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亚热带天然阔叶林转换为杉木人工林对土壤呼吸的影响

张睿1,2,白杨1,2,刘娟1,2**,姜培坤1,2,周国模1,2,吴家森1,2,童志鹏3,李永夫1,2   

  1. (1浙江农林大学浙江省森林生态系统碳循环与固碳减排重点实验室, 浙江临安 311300; 2浙江农林大学亚热带森林培育国家重点实验室培育基地, 浙江临安 311300; 3临安市林业局, 浙江临安 311300)
  • 出版日期:2015-10-18 发布日期:2015-10-18

Effects of conversion of natural broad-leaved forest to Chinese fir plantation on soil respiration in subtropical China.

ZHANG Rui1,2, BAI Yang1,2, LIU Juan1,2, JIANG Pei-kun1,2, ZHOU Guo-mo1,2, WU Jia-sen1,2, TONG Zhi-peng3, LI Yong-fu1,2   

  1. (1Zhejiang Province Key Laboratory of Carbon Cycling in Forest Ecosystems and Carbon Sequestration, Zhejiang A&F University, Lin’an 311300, Zhejiang, China; 2Nurturing Station for the State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Lin’an 311300, Zhejiang, China; 3Lin’an City Forestry Bureau, Lin’an 311300, Zhejiang, China)
  • Online:2015-10-18 Published:2015-10-18

摘要:

采用静态箱-气相色谱法对浙江省临安市玲珑山风景区天然阔叶林和由天然阔叶林改造的杉木人工林的土壤呼吸进行1年的定位监测.结果表明:天然阔叶林和杉木人工林土壤CO2排放速率均呈现一致的季节性变化规律即夏秋季高、冬春季低;天然阔叶林和杉木人工林土壤CO2排放速率分别为20.0~111.3和4.1~118.6 mg C·m-2·h-1;天然阔叶林土壤CO2年累积排放通量(16.46 t CO2·hm-2·a-1)显著高于杉木人工林(11.99 t CO2·hm-2·a-1).天然阔叶林和杉木人工林土壤CO2排放速率与土壤含水量均没有显著相关性,而与5 cm处土壤温度呈显著指数相关,Q10值分别为1.44和2.97;天然阔叶林土壤CO2排放速率与土壤水溶性碳(WSOC)含量无显著相关性,杉木人工林土壤CO2排放速率与WSOC含量呈显著相关.天然阔叶林转换为杉木人工林显著降低了土壤CO2排放,提高了土壤呼吸对环境因子的敏感性.

 

Abstract: Soil CO2 effluxes in natural broad-leaved forest and the conversed Chinese fir plantation in Linglong Mountains Scenic of Zhejiang Province were evaluated by using static closed chamber and gas chromatography method. The results showed that soil CO2 efflux showed consistent seasonal dynamics in natural broad-leaved forest and Chinese fir plantation, with the maximums observed in summer and autumn, the minimums in winter and spring. Soil CO2 effluxes were 20.0-111.3 and 4.1-118.6 mg C·m-2·h-1 in natural broadleaved forest and Chinese fir plantation, respectively. The cumulative soil CO2 emission of natural broadleaved forest (16.46 t CO2·hm-2·a-1) was significantly higher than that of Chinese fir plantation (11.99 t CO2·hm-2·a-1). Soil moisture did not affect soil CO2 efflux. There was a significant relationship between soil CO2 efflux and soil temperature at 5 cm depth. There was no significant relationship between soil CO2 efflux of natural broadleaved forest and water soluble organic carbon content, while water soluble organic carbon content affected significantly soil CO2 efflux in Chinese fir plantation. Converting the natural broadleaved forest to Chinese fir plantation reduced soil CO2 efflux significantly but improved the sensitivity of soil respiration to environmental factors.