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基于低空遥感监测的无人机变量植保策略与技术应用分析
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作者 郭朝贺 陈枫 李海东 《江苏农机化》 2023年第5期7-12,共6页
随着定位、传感器、自动化控制等技术的发展,以科学用药、精准投入、节本增效为特点的变量植保技术成为发展绿色植保体系的热门技术。文章针对精准变量施药技术的研究与应用,提出低空遥感监测技术在农作物病虫草害变量防治方面的应用策... 随着定位、传感器、自动化控制等技术的发展,以科学用药、精准投入、节本增效为特点的变量植保技术成为发展绿色植保体系的热门技术。文章针对精准变量施药技术的研究与应用,提出低空遥感监测技术在农作物病虫草害变量防治方面的应用策略与技术路线,从杂草精准识别、病虫害胁迫风险评估、变量施药执行、药效验证等方面阐述以施药处方图为核心的变量植保方案,并结合2020年水稻病虫草害变量防治试验,分析变量施药技术的可行性及应用效果,以期为相关技术研究与推广应用提供参考。 展开更多
关键词 变量植保 低空遥感 精准识别 处方图 无人机
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Temporal Evolution of Carbon Storage in Chinese Tea Plantations from 1950 to 2010 被引量:7
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作者 ZHANG Min CHEN Yonggen +4 位作者 FAN Dongmei ZHU Qing PAN Zhiqiang FAN Kai WANG Xiaochang 《Pedosphere》 SCIE CAS CSCD 2017年第1期121-128,共8页
Tea (Camellia sinensis), an economically important crop grown in mountain regions, has been planted for thousands of years in South China. Tea plantations can potentially act as carbon (C) sink in local agrosystem... Tea (Camellia sinensis), an economically important crop grown in mountain regions, has been planted for thousands of years in South China. Tea plantations can potentially act as carbon (C) sink in local agrosystems due to their high plant biomass and provide soil conservation service. To assess the contribution of tea plantations to C sequestration, the chronosequence variations of C storage were assessed in the plants and soils (0-20 cm) of tea plantations in China from 1950 to 2010, and then the inter-annual and decadal variabilities of total C storage were estimated. TotM C stocks in tea plants and soils in 2010 were 34.4 and 93.45 Tg, respectively. Carbon sequestration from 1950 to 2010 was 30.6 and 39.0 Tg in the plants and soils, respectively. The highest C sequestration happened during the 1980s and the lowest during the 1950s. The decadal average C sequestration rate ranged from 20.4 to 113.9 g m2 year-1 in the standing tea plants, and from 54.6 to 98.8 g m-2 year-1 in soils during the period of 1950 to 2010. The average ratio of C storage in soils to that in plants was 3.00 ± 0.35 before 1970 and 2.44 ±0.18 after 1970. The results suggested that tea plantation ecosystems made an important contribution to the C sinks in Chinese tea-producing regions. 展开更多
关键词 Camellia sinensis carbon sequestration carbon stock economic crop plantation age plant biomass
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