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南方地区茶园机械化现状与发展建议
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作者 翁晓星 王海燕 +5 位作者 王刚 李玉 陈长卿 罗广 张旭升 郑凌燕 《农业工程》 2024年第9期5-11,共7页
我国是茶叶大国,茶叶种植具有面积大、分布广、地形复杂等特点,茶叶产业发展必须通过茶园生产机械化来实现。茶叶生产主要包括耕作施肥、植保、灌溉、修剪和采摘等关键环节。其中耕作目前以人工浅耕除草为主,在规模较大的茶园有微耕机... 我国是茶叶大国,茶叶种植具有面积大、分布广、地形复杂等特点,茶叶产业发展必须通过茶园生产机械化来实现。茶叶生产主要包括耕作施肥、植保、灌溉、修剪和采摘等关键环节。其中耕作目前以人工浅耕除草为主,在规模较大的茶园有微耕机的应用;植保则以手动喷雾器喷洒农药为主,同时引入物理防治手段加以辅助;大众茶采摘以手工或手持机具为主,在宜机化茶园有乘坐式采茶机等大型设备的应用,而对于名优茶采摘仍依赖手工。通过对南方地区茶园耕作、植保和茶叶采摘等关键环节机械化现状的研究,分析了目前南方地区茶园种植机械化在茶园基础建设、作业机械、农机农艺融合等方面存在的问题,并针对这些问题提出加快茶园种植机械化进程的思路,旨在为南方地区茶园种植机械化的发展提供参考。 展开更多
关键词 茶园机械 南方地区茶园 耕作 茶叶采摘 茶叶 全程机械化
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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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