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51.
通过1990年,1991年连续两年的分期播种试验,分析了旱直播水稻的光温特性及其与空秕率的关系,并根据当地气候特点,提出旱直播水稻的最佳及安全播种期和抽穗期。  相似文献   
52.
济宁地区水稻生产与气象因子关系分析   总被引:2,自引:1,他引:2       下载免费PDF全文
王延贵  潘成英 《气象》1997,23(9):43-45
利用济宁市31年的水稻产量和气象资料,分析了水稻生产的不同气候年型、产量与气象因子的关系,找出了影响产量变异的着急时期和主导气象因子及其时间变化规律,并探讨了相应的对策措施。  相似文献   
53.
A comparative study of rice paddies and the uncovered water field in Taoyuan(Hunan) showed that methane emission from rice-vegetated paddy fields in 1993 was different from that in 1992(I,e,lower in rates and irregular in pattern).Climate has obvious influence on methane emission .And ebullition made a considerable contribution to the total flux of methane emission from rice paddies (45%).This implies that the intensification of paddy cultivation of rice might not be,as was proposed,the main con-tributor to the observed gradual increasing of atmospheric methane.24-hour automatic measurements of atmospheric temperature,air temperature and methane concentration in the static sampling boxes revealed that temperature,in addition to fertilization and irrigation style,is one of the most important factors that control the emission of methane from rice paddies.  相似文献   
54.
气候变化影响着农作物的生长。文章通过对比济南大辛庄遗址中、晚商时期的植物遗存和济南刘家庄遗址商末周初的植物遗存,发现两个遗址主要农作物均包括粟(Setaria italica (L.)Beauv.)、黍(Panicum miliaceum L.)、大豆(Glycine max(L.)Merr.)和小麦(Ttiticum aestivum L.),大辛庄遗址水稻(Oryza sativa L.)绝对数量较多,但刘家庄遗址未发现水稻。综合本地区其他遗址的植物考古研究结果,可以发现山东地区岳石文化时期、商代水稻仍是主要粮食作物之一,但到商末周初水稻数量急剧减少。同时,邻近的中原地区和关中地区,多处商周时期遗址水稻种植也普遍出现萎缩。多项地质记录表明,商末(3000 a B.P.前后)东亚夏季风快速减弱,降水量显著下降。山东地区受东亚季风影响,这一时期降水量减少,难以保证稻作农业所需的持续充足的水源,从而影响到水稻产量和种植规模。因此,商末气候变化很可能是刘家庄遗址商末周初水稻缺失以及山东地区商末周初水稻数量骤降的主要原因之一,也同时影响到整个黄河中下游这一时期的稻作农业。  相似文献   
55.
基于改性糯米灰浆的3种锚杆锚固性能对比研究   总被引:1,自引:0,他引:1  
锚固浆液的类型及其与杆体、土体的兼容协调性问题是土遗址锚固领域的研究焦点。由糯米浆为胶凝主材和由黏土、粉煤灰为填充料组成的改性糯米灰浆与木锚杆、玻璃纤维增强塑料锚杆、钢筋锚杆组成了3种锚固系统。通过对3种锚固系统的原位锚固、拉拔试验和界面应力-应变监测,分析比较了3种锚固系统的破坏模式、极限荷载、荷载-位移特征,剖析了杆体-浆体界面应力分布传递规律和界面测点应变对荷载时步的响应程度。在初步分析其锚固机制的基础上,最终得出了此类基于改性糯米灰浆的3种锚固系统的锚固性能的优劣完全取决于杆体-浆体的受力机制、变形和强度特征所决定的力学兼容性的结论。该研究成果为以糯米浆为主材的改性浆液在土遗址锚固领域中的应用提供了依据和参考。  相似文献   
56.
利用1961-2008年广东省86个气象站的资料,结合农业气象观测报表中早稻各个发育期的出现时间,从程度和频率两个方面对比分析1961-1996年与1997-2008年两个时段早稻生长季的主要气象灾害变化特征.结果表明,1997年以来,(1)低温阴雨危害明显减轻;(2) “五月寒”无明显变化趋势,但年际波动较大,主要危害北部地区;(3) “龙舟水”危害略有加重,降水集中期后推至6月中旬;(4)≥35℃高温热害加重.揭示了气候变化背景下广东早稻主要气象灾害的变化特征,为早稻应对气候变化调整生产布局、培育优质品种提供科学依据.  相似文献   
57.
Vegetation图像植被指数与实测水稻叶面积指数的关系   总被引:9,自引:1,他引:9  
水稻的叶面积指数 (LAI)是水稻生长的一项重要参数 ,与水稻的生物量与产量直接相关。利用 1999年在江苏省江宁县实测的水稻叶面积指数与同期Vegetation/SPOT的植被指数作了对比分析 ,结果发现同期的LAI与植被指数表现相近的变化特征 ,两者具有良好的相关关系。  相似文献   
58.
贾十军 《安徽地质》2013,(2):132-136
土壤中镉元素稳定的残渣态所占比例在重金属中为最低,其赋存形态以离子态为主,易被植物吸收的活性态较高,生态危害较大。稻米镉元素与土壤镉元素具有显著的正相关性。根据区域土壤镉元素与稻米镉元素含量及稻米镉超标率关系,将水稻种植土壤分为生态安全土壤、具生态安全风险土壤及生态安全高风险土壤,提出了土壤镉元素生态安全定量分级标准。  相似文献   
59.
Rice planted in southern China accounts for 94% of the total in sown acreage and 88% of the total in production, which matters a lot to Chinese food security. However, due to the prolonged conflict between water availability and rice growth in spatial/temporal distribu-tion, rice production suffers from seasonal drought at acreage of 16%-22%, which compro-mises food production capacity and food security. Focusing on the spatial distribution of seasonal drought with rice and the practices to adapt to it, and based on an analysis of bal-anced water supply for and demand by rice at a growing season scale during 1981-2030, this paper assesses the changing seasonal drought in the process of rice production under the changing climate in the future, and identifies general rice re-cultivation options for climate change adaptation. Some conclusions can be drawn as follows. (1) Rice suggests a decline in seasonal drought, with early season rice (early rice hereafter) by 12,500 km2, middle season rice (middle rice) by 80,000 km2, and in particular late season rice (late rice) by 25,000 km2, which accounts for almost 20% of its cultivated acreage. It is indicated that due to climate change, seasonal drought in major rice producing areas tends to alleviate in general, late season rice in particular. (2) Future climate change brings about a significant impact on the spatial/temporal distribution of water resources in rice producing areas in China. Based on ’pre-designed’ adaptation actions for rice-re-cultivation, the rice cultivation pattern undergoes a significant alteration between 1981-2000 and 2001-2030. In eastern Guizhou and western Hunan, the pattern of single early plus single dry farming is changed into double cropping. In eastern Hunan, the pattern of dry cropping is changed into single early plus single dry farming. In northern Anhui, the pattern of dry farming cropping is changed into middle rice. All this is aimed at a potential adequate availability of water for rice production in the future. (3) Rice re-cultivation patterns developed in this paper help re-balance water demand and supply for rice growth using the spatial analysis tool to adapt rice growth to the changing water avail-ability from spatial perspective, and come up with rice producer-friendly re-cultivation options in response to climate change.  相似文献   
60.
Rice's spatial-temporal distributions, which are critical for agricultural, environ- mental and food security research, are affected by natural conditions as well as socio-eco- nomic developments. Based on multi-source data, an effective model named the Spatial Production Allocation Model (SPAM) which integrates arable land distribution, administrative unit statistics of crop data, agricultural irrigation data and crop suitability data, was used to get a series of spatial distributions of rice area and production with 10-km pixels at a national scale -it was applied from the early 1980s onwards and used to analyze the pattern of spatial and temporal changes. The results show that significant changes occurred in rice in China during 1980-2010. Overall, more than 50% of the rice area decreased, while nearly 70% of rice production increased in the change region during 1980-2010. Spatially, most of the increased area and production were in Northeast China, especially, in Jilin and Heilongjiang; most of the decreased area and production were located in Southeast China, especially, in regions of rapidly urbanization in Guangdong, Fujian and Zhejiang. Thus, the centroid of rice area was moved northeast approximately 230 km since 1980, and rice production about 320 km, which means rice production moved northeastward faster than rice area because of the significant rice yield increase in Northeast China. The results also show that rice area change had a decisive impact on rice production change. About 54.5% of the increase in rice pro- duction is due to the expansion of sown area, while around 83.2% of the decrease in rice production is due to contraction of rice area. This implies that rice production increase may be due to area expansion and other non-area factors, but reduced rice production could largely be attributed to rice area decrease.  相似文献   
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