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1.
廖莎 《湖南农业大学学报(自然科学版)》1996,23(6)
通过2榀预应力混凝土叠合框架1:3比例的模型试验,了解了叠合梁框架在竖向荷载作用下的受力性能。讨论了叠合梁截面应变分布特点,并分析了梁的配筋率这一主要参数对框架极限承载力和破坏形态的影响。 相似文献
2.
两种塑料暖棚猪舍的应用效果观测 总被引:1,自引:0,他引:1
在青海省乌兰县舍外温度-6.30℃条件下,选用40头荣昌猪分作2组,每组20头,在自行设计的半开放-封闭式多用塑料暖棚猪舍与常用简易塑料暖棚猪舍内开展对比试验。结果表明,前者可显著提高舍内温度,降低舍内湿度,且育猪增重效果明显。 相似文献
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For practical reasons, a large volume (i.e. 5 ml) of frozen boar semen per insemination dose is desirable, but successful freezing has not been achieved, since optimal cooling rates have not yet been established. Post-thaw motility and the acrosome intep'ty of semen from four boars frozen with a programmable freezin machine, in mini-(0.25 ml), maxi-(5 ml) plastic straws and in 10 × 5 cm PVC- or Teflon FEP-plastic bags (0.35 – 0.12 mm thick, 5 ml) was studied. The freezing of the semen was monitored using thermocouples placed in the straws and the bags. The freezing curve started from +5°C, at a rate of −3°C/min, to – 6°C, it was held for 1 min at −6°C, and was followed by further drop to −100°C at a rate of −20°C/min, with subsequent storage in LN2 . The bags had a much shorter freezing point plnteau, compared to the maxi-straws. Post-thaw sperm motility was significantly higher when semen was frozen in mini-straws or in bags than in maxi-straws. The freezing procedure did not cause major acrosomal damages, significantly more normal apical ridges being present in the bags and mini-straws than in the maxi-straws. This in vitro evaluation indicates that the freezing method employed is satisfactory for freezing large volumes of boar semen into plastic bags . 相似文献
4.
LLDPE/PS塑料合金及其与木纤维形成复合材料的研究 总被引:6,自引:0,他引:6
研究线性低密度聚乙烯(LLDPE)与聚苯乙烯(PS)共混制备的塑料合金的性能并用不同制备条件的塑料合金与木纤维复合形成塑料合金/木纤维复合材料,研究该种复合材料的外观质量及物理力学性能.结果表明:不同共混比例与共混温度对制备的塑料合金熔体流动性、力学强度有较显著影响.塑料合金/木纤维复合材料的性能与塑料合金共混比例及共混温度有较强的相关性.2种塑料在共混比为50/50,共混温度为200℃时,形成的塑料合金与木纤维具有相对最好的相容性和最好的材料外观质量与力学性能.DMA试验表明:塑料合金/木纤维复合材料的耐热性明显优于相应的塑料合金. 相似文献
5.
‘丰香’草莓叶片高效再生体系的建立 总被引:12,自引:0,他引:12
以草莓主栽品种丰香( Fragaria ×ananassa Duch ‘Toyonoka’) 叶片为外植体, 研究了影响组织培养的多个因素, 建立了高效再生体系。结果表明: MS + TDZ 1.5 mg·L - 1 + IBA 0.4 mg·L - 1培养基最适于不定芽分化。不同滤光膜(绿膜、红膜、蓝膜、黄膜) 对草莓不定芽的分化具显著效应, 绿膜和红膜对芽的分化有明显促进作用, 不定芽再生率达95%以上, 平均每个外植体再生芽数在25个以上; 而蓝膜和黄膜则不利于芽的分化。不同滤光膜光谱差异主要集中在300~700 nm, 红、绿膜在该波段光强较弱,而黄、蓝膜和荧光灯较强。暗处理4周比1、2、3周更有利于提高叶片的不定芽再生率, 此后转到光下培养, 获得的不定芽再生率可达100%。 相似文献
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Response of labile organic C and N pools to plastic film removal from semiarid farmland soil 下载免费PDF全文
S. S. Luo L. Zhu J. L. Liu L. D. Bu S. C. Yue Y. F. Shen S. Q. Li 《Soil Use and Management》2016,32(4):535-542
To examine the effects of plastic film removal on grain yield and soil organic matter (SOM), a spring maize (Zea may L.) field experiment was conducted for 5 yr at Changwu Agricultural and Ecological Experimental Station of Northwest China. Compared with traditional plastic film mulching during entire growing stages (FM), plastic film removal at the silking stage (RM) resulted in a 6.3% higher average maize yield. Under the RM treatment, soil organic carbon and total nitrogen significantly increased after the 5‐yr cultivation in the 0‐ to 20‐cm layer. Significant increases in extractable organic C (EOC), KMnO4‐oxidizable C (KMnO4‐C) and C management index (CMI) in the 0‐ to 20‐cm layer, and light fraction organic C and EOC in the 20‐ to 40‐cm layer were observed in response to plastic film removal after the 1‐yr treatment; the responses were more significant after 5 yr. Under the RM treatment, significant increases in microbial biomass C, light fraction organic N, extractable organic N, KMnO4‐C and CMI were also observed after five years in the 20‐ to 40‐cm layer. Moreover, KMnO4‐C and EOC were much more sensitive than other labile SOM fractions to the application of RM, even after only 1 yr of cultivation. Therefore, compared with mulching for the whole growing season, plastic film removal at the maize silking stage is an effective option for increasing yields and enhancing SOM concentration and soil sustainability in the regions with semiarid monsoon climates that have sufficient rainfall during maize reproductive stages. 相似文献
8.
新型漂浮塑料育苗池是一款在烟苗育苗建池环节中环保、高效的育苗器具,该文总结漂浮塑料育苗池的研发过程,并与常规木板育苗池进行生产效益对比分析. 相似文献
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