%-72.7% under low and middle nitrogen treatments. P and Zn contents significantly decreased by 19.1%-24.2% and 17.8%-24.9% respectively under middle and high nitrogen treatments, whereas K content significantly decreased by 5.8% under low nitrogen treatment. Ca, Mg, Fe and Mn contents showed no significant changes. N and Ca contents in 0-10 cm soil layer were significantly positively correlated with those in undecomposed litter layer, while SOC, N, P, Ca, Mg and Zn contents in 0-10 cm soil layer were significantly positively correlated with their corresponding release rates in litter, respectively.

Key words: nitrogen deposition, litter, soil, Larix gmelinii secondary forest