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直生式省能型渗碳炉及催化剂的研究
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作者 黄吉荣 《金属热处理》 CAS CSCD 北大核心 1999年第7期37-39,共3页
渗碳用气氛的制备多为吸热式方法,即将碳氢化合物(丙烷、丁烷、天然气等)与空气按一定比例配合,进入温度为1000~1100℃装有镍催化剂的反应器中进行反应,得到组成为:<1%CH4、<01%CO2、20%~24%CO... 渗碳用气氛的制备多为吸热式方法,即将碳氢化合物(丙烷、丁烷、天然气等)与空气按一定比例配合,进入温度为1000~1100℃装有镍催化剂的反应器中进行反应,得到组成为:<1%CH4、<01%CO2、20%~24%CO、露点-15~15℃、余量气体N2... 展开更多
关键词 渗碳炉 催化剂 直生式 省能型 研究
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浅论涂料,涂装技术的发展方向
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作者 方震 《陕西建材》 2000年第2期26-27,共2页
关键词 涂料 绿色涂料 省能型涂料 涂装技术
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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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