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草牧业提质增效转型发展的驱动要素分析 被引量:12
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作者 侯向阳 张玉娟 《科学通报》 EI CAS CSCD 北大核心 2018年第17期1632-1641,共10页
面对不断增长的社会对食物结构的需求以及对生态文明的渴求,如何从根本上解决"三农"和"三牧"问题,传统耕地农业已无以为继,草牧业必将逐渐成为中国农业发展的主流,引领我国农业走出困境.近年来,虽然我国草牧业呈现... 面对不断增长的社会对食物结构的需求以及对生态文明的渴求,如何从根本上解决"三农"和"三牧"问题,传统耕地农业已无以为继,草牧业必将逐渐成为中国农业发展的主流,引领我国农业走出困境.近年来,虽然我国草牧业呈现生机勃勃的发展势头,并取得了一些成绩,但从产业生命周期来看,我国草牧业总体上处于产业形成期,面临着巨大的挑战.依托科技创新驱动、人才建设及社会需求和国家政策的支持,草牧业发展将迎来前所未有的机遇并将快速转型发展.未来,我国草牧业产业发展应重点加快优质饲草生产体系建设、良种繁育推广、天然草原生态保护、不同区域发展模式探索及优化产业发展环境,实现产业提质增效,有效提升产业效益和产业化水平,探索一条产出高效、产品安全、资源节约、环境友好的产业发展道路. 展开更多
关键词 草牧业 产业发展 创新驱动 提质增效 转型升级
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Study on Soil Respiration Characteristics and Carbon Balance of <i>Kobresia pygmaea</i>Meadow in Qinghai-Tibet Plateau, China 被引量:1
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作者 Yuejun Fan Xiyun Chang +2 位作者 Deping Zhao xiangyang hou Xin Li 《Journal of Environmental Protection》 2020年第8期636-647,共12页
Although soil respiration is the largest contributor to C flux from terrestrial ecosystems to the atmosphere, our understanding of its characteristics and carbon budget in alpine meadow is rather limited because of ex... Although soil respiration is the largest contributor to C flux from terrestrial ecosystems to the atmosphere, our understanding of its characteristics and carbon budget in alpine meadow is rather limited because of extremely geographic situation. This study was designed to examine soil CO<sub>2</sub> efflux characteristics of diurnal and seasonal variation, thus obtaining estimates of carbon balance of <em>Kobresia pygmaea</em> meadow in Qinghai-Tibet plateau. The results showed that the soil respiration of diurnal and seasonal rate changed little in growing season and was mainly affected by temperature, and single peak curve that showed afternoon appeared. Composite model which was set by soil respiration rate, soil moisture content and temperature (atmospheric temperature and soil temperature) could explain better the variations of soil respiration rate. The variation range of <em>Q</em><sub>10</sub> ranged from 1.28 to 2.34, which was sensitive to temperature in green-up period and late growth stage, and decreased in growth peak period. Meanwhile, during the growing seasons the observed amount of annual carbon fixation via primary production for <em>Kobresia pygmaea</em> meadow ecosystem was about 120.21 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. The carbon dioxide output via soil heterotrophic respiration was about 37.54 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. So carbon budget had more input than output. The <em>Kobresia pygmaea</em> meadow ecosystem has stronger potential to absorb carbon dioxide, it was a sink of atmospheric CO<sub>2</sub>, and the plant community had a net carbon gain of 82.67 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. 展开更多
关键词 Soil Respiration Kobresia pygmaea Meadow Carbon Balance/Budget Qinghai-Tibet Plateau
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