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长期施氮和降水减少对长白山阔叶红松林凋落物量的影响 被引量:7
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作者 谷越 王芳 +5 位作者 陈鹏狮 张军辉 韩士杰 张雪 陈志杰 岳琳艳 《北京林业大学学报》 CAS CSCD 北大核心 2017年第4期29-37,共9页
为了解持续氮沉降和降水减少条件下森林群落凋落物的量变化及其时间动态,以长白山阔叶红松林为研究对象,利用收集器法于2015年生长季(6—10月)对长期氮添加和降水控制实验平台3种不同处理样地(对照、施氮和减水施氮)内的凋落物进行了研... 为了解持续氮沉降和降水减少条件下森林群落凋落物的量变化及其时间动态,以长白山阔叶红松林为研究对象,利用收集器法于2015年生长季(6—10月)对长期氮添加和降水控制实验平台3种不同处理样地(对照、施氮和减水施氮)内的凋落物进行了研究。主要分为红松叶、蒙古栎叶、其他树种叶、花果皮屑、枝5部分。本研究将凋落系数作为衡量林分生产凋落物能力的大小,比较各处理间凋落物的"净"差异。结果显示:各处理样地生长季内叶凋落量所占比重较大,可达到79%~81%,而枝和花果皮屑所占比重为19%~21%;凋落节律呈单峰型,凋落量峰值主要集中在9—10月份,降水减少会使其他树种凋落物的凋落期提前;不同组分凋落物对氮水控制响应不同,氮添加显著降低红松叶凋落物产量,降雨减少显著提高了总叶凋落物产量,减水施氮显著提高了其他树种叶凋落产量,而氮水控制对蒙古栎、枝和花果皮凋落物产量影响不显著;氮添加会抑制针叶树种的凋落物量,促进阔叶树种的凋落量,降水减少会促进各组分凋落物量。 展开更多
关键词 凋落 施氮 降水减少 胸高断面积 凋落系数
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Correction of leaf nutrient resorption efficiency on the mass basis 被引量:1
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作者 Meixia Zhang Yan Luo +1 位作者 Qingquan Meng Wenxuan Han 《Journal of Plant Ecology》 SCIE CSCD 2022年第6期1125-1132,共8页
Nutrient resorption is a crucial mechanism for plant nutrient conservation,but most previous studies did not consider the leaf-mass loss during senescence due to lack of measured data.This would lead to an underestima... Nutrient resorption is a crucial mechanism for plant nutrient conservation,but most previous studies did not consider the leaf-mass loss during senescence due to lack of measured data.This would lead to an underestimation of nutrient resorption efficiency(NuRE),or calculating NuRE of various species based on the average mass loss at plant-functional-group level in the literature,thus affecting its accuracy.Here we measured the leaf-mass loss to correct NuRE with the species-specific mass loss correction factor(MLCF),so as to foster a more accurate calculation of the nutrient fluxes within and between plants and the soil.Green leaves and senesced leaves were collected from 35 dominant woody plants in northern China.Mass of green and senesced leaves were measured to calculate the MLCF at species level.The MLCF was reported for each of the 35 dominant woody plants in northern China.These species averagely lost 17%of the green-leaf mass during leaf senescence,but varied greatly from 1.3%to 36.8%mass loss across the 35 species,or 11.7%to 19.6%loss across the functional types.Accordingly,the MLCF varied from 0.632 to 0.987 across the 35 species with an average value 0.832.The NuRE corrected with MLCF was remarkably increased on the whole(e.g.both the average nitrogen and phosphorus NuRE became about 9%higher,or more accurate),compared with the uncorrected ones,especially in the case of low resorption efficiencies.Our field data provide reliable references for the MLCF of plants in related regions at both species and functional-type levels,and are expected to promote more accurate calculations of NuRE. 展开更多
关键词 green leaf leaf litter mass loss correction factor nutrient resorption senesced leaf woody plants
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