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81.
尚哲峰 《北京农业》2011,(12):217-218
在现代新的形势下,粮食仓储的管理工作显然是非常重要的,对于保障粮食安全是非常重要的,因为不管是从哪方面考虑,它都占据着一个至关重要的位置。所以,做好粮食工作的关键之一就是要加强对粮食仓储的管理。  相似文献   
82.
收益共享契约是实现供应链系统绩效改善或完美协调的一种机制.考虑了零售商与供应商分别具有风险厌恶决策偏好情况下,在随机市场需求下建立了由单供应商和单零售商组成的二级供应链的收益共享契约模型,并对模型进行了分析,揭示了供应商和零售商的风险厌恶决策偏好对收益共享契约参数的影响.研究结果表明:当销售商(供应商)的风险厌恶控制在一定程度内时,通过调整收益共享契约参数,可以保证供应链的协调.  相似文献   
83.
The hilly area of Southwest China is a typical rice production area which is limited by seasonal droughts and low temperature in the early rice growth period. A field experiment was conducted on three typical paddy fields (low-lying paddy field, medium-elevation paddy field, and upland paddy field) in this region. Nitrogen (N) treatment (180 kg N ha-1 year-1) was compared to a control treatment (0 kg N ha-1 year-1) to evaluate the effects of integrated rice management (IRM) on rice growth, grain yield, and N utilization. Integrated rice management integrated raised beds containing plastic mulch, furrow irrigation, and triangular transplanting. In comparison to traditional rice management (TRM), IRM promoted rice tiller development, with 7-13 more tillers per cluster at the maximum tillering stage and 1-6 more tillers per cluster at the end of tillering stage. Integrated rice management significantly increased the rice aboveground biomass by 34.4%-109.0% in different growth periods and the aboveground N uptake by 25.3%-159.0%. Number of productive tillers significantly increased by 33.0%, resulting in a 33.0% increase in grain yield and 8.0% improvement of N use efficiency (NUE). Grain yields were significantly increased in all three paddy fields assessed, with IRM being the most important factor for grain yield and productive tiller development. Effects of paddy field type and N level on N uptake by aboveground plants were reflected in the rice reproductive growth period, with the effects of IRM more striking due to the dry climate conditions. In conclusion, IRM simultaneously improved rice yield and NUE, presenting a valuable rice management technique in the paddy fields assessed.  相似文献   
84.
冲击式速冻设备上下送风速度对虾仁冻结过程的影响   总被引:1,自引:1,他引:0  
随着人们对速冻食品品质的要求不断提高,商家对食品速冻技术的要求也在不断提高,冲击式速冻技术作为目前先进的速冻技术之一成为研究热点。但由于其高速射流冲击导致的内部换热区流场的不均匀会造成设备换热效率差,能效比低等问题。为找到使得设备换热区流场最优的送风速度,该文以明虾虾仁为研究对象,利用数值模拟结合试验验证的方法研究了冲击式速冻设备中上下送风速度对虾仁冻结过程的影响,分为上下两侧风速保持一致且同时改变;上侧送风速度为15 m/s、下侧为0~15 m/s;以及下侧送风速度为15 m/s、上侧为0~15 m/s 3个试验组进行研究。研究结果为:当冲击式速冻设备两侧送风速度保持一致时,随着风速的增大,虾仁冻结时长缩短但减小幅度也会不断减小;当上下两侧送风速度大小相差悬殊时,两股冲击射流相对冲击会在低速侧形成促进虾仁表面流场流动的涡流,提高换热效率,减小虾仁冻结时长;当上下两侧送风速度大小相差不大时,两股冲击射流相对冲击会在虾仁表面形成流速较低的射流"真空区",降低虾仁换热效率,增大虾仁冻结时长;在试验的两侧送风速度范围内,当上侧送风速度为15 m/s,下侧送风速度为2 m/s时,虾仁对流换热强度最大,冻结时长最短。  相似文献   
85.
白酒糟与菊芋渣混合青贮发酵品质及微生物菌群多样性   总被引:2,自引:2,他引:0  
利用青贮原理将白酒糟和菊芋渣混合进行固态发酵,二者按照不同鲜质量比发酵10、30、60 d时,分别考察营养成分、木质纤维含量和发酵特性的动态变化,并通过高通量测序技术解析发酵微生物菌群多样性。结果表明,当白酒糟和菊芋渣以1.2:1和1:1.5比例发酵时,可溶性碳水化合物含量显著高于其他处理组(P0.05),中性洗涤纤维、酸性洗涤纤维和木质素含量均显著低于其他处理组(P0.05),相对饲用价值和生物降解潜力较高。发酵过程中pH值、乳酸和氨氮含量等特性参数均处于优良青贮品质范围,V-score评分均为优等。白酒糟或菊芋渣单独发酵期间主要以变形菌和厚壁菌门细菌为主,混合发酵时则演变为以厚壁菌门、乳杆菌属细菌为主。总之,白酒糟与菊芋渣能通过生化互补特性发挥协同效应实现优质青贮,综合考虑糟渣生物质资源的利用价值和处理效率等因素,实际生产中建议以1.2:1比例混合青贮发酵30 d为宜,可获得良好发酵品质。  相似文献   
86.
为探究高产稻田中防止倒伏发生的早期诊断技术,2015-2016年,以大面积推广的杂交中稻高产新品种蓉18优1015为试验材料,设计3因素完全因子试验,研究不同密肥群体下喷施多效唑对稻谷产量和抗倒伏性的影响。结果表明,随着施氮量和移栽密度的增加,稻谷产量提高,植株抗倒力下降,以施氮量150 kg·hm-2和移栽密度18.75 万穴·hm-2的产量较高。不同密肥群体下施用多效唑对产量和植株抗倒伏性有显著影响,施用多效唑后植株抗倒力增强,但产量因穗粒数下降而减少。不同密肥处理下施用多效唑对产量影响各异。于水稻最高苗期施用多效唑使植株重心高度、弯曲力矩、倒伏指数显著降低,折断弯矩则明显提高,穗粒数平均减少5.24~7.87粒。多效唑对产量的影响表现为低施氮量下因穗粒数减少而减产;中施氮量下产量差异不显著;高施氮量下植株未倒伏、籽粒灌浆结实正常,因结实率和千粒重高而增产。综上所述,肥力水平和施氮量高的稻田于最高苗期施用多效唑有利于水稻产量提高和控制后期倒伏。本研究为指导大面积水稻高产稳产提供了科学依据。  相似文献   
87.
为解决番茄酱产季原料供应不均衡问题,在构建番茄种植规划的数学模型基础上,提出采用生物地理学算法对番茄种植规划模型的求解。利用余弦迁移模型、干扰迁移算子和基于高斯分布的变异算子对BBO算法进行适当改进,并与差分进化算法的变异算子结合,以增强生物地理学算法的全局搜索性能。以新疆某番茄酱厂为例对番茄种植规划问题进行计算,结果表明:采用该算法获得的种植方案能实现番茄原料产量与番茄酱厂生产能力之间的平衡。仿真结果验证了番茄种植规划数学模型的合理性。在求解番茄种植规划问题上,与其他智能优化算法相比,该算法具有较好的收敛性。  相似文献   
88.
因市场失灵与政府失灵而引发的农村体育公共产品供给不足,不仅契合了宏观调控法产生的社会根源,而且还符合宏观调控法的价值取向和实施机制。为缩小城乡体育公共产品供给上的差距以及克服农村体育公共产品供给上的区域性失衡与结构不合理等困境,实现体育领域中社会分配正义的价值诉求以及保障国民的体育基本权,应当通过健全完善发展规划法、财政法、税法及金融法等宏观调控法加以克服。  相似文献   
89.
New Rice for Africa (NERICA) is a general name for interspecific rice varieties derived from a cross between the high‐yielding Asian rice (Oryza sativa L.) between locally adapted African rice (Oryza glaberrima Steud.). Eight NERICAs were evaluated for cold tolerance (CT) at the reproductive stage and compared with their O. sativa parents and three Japanese standard rice varieties over 3 years. Cold tolerance was evaluated based on the filled grain ratio (FGR) after cold water irrigation. The FGR was greatly reduced by cold water irrigation. NERICA 1, 2 and 7 had higher FGR (51.9–57.9 %), while NERICA 6, 15 and 16 had lower FGR (6.2–14.5 %). NERICA 1, 2 and 7 were less affected by cold stress, with a 31 % mean reduction in FGR, while NERICA 6, 15 and 16 were greatly affected, with their FGRs being reduced by more than 80 %. NERICA 3 and 4 were moderately affected by cold stress, with about 45 % reduction rate in FGR. FGR significantly influenced the grain weights of the varieties with strong positive correlations (r = 0.83–0.91; P < 0.001), and thus, similar trends in grain weights were observed. Grain weights were reduced by 61.7–96.4 % under cold stress. NERICA 1, 2 and 7 showed significantly better performance than NERICA 3 and 4, while NERICA 6, 15 and 16 performed poorly under cold water irrigation. The Japanese varieties Koshihikari (very tolerant) and Ozora (moderately tolerant) were more affected by cold water irrigation than NERICA 1, 2 and 7. On the basis of the mean reduction rate (%) in FGR under cold stress, the varieties were classified as follows: NERICA 1, 2 and 7 as tolerant; NERICA 3 and 4 as moderately tolerant; and NERICA 6, 15 and 16 as susceptible to cold stress. However, NERICA 7 grain yields were lower under cold stress due to both greatly reduced number of panicles per plant and number of spikelets per panicle. Therefore, NERICA 1 and 2 are suitable candidates for production in the highland regions of East Africa and should be promoted for production.  相似文献   
90.
A two-year field experiment was conducted to investigate the effects of foliar Zn combined with N or P on Zn concentration and bioavailability in wheat grain and its milling fractions under different soil N levels. At maturity, grains were harvested and fractionated into flour and bran for nutrient analysis. Both high soil N supply and foliar Zn-enriched fertilizer applications greatly increased Zn concentration and bioavailability in both whole grain and grain fractions. Compared with foliar Zn alone, foliar Zn combined with N increased Zn concentration and bioavailability, whereas foliar Zn combined with P decreased Zn concentration and bioavailability. However, foliar Zn combined with P slightly increased the protein concentration compared to foliar Zn alone. Protein concentration significantly increased, whereas phytate concentration decreased, in whole grain and flour, both in soil N and foliar Zn-enriched N treatments. Therefore, foliar Zn plus N (with appropriate soil N management) may be a promising strategy for addressing dietary Zn micronutrient deficiencies, especially in countries where flour is a significant component of the daily diet.  相似文献   
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