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亚华棉7号是由湖南隆平高科亚华棉油种业有限公司选育而成的具有高产、优质、抗病、铃大等特点的杂交棉新品种。于2006年参加湖南省棉花区域试验(预试A组),皮棉单产2085kgihm^2,居参试品种的第1位,比对照湘杂棉8号增产10.97%,增产极显著。2008年通过湖南省棉花品种审定委员会审定,编号为:湘审棉2008012。2007年开始在南襄盆地示范种植,2007年在河南南阳种植获得子棉产量6750kg/hm^2,2008年在湖北襄樊种植获得子棉产量6375kg/hm^2,均表现良好,能适应在南襄盆地种植。为进一步发挥该品种的增产潜力,并结合南襄盆地的生态和生产条件,特将研究和总结出的亚华棉7号在南襄盆地高产栽培技术叙述如下,以便能发挥更大的生产效应。 相似文献
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富杂棉3号是安徽省创富种业有限公司独家选育的转抗虫基因棉花杂交种,2013年通过安徽省农作物品种审定委员会审定(审定编号:皖棉2013018),2012年获得在长江流域棉区生产应用的农业转基因生物安全证书[农基安证字(2012)第031号]。 相似文献
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关于大豆优质高产问题的研讨 总被引:10,自引:3,他引:10
本文根据世界大豆市场情况,指出我国大豆生产应加强科学研究,尽快推出一批优质高产大豆品种,才能使我国大豆在国际国内市场具有竞争力,同时提出一些具体技术途径。 相似文献
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大豆高油高产高效栽培试验研究初报 总被引:3,自引:2,他引:3
通过栽培试验,研究不同气候条件、播期和施肥技术对高油大豆品种脂肪含量及产量的影响,获得适宜黑龙江垦区西部大豆保油、高产、高效栽培技术措施。 相似文献
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An initial population of PHU-STN hybrid diploid potatoes was screened in 1978 at the Mountain Horticultural Crops Research Station, Fletcher, N.C. for high specific gravity and tuber production. Sixty clones were selected for testing under high temperatures at two North Carolina coastal locations. Twenty-seven clones maintained a relatively high specific gravity and acceptable tuber production under these high temperatures. The other 33 either were low in specific gravity or produced few, if any, tubers. Specific gravity was lower at the two coastal locations than at the Mountain Horticultural Crops Research Station. The 27 relatively stable, high specific gravity clones were retested in 1980 along with seven additional clones included for the first time. Severe high temperatures resulted in low survival rates and low specific gravity. However, eight clones maintained a relatively high specific gravity in relation to the rest of the population. 相似文献
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针对勃利县大豆生产情况和对高蛋白大豆的需求,提出采用连片种植、选择种植高蛋白大豆新品种、深松秋整地、种子处理、测土配方施肥、加强田间管理和大豆标准化"垄三"栽培技术等措施。 相似文献
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High performance fibers have distinguished properties such as high tensile strength, good thermal and chemical resistance, dimensional stability, lightweight, and high electrical conductivity. Due to these superior properties, high performance fibers made it to the scene of broad range of applications such as aerospace, automotive, windmill, fiber reinforced composites, high strength tethers, tendons for scientific balloon, tension structures, protective clothing, and marine. Examples of such fibers are Zylon®, Kevlar®, and Vectran®. However, the fibers lose their strength significantly upon exposure to Ultraviolet (UV) and visible light. In this research, UV protective films from extruded low density polyethylene (LDPE) loaded with different content of UV stabilizers (TiO2 nanoparticles and White PE CC®) were investigated. To assess the degree of UV blockage of each extruded protective film, their transmittance to UV and visible (UV-VIS) light was measured. Additionally, Zylon® braids were sheathed with the protective films and the strength of the braids and yarns raveled from braids was measured before and after UV exposure for different number of days. LDPE loaded with White PE CC® and 10 % TiO2 showed the least transmittance to UV-VIS and their yarns and braids exhibited highest strength retention after exposure to artificial UV. Strength retention of braids was higher than that of individual yarns due to weak link effect and braid structure assistant. 相似文献