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31.
柴巍中 《农产品加工.学刊》2005,(9):11-13,15
中国农产品生产及其加工曾经经历过注重产品数量扩增、技术设备改进和卫生安全的发展阶段,目前正处在挑战和发展机遇并存的转折时期.中国农产品生产及其加工业应把握时机,应用营养科学为指导,科学地制定"十一五"期间的发展战略,丰富和发展营养食品产业,促进农产品生产和加工全面满足人民营养健康需要和市场需求,这将是开拓发展领域,实现产品升级换代,提升竞争能力和增值潜力,主动迎接国际挑战的战略举措,也是实践"以人为本"的科学发展观的具体体现. 相似文献
32.
In order to support flexibility and reusability of application composition based on Internet,with business rule and Aspect-Oriented Programming(AOP) which divides a business process into a control business process and a core business process,the authorsgive composition mechanism.A technique of implementation is analyzed.At last,the primary application of the above work in Chongqing of China is introduced,as well as some effects acquired. 相似文献
33.
Irrigation and food security in the 21st century 总被引:1,自引:0,他引:1
Global food projections indicate that food prices in the next threedecades will likely be stable or decline, but progress inreducing malnutrition in developing countries will be slow. Smallshortfalls in crop productivity growth would lead to rising foodprices and worsening malnutrition. Increased food production fromirrigation is essential, and will require expansion of irrigatedarea and water supplies, and improved efficiency of use of existingwater supplies. Neither of these growth factors will prove easy, andboth will require complex institutional and policy reforms. Failureto meet food production needs through efficient expansion andintensification of irrigated agriculture would increase pressure onland resources and hasten the process of environmental degradation.Irrigation and water development strategies have been hampered bya lack of understanding of the links between water scarcity, foodproduction, food security, and environmental sustainability.Research to improve this understanding would have high payoffs. 相似文献
34.
Butyrolactone I (BTL-I) is a butanolide isolated from the deep-sea-derived fungus, Aspergillus sp. It provides a potential new target for the prevention and treatment of food allergies. This study aimed to investigate the metabolic and pharmacokinetic profile of BTL-I in rats. The metabolic profiles were obtained by UHPLC–Q-TOF-MS. As a result, eleven metabolites were structurally identified, and the proposed metabolic pathways of BTL-I were characterized. The main metabolites were the oxidative and glucuronidative metabolites. In addition, a sensitive UHPLC–MS/MS method was established for the quantitation of BTL-I in rat plasma (LOQ = 2 ng/mL). The method was fully validated and successfully applied to the pharmacokinetic study of BTL-I in rats after oral administration or intravenous administration. The oral bioavailability was calculated as 6.29%, and the maximum plasma concentrations were 9.85 ± 1.54 ng/mL and 17.97 ± 1.36 ng/mL for intravenous and intragastric dosing groups, respectively. 相似文献
35.
Vasily I. Svetashev 《Marine drugs》2022,20(1)
Abyssal seafloor ecosystems cover more than 50% of the Earth’s surface. Being formed by mainly heterotrophic organisms, they depend on the flux of particulate organic matter (POM) photosynthetically produced in the surface layer of the ocean. As dead phytoplankton sinks from the euphotic to the abyssal zone, the trophic value of POM and the concentration of essential polyunsaturated fatty acids (PUFA) decrease. This results in pronounced food periodicity and limitations for bottom dwellers. Deep-sea invertebrate seston eaters and surface deposit feeders consume the sinking POM. Other invertebrates utilize different food items that have undergone a trophic upgrade, with PUFA synthesized from saturated and monounsaturated FA. Foraminifera and nematodes can synthesize arachidonic acid (AA), eicosapentaenoic acid (EPA), while some barophylic bacteria produce EPA and/or docosahexaenoic acid. FA analysis of deep-sea invertebrates has shown high levels of PUFA including, in particular, arachidonic acid, bacterial FA, and a vast number of new and uncommon fatty acids such as 21:4(n-7), 22:4(n-8), 23:4(n-9), and 22:5(n-5) characteristic of foraminifera. We suppose that bacteria growing on detritus having a low trophic value provide the first trophic upgrading of organic matter for foraminifera and nematodes. In turn, these metazoans perform the second-stage upgrading for megafauna invertebrates. Deep-sea megafauna, including major members of Echinodermata, Mollusca, and Polychaeta display FA markers characteristic of bacteria, foraminifera, and nematodes and reveal new markers in the food chain. 相似文献
36.
37.
实现粮食安全战略与“双碳”目标是加快农业农村现代化步伐、加快建设农业强国的关键。为助推粮食安全战略与“双碳”目标的同步实现,本研究立足粮食安全视域,阐释生态低碳农业的科学内涵,厘清粮食安全与生态低碳农业的辩证关系,剖析粮食安全战略下生态低碳农业发展面临的问题与挑战,并针对性提出发展战略与推进路径。研究发现,在“大食物观”“大产业观”“大农业观”指导下,生态低碳农业涉及全食物品类、全产业流程、全生活环节。粮食安全是发展生态低碳农业的底线要求,生态低碳农业是可持续保障粮食安全的应有之义。当前,发展生态低碳农业面临自然资源约束、科学技术瓶颈、小农生产模式、居民观念局限等现实困难,亟需探索水地资源拓展、技术创新应用、居民素质提升等有效路径,推动生态低碳农业实现“藏粮于地”“藏粮于技”“藏粮于民”。 相似文献
38.
以明虾虾仁为研究对象,利用数值模拟结合实验验证的方法,研究两种送风方式(单侧送风和双侧送风)和两种载物方式(板带载物和网带载物)对虾仁冻结过程的影响,找到使虾仁冻结时间最短的送风和载物方式。研究发现:对于虾仁冻结来说,采用双侧送风+网带载物可以使虾仁表面流场流速更大,有利于提高换热效率,减少虾仁冻结时间,相对于其他送风方式和载物方式来说可缩短虾仁冻结时间的14%~25%;双侧送风有助于低速侧形成提高虾仁下表面流速的涡流,而网带载物可以避免在虾仁下侧面与网带交界处以及虾仁头部形成射流"真空区",上述均有助于提高虾仁表面风速,缩短虾仁冻结时长;但是冻结速度越快,虾仁冻结均匀性则越差。在本次实验中,虾仁内外最大温差出现在实验组D(双侧送风+网带载物),最大温差可达13.02℃。 相似文献
39.
This study aimed to investigate the effects of the selenium (Se) application via soil (SeVI) and leaf (SeIV and SeVI) on agronomic attributes of rice and the spatial distribution of Se and other elements in biofortified rice grains. For this, a field trial was conducted using six Se rates (0, 5, 10, 20, 40, and 80 g ha−1). Physiological evaluations in rice leaves, rice grain yield, and Se and other elements content were assessed. Spatial distributions of Se and other elements were visualized mapping the biofortified rice grains with μXRF. The results showed that the strategies and rates of Se applied to the plants were effective for producing Se-rich rice grains. Although Se application did not change the rice yield, it affected some enzyme activities, improving the antioxidant system of the plant. The spatial distribution of the different elements found in the biofortified rice grains varied substantially, with Se accumulations mainly in the endosperm, whereas P, K, Fe, and Zn accumulate in the embryo. Agronomic biofortification of rice with Se, via soil or leaf, is a promising strategy to be adopted in tropical soils in order to produce rice grains with adequate Se contents for human consumption. 相似文献
40.