期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
砂梨新品种金花早的选育
1
作者 王文明 贾兵 +5 位作者 朱立武 刘文琴 张均明 童秋云 吴宗政 鲍利平 《果树学报》 CAS CSCD 北大核心 2024年第3期547-551,共5页
金花早属砂梨(Pyrus pyrifolia)品种,为安徽歙县上丰乡徽州雪梨地方梨优良品系。果实呈扁圆形,硬度中等,果肩部有褐色锈斑,果肉乳白色,果心中等大,为5心室,肉质紧密;果皮绿色,平均单果质量350.6 g,可溶性固形物含量(w,后同)为10.8%,有... 金花早属砂梨(Pyrus pyrifolia)品种,为安徽歙县上丰乡徽州雪梨地方梨优良品系。果实呈扁圆形,硬度中等,果肩部有褐色锈斑,果肉乳白色,果心中等大,为5心室,肉质紧密;果皮绿色,平均单果质量350.6 g,可溶性固形物含量(w,后同)为10.8%,有机酸含量为0.05%。与主栽梨品种秋黄、丰水相比,其果实贮藏性良好,常温下贮藏30 d左右,适应性强,抗早期落叶病。在歙县地区3月10日萌芽,3月20日初花,3月24日盛花,3月30日末花,落叶期为11月2日,成熟期为8月下旬。嫁接苗第5年平均每株产量可达25.3 kg,每666.7 m2产量高达2125.2 kg,产量高而稳定。鲜食与加工兼用。适合长江流域和皖南山区栽培。 展开更多
关键词 新品种 金花早
下载PDF
Petrogenetic contrastive studies on the Mesozoic early stage ore-bearing and late stage ore-barren granites from the southern Anhui Province 被引量:11
2
作者 YAN Jun HOU TianJie +6 位作者 WANG AiGuo WANG DeEn ZHANG DingYuan WENG WangFei LIU JianMin LIU XiaoQiang LI QuanZhong 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第11期1920-1941,共22页
Yanshanian magmatisms are intensive in the southern Anhui Province and can be divided into early (152-137 Ma) and late (136-122 Ma) stages. A Yanshanian granitic zone was found to crop out along Qingshan to Changg... Yanshanian magmatisms are intensive in the southern Anhui Province and can be divided into early (152-137 Ma) and late (136-122 Ma) stages. A Yanshanian granitic zone was found to crop out along Qingshan to Changgai areas in the Ttmxi district in Field investigation which has a genetic link with molybdenum multiple metal mineralization. To be a representative syenitic granite in the southern Anhui Province, the Huangshan pluton has not been found so far to have any genetic link with mineralization. Zircon LA-ICP-MS dating indicate that the four granitic bodies from the Qingshan-Changgai zone have concurrent formed ages from 140~:4 to 141~2 Ma, belonging to the Yanshanian early stage magmatism. However, the Huangshan granite is dated to be 12912 Ma, belonging to the Yanshanian late stage magmatism. The Qingshan-Changgai granites show high SiO2 and K20 contents, low P205 contents and middle A12O3 contents and are high-K calc-alkaline series metaluminum I-type granite. These rocks are characterized by enrichments in the large ion lithophile elements and light rare earth elements (REE), depletions in the high field-strength elements, and middle degree negative anomalies of Eu, geochemical features of arc or continent crustal derived magma affinities. These rocks have 87Sr/StSr(t) ratios from 0.7120 to 0.7125,εNd(t) values from -7.24 to -4.38 and zircon εHf(t) values of -4.4 to 6.7, similar to that of the coeval ore-bearing granodiorites in the southern Anhui Province. Integrated geochemical studies indicate that the Yanshanian ore-bearing granodiorites were formed by partial melting of the Meso-Neoproterozoic accreted thickened low crust. Meanwhile, the Qingshan-Changgai granites were formed through a AFC process of plagioclase+amphibole+Shangxi Group of magmas that formed the ore-bearing granodiorites. The Huangshan granites are characterized by high SiOz and K2O contents, moderate Al2O3 contents, seagull shape REE distributed pattern and distinct Eu negative abnormities. Comparing with the Qingshan-Changgai granites, the Huangshan granites show more Ba, Sr, P, and Ti negative abnormities with no Nb and Ta depletions and are high-K calc-alkaline series metaluminum A-type granite, εHr(t) values of the Huangshan granites are from -6.6 to -1.2, similar to that of the early stage ore-bearing granodiorites, indicating that they were also formed by anatexis of the Meso-Neoproterozoic accreted crust, but their magma sources might be residual granulitic crust which ever underwent Yanshanian early stage I-type intermediate-acid magma extraction. Comparing studies on the two stages granites indicate that the early stage granites derived from a relative thickened low crust under a lower temperature condition. Their magma sources were Meso-Neoproterozoic accreted crust which enriched in ore-forming materials and further became more enriched through processes of magma AFC evolution. However, the late stage A-type granites originated from relative shallow crust under a higher temperature condition. Their magma source was depleted in ore-forming materials due to the early stage magma extraction and thus had weak ore-forming capacity. From early to late stage, the magmatisms tectonic setting translated from post-orogenic to anorogenic and the later corresponded to a back-arc extensional setting as increase of the slab subducted angle of the Paleo-Pacific plate. 展开更多
关键词 YANSHANIAN Granite Low crust Ore-bearing magmatic rock The south Anhui Province Jiangnan orogenic belt
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部