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We studied the effects of temperature and solar radiation on rice yield with the aim of understanding the temperature and solar radiation requirements for high yield rice production in the lower reaches of the Huai River, China. Field experiments were conducted with two medium-maturing japonica rice(MMJR) varieties and four late-maturing japonica rice(LMJR) varieties in 2017 and 2018. Seeds were sown on May 10(T1), May 17(T2), May 24(T3), May 31(T4), June 7(T5), June 14(T6), and June 21(T7). The whole growth duration(WGD) of rice was shortened when sowing date was delayed, especially for the duration from sowing to heading(S–H). The effective accumulated temperature(EAT), mean daily temperature(T_(mean)), cumulative solar radiation(CSR), and mean daily solar radiation(R_(mean)) over the WGD decreased when sowing date was delayed. Compared with T1, yields in T2, T3, T4, T5, T6, and T7 decreased by 0.12–0.35, 0.45–0.89, 0.74–1.56, 1.41–2.24, 2.16–2.90, and 2.69–3.64 t ha-1, respectively. There was a significant positive correlation between rice yield and EAT in different growth stages. Temperature was the main factor that affected the yield of good eating-quality rice in the lower reaches of the Huai River. We found that a relatively high yield can be obtained when the optimal T_(mean) for medium-maturing japonica rice(MMJR) and late-maturing japonica rice(LMJR) was 25.8–27.0℃ and 26.6–27.1℃ in the stages from sowing to heading(S–H), and 20.3–23.3℃ and 20.3–22.1℃ in the stages from heading to maturity(H–M), respectively. The optimal sowing dates for MMJR and LMJR in the lower reaches of the Huai River were May 15–31 and May 15–18, respectively.  相似文献   
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We provide estimates of glacier mass changes in the High Mountain Asia (HMA) area from April2002 to August 2016 by employing a new version of gravity solutions of the Gravity Recovery and ClimateExperiment (GRACE) twin-satellite mission. We find a total mass loss trend of the HMA glaciers at a rateof –22.17 (±1.96) Gt/a. The largest mass loss rates of –7.02 (±0.94) and –6.73 (±0.78) Gt/a are found forthe glaciers in Nyainqentanglha Mountains and Eastern Himalayas, respectively. Although most glaciers inthe HMA area show a mass loss, we find a small glacier mass gain of 1.19 (±0.55) and 0.77 (±0.37) Gt/a inKarakoram Mountains and Western Kunlun Mountains, respectively. There is also a nearly zero massbalance in Pamirs. Our estimates of glacier mass change trends confirm previous results from the analysisof altimetry data of the ICESat (ICE, Cloud and Land Elevation Satellite) and ASTER (AdvancedSpaceborne Thermal Emission and Reflection Radiometer) DEM (Digital Elevation Model) satellites inmost of the selected glacier areas. However, they largely differ to previous GRACE-based studies which weattribute to our different post-processing techniques of the newer GRACE data. In addition, we explicitlyshow regional mass change features for both the interannual glacier mass changes and the 14-a averagedseasonal glacier mass changes. These changes can be explained in parts by total net precipitation (netsnowfall and net rainfall) and net snowfall, but mostly by total net radiation energy when compared to datafrom the ERA5-Land meteorological reanalysis. Moreover, nearly all the non-trend interannual masschanges and most seasonal mass changes can be explained by the total net radiation energy data. The massloss trends could be partly related to a heat effect due to increased net rainfall in Tianshan Mountains, QilianMountains, Nyainqentanglha Mountains and Eastern Himalayas. Our new results for the glacier mass changein this study could help improve the understanding of glacier variation in the HMA area and contribute tothe study of global change. They could also serve the utilization of water resources there and in neighboringareas.  相似文献   
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不同熟期夏玉米品种生长发育特性与产量形成的关系   总被引:1,自引:0,他引:1  
【目的】研究不同熟期夏玉米品种生长发育特性与产量形成的关系,以期为早熟、高产、适应机械粒收的玉米新品种的筛选提供理论依据。【方法】2017年以早熟玉米品种登海518(DH518)、衡早8号(HZ8)和中晚熟玉米品种登海605(DH605)、郑单958(ZD958)为试验材料,2018年以早熟玉米品种登海518(DH518)、京农科728(JNK728)和中晚熟玉米品种登海605(DH605)、郑单958(ZD958)为试验材料,种植密度为75 000株/hm2,研究玉米生长发育过程中的叶片建成规律、穗部发育特性以及各生育阶段对光温需求的差异。【结果】不同熟期夏玉米品种各生育阶段的光温需求大小表现为吐丝期(R1)—生理成熟期(R6)>出苗期(VE)—吐丝期(R1)>播种期(sowing)—出苗期(VE)。不同品种花后对积温的需求高于花前,中晚熟和早熟夏玉米品种对积温需求的差异主要在拔节期—吐丝期,具体表现为第9—16片叶建成期;花后对积温的需求品种间差异不显著。相关性分析表明,不同熟期夏玉米品种的产量与穗位高、穗高系数呈极显著正相关关系。不同熟期夏玉米品种的雄穗发育特性不同,晚熟品种的雄穗长度显著低于早熟品种,但晚熟品种的雄穗分枝数、雄穗总小花数、小花败育率、有效小花数显著高于早熟品种;而雌穗分化到籽粒形成受品种基因型影响较大。【结论】不同熟期夏玉米品种生长发育特性具有较大差异,在75 000株/hm2条件下,中晚熟品种的产量显著高于早熟品种;植株总叶片数较少,拔节期—吐丝期所需时间短,后期脱水速率快是早熟宜机收玉米品种的典型特征。  相似文献   
6.
刘亮  王丹  王诚  陈红  胡国宇  黎青 《核农学报》2021,35(5):1009-1019
为研究60Co-γ射线对栀子插条的辐射诱变作用及3种保护剂的保护效应,采用不同辐射剂量(5、10、20、40 Gy)辐射栀子插条,运用氯化钠(NaCl)、半胱氨酸(Cys)及维生素C(Vc)3种保护剂,分别设置4种不同浓度浸泡辐射后插条,分析不同辐射剂量及保护剂处理栀子插条的生根率、存活率、根长、根数、成株率、节间长度、分枝数、叶片数、叶长、叶宽等指标。结果表明,随着辐射剂量的增加,栀子插条的损伤逐渐增大。栀子插条60Co-γ射线半生根剂量为21.22 Gy,半致死剂量为81.65 Gy,半成株剂量为20.30 Gy。3种保护剂在较高剂量辐射下具有显著的保护效应。在20 Gy辐射剂量下,3.00 g·L-1 NaCl处理对栀子插条生根、生长保护效果较好。40 Gy辐射剂量下,0.12 g·L-1 Cys和0.08 g·L-1 Vc处理对栀子插条生根、生长保护效果较好。综上所述,3种保护剂均对较高剂量60Co-γ射线损伤具有较好的保护作用,且保护效果与辐射剂量、保护剂浓度相关。本研究为栀子的辐射诱变育种及保护剂应用提供了技术参考。  相似文献   
7.
将辐射制冷材料粘贴或涂刷于浅圆仓仓顶和外壁,试验表明:试验仓比对照仓仓顶外表面平均温度低4.3℃,最高值低26.1℃;平均仓温低2.8℃,最高值低5.6℃;平均粮面温度低2.4℃,最高值低4.7℃。试验表明,辐射制冷材料应用于浅圆仓具有显著的降温效果,新型辐射制冷技术产业化的突破为粮食仓储行业实现更高质量的仓储环境提供了新材料,为实现浅圆仓的准低温储粮提供了新的参考方法。  相似文献   
8.
为了研究太阳辐射对浮顶油罐温度场的影响,有必要掌握受太阳辐射影响原油在浮顶油罐中的温度变化规律。通过分析浮顶油罐与环境换热过程,建立2×10^4 m^3浮顶油罐的三维模型,对一天内浮顶油罐油品及罐壁的温度变化进行数值模拟。结果表明:在以太阳辐射为主的环境变化影响下,浮顶油罐的近壁面和浮盘处会产生温度梯度较大的高温油层,深层油品温度受到的影响较小。结合模拟结果,提出了考虑太阳辐射时,在不同条件下使用不同罐壁温度计算公式的建议,从而降低浮顶油罐容积的修正误差。  相似文献   
9.
An 8-year-old neutered male Yorkshire Terrier dog presented with head pressing, vestibular ataxia, neck tenderness, and no oculocephalic reflex. A demarcated lesion in the pons was identified on MRI. The patient was tentatively diagnosed with a glioma and was treated with hydroxyurea plus imatinib and prednisolone. After 30 days of therapeutic treatment, the patient showed a clear improvement in neurological signs, which lasted for 1117 days. On day 569 after the initiation of treatment, 18F-fluorodeoxyglucose (FDG)-positron emission tomography (PET) was performed with no significant findings on visual analysis. The average and maximal standardized uptake values (SUVs) were 1.92 and 2.29, respectively. The tumor-to-normal-tissue (T/N) ratio was 0.97. The first evidence of clinical deterioration was noticed on day 1147. On day 1155, 3,4-dihydroxy-6-[18F]-fluoro-l-phenylalanine (18F-FDOPA)-PET was performed. High uptake of 18F-FDOPA was observed in the intracranial lesion. The mean and maximal SUVs of the tumor were 1.59 and 2.29, respectively. The T/N ratio was 2.22. The patient was euthanized on day 1155 and histopathologic evaluations confirmed glioma (astrocytoma). This case shows that chemotherapy with hydroxyurea plus imatinib may be considered in the treatment of canine glioma. Furthermore, this is the first case describing the application of 18F-FDG and 18F-FDOPA in a dog with glioma.  相似文献   
10.
粮仓围护结构保温隔热性能对储粮安全和粮仓能耗有重要影响。粮仓屋顶面积大,是粮仓围护结构接受太阳辐射最强的部位,外界热量主要通过屋顶传入粮仓,因此屋顶是粮仓围护结构保温隔热设计的最重要部位。双层通风屋顶、高反射率的屋面隔热涂料和保温隔热材料等节能技术近年来在粮仓屋顶设计中得到迅速发展和应用。考虑屋顶不同外表面太阳辐射反射率和自然通风对双层通风屋顶传热的影响,该文给出并试验验证了多层屋顶非稳态传热模型和双层通风屋顶传热模型,利用经过验证的屋顶传热模型进行屋顶能耗计算,采用经济性模型和全生命周期理论对长沙地区低温粮仓普通屋顶和双层通风屋顶最佳保温隔热层厚度进行分析,并对采用最佳保温隔热层厚度时的生命周期总投资、净收益及回收周期进行计算和比较分析。研究结果表明:屋顶外表面太阳辐射反射率对长沙地区低温粮仓屋顶最佳保温隔热层厚度和经济性有较大影响,双层通风屋顶可以减小屋顶最佳保温隔热层厚度,长沙地区低温粮仓可采用双层通风屋顶和高反射率的屋面隔热涂料降低粮仓能耗,减少因能源消耗而引起的环境污染问题。长沙地区低温粮仓普通屋顶挤塑聚苯乙烯和膨胀聚苯乙烯最佳保温隔热层厚度为0.106~0.183 m,生命周期内最大净现值为417~633.38元/m2,投资回收年限为2.39~2.96 a。低温粮仓屋顶最佳保温隔热层厚度随屋顶外表面太阳辐射反射率的增大而减小,双层通风屋顶可以减少屋顶保温隔热层投资回收年限。该屋顶最佳保温隔热层厚度确定方法对于指导低温粮仓屋顶保温隔热设计具有一定指导意义。  相似文献   
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