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吉林省东部5种主要阔叶树种叶片热值及灰分含量月变化 被引量:2
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作者 陈连栋 张启昌 +2 位作者 陈建军 肖泽君 黄兵军 《北华大学学报(自然科学版)》 CAS 2020年第1期23-28,共6页
测定吉林省东部山区5种阔叶乔木树种叶的热值和灰分,探讨植物叶片热值和灰分月变化及二者的相关性.结果表明:5种主要阔叶乔木树种叶的干重热值在不同月份有较大差异,水曲柳、蒙古栎、黄檗叶干重热值最大值出现在5月,依次为(20.23±0... 测定吉林省东部山区5种阔叶乔木树种叶的热值和灰分,探讨植物叶片热值和灰分月变化及二者的相关性.结果表明:5种主要阔叶乔木树种叶的干重热值在不同月份有较大差异,水曲柳、蒙古栎、黄檗叶干重热值最大值出现在5月,依次为(20.23±0.06)、(20.09±0.06)和(20.86±0.07) kJ/g,紫椴叶干重热值最大值出现在6月,为(19.62±0.13) kJ/g,胡桃楸叶干重热值最大值出现在7月,为(20.56±0.11) kJ/g.从全年叶平均干重热值看,各树种干重热值顺序为胡桃楸(19.71±0.69) kJ/g>蒙古栎(19.38±0.48) kJ/g>紫椴(19.28±0.22) kJ/g>黄檗(19.25±1.05) kJ/g>水曲柳(18.76±0.94) kJ/g.灰分含量月变化趋势并不完全一致,进入衰老期,有不断升高的趋势.胡桃楸、水曲柳、黄檗的干重热值与灰分含量极显著线性负相关(P<0.01),蒙古栎的干重热值与灰分含量显著线性负相关(P<0.05),紫椴的干重热值与灰分含量显著线性正相关(P<0.05).去灰分热值与干重热值月变化趋势不同是由于灰分含量不同导致的. 展开更多
关键词 阔叶树种叶片 热值 灰分含量 月变化 吉林省东部
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Effect of water stress on N_2O emission rate of 5 tree species
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作者 王淼 李秋荣 +1 位作者 肖冬梅 王长科 《Journal of Forestry Research》 SCIE CAS CSCD 2004年第1期19-23,J001,共6页
The N2O emission rates, photosynthesis, respiration and stomatal conductance of the dominant tree species from broadleaf/Korean pine forest in Changbai Mountain were measured by simulated water stress with the closed ... The N2O emission rates, photosynthesis, respiration and stomatal conductance of the dominant tree species from broadleaf/Korean pine forest in Changbai Mountain were measured by simulated water stress with the closed bag-gas chromatography. A total of five species seedlings were involved in this study, i.e.,Pinus koraiensis Sieb. et Zucc,Fraxinus mandshurica Rupr,Juglans mandshurica Maxim,Tilia amurensis Rupr, andQuercus mongolica Fisch. ex Turcz.. The results showed that the stomatal conductance, net photosynthetic rate and N2O emission of leaves were significantly reduced under the water stress. The stoma in the leaves of trees is the main pathway of N2O emission. N2O emission in the trees mainly occurred during daytime. N2O emission rates were different in various tree specie seedlings at the same water status. In the same tree species, N2O emission rates decreased as the reduction of soil water contents. At different soil water contents (MW, LW) the N2O emission rates ofPinus koraiensis decreased by 34.43% and 100.6% of those in normal water condition, respectively. In broadleaf arbor decreased by 31.93% and 86.35%, respectively. Under different water stresses N2O emission rates in five tree species such asPinus koraiensis, Fraxinus mandshurica, Juglans mandshurica, Tilia amurensis, andQuercus mongolica were 38.22, 14.44, 33.02, 16.48 and 32.33 ngN2O·g?1DW·h?1, respectively. Keywords Trees - N2O emission rate - Soil water stress - broadleaf/Korean pine forest - Changbai Mountain CLC number S718.55 Document code A Foundation item: This project was supported by the National Natural Science Foundation of China (No. 30271068), the grant of the Knowledge Innovation Program of Chinese Academy of Sciences (KZ-CX-SW-01-01B-10), and the Special Funds for Major State Basic Research Program of China (No. G1999043407)Biography: Wang Miao (1964-), male, associate professor in Institute of Applied Ecology, Chinese Academy of Science, Shenyang 110016, P. R. China.Responsible editor: Song Funan 展开更多
关键词 Trees N2O emission rate Soil water stress broadleaf/Korean pine forest Changbai Mountain
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