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落叶松木素的特性
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作者 张应生 蒋其昌 《大连轻工业学院学报》 1990年第1期1-11,共11页
用红外、紫外光谱仪,元素分析仪、1H—NMR、13C—NMR 和化学分析方法对落叶松心材木素特性进行了研究与边材和云杉相比,心材 MWL 含有更多的酚羟基、醌、共轭羰基和缩分芳环结构,它们与苯环形成了复杂的共轭发色体系。心材木素中含有不... 用红外、紫外光谱仪,元素分析仪、1H—NMR、13C—NMR 和化学分析方法对落叶松心材木素特性进行了研究与边材和云杉相比,心材 MWL 含有更多的酚羟基、醌、共轭羰基和缩分芳环结构,它们与苯环形成了复杂的共轭发色体系。心材木素中含有不可抽提的双氢黄酮类多酚物质。SEM—EDXA 分析表明,落叶松中性亚硫酸盐 SCMP 浆纤维次生壁磺化度远较胞间层为高,这说明次生壁和胞间层木素结构和反应性能上有差异。同时,对落叶松 SCMP 浆漂白前后的二氧六环木素特性用 IR 进行了研究。落叶松 SCMP 浆漂剂消耗大的主要原因是心材木素中含有更多的醌、共轭羰基和酚羟基。 展开更多
关键词 中国落叶松 心材木素 落叶松
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Carbon Storage Capacity of Different Plantation Types Under Sandstorm Source Control Program in Hebei Province, China 被引量:3
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作者 SHEN Huitao ZHANG Wanjun +6 位作者 YANG Xue LIU Xiuping CAO Jiansheng ZENG Xinhua ZHAO Xin CHEN Xuexun ZHANG Wenxi 《Chinese Geographical Science》 SCIE CSCD 2014年第4期454-460,共7页
Afforestation and reforestation are effective and ecological ways of mitigating elevated atmospheric carbon dioxide(CO2) concentration and increasing carbon(C) storage in terrestrial ecosystems. In this study, we meas... Afforestation and reforestation are effective and ecological ways of mitigating elevated atmospheric carbon dioxide(CO2) concentration and increasing carbon(C) storage in terrestrial ecosystems. In this study, we measured the above-ground(tree, herbaceous plants and litter) and below-ground(root and soil) C storage in an aspen plantation(Populus davidiana) monoculture(PD), a larch plantation(Larix pincipis-rupprechtii) monoculture(LP), a pine plantation(Pinus tabulaeformis) monoculture(PT), a larch and birch mixed plantation(L. pincipis-rupprechtii and Betula platyphlla mixed)(MLB), and an apricot plantation(Armeniaca sibirica) monoculture(AS) under the Desertification Combating Program in Hebei Province, the northern China. The objective was to assess the effect of afforestation species on ecosystem C pools of different plantation types. Results showed that C storage of LP stand(258.0 Mg/ha) and MLB(163.4 Mg/ha) were significantly higher than the C storage in PD(45.5 Mg/ha), PT(58.9 Mg/ha) and AS(49.4 Mg/ha), respectively. Soil C was the main carbon pool of the ecosystem C storage in the five plantation stands, ranging from 31.4 Mg/ha to 232.5 Mg/ha, which accounted for 69.0%–90.1% of the total ecosystem C storage. The C storage in tree layer was about 5.2%–23.2% of ecosystem C storage. The herbaceous plants and litter layers contained 1.0%–6.0% and 1.5%–3.3% of ecosystem C storage, respectively. Our results suggest that tree species should be incorporated to accurately develop regional C budget of afforestation program, and also imply that substantial differences in ecosystem C stocks among plantation types can facilitate decision making on C management. 展开更多
关键词 carbon content carbon storage forestry program tree species
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