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21.
近年来我国的水环境持续恶化,尤其农村的饮用水安全问题令人堪忧。文章从我国农村饮用水安全的现状以及存在的主要问题出发,着重探析造成现阶段我国农村饮用水安全种种问题的根源,基于法律保障的视角,注重法律制度诸项功能在具体操作层面上的充分发挥,指出我国农村饮用水安全保护的重要意义,提出合理的建议,希望能够对进一步探索和研究有所启示。 相似文献
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Winter rye (Secale cereale L.) will be especially affected by drought induced yield losses in Central and Eastern Europe in the future because it is predominantly cultivated on low-fertile soils with a poor water-holding capacity. In order to examine the performance of winter rye under different drought conditions, field experiments were carried out during the years 2011, 2012, and 2013 near Braunschweig, Germany. Two sets of genotypes were tested under severe, mild, pre-anthesis, and post-anthesis drought stress in rain-out shelters as well as under rainfed and well-watered conditions. The grain, straw, and total above ground biomass yields, harvest index, grain yield components, leaf area index (LAI), and phenological characteristics were examined, as well as phenotypic correlations between grain yield and further characteristics. Drought induced grain yield reduction ranged from 14 to 57%, while straw yield and harvest index were lesser affected by drought than the grain yield. Under drought conditions, fully ripe was reached up to twelve days earlier than under non water-limited conditions. Pre-anthesis drought mainly reduced spikes m−2 and kernels spike−1 while drought during grain filling reduced the 1000-kernel weight (TKW) only. The grain yield was positively associated with straw yield, spikes m−2, and kernels spike−1 under water limited conditions while the TWK was only positively associated with grain yield under drought during grain filling. Consequently, high pre-anthesis biomass as well as high numbers of spikes m−2 and kernels spike−1 are especially important for obtaining high grain yields under water-limited conditions. Focusing on these traits is, therefore, recommendable for developing drought tolerant rye genotypes. 相似文献
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食品安全是天大的事,培养相关的专业人才尤显重要。依据食品质量与安全专业人才培养目标要求明确专业内涵,采用模块设计方法构建食品质量与安全专业课程体系,并就如何提高人才培养质量提出建议。 相似文献
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为了探明紧压白茶饮用的安全性,以不同年份和花色的紧压白茶为原料,选用国家标准方法测定其主要的品质安全性指标,并进行分析和评价。结果表明:不同年份和花色的紧压白茶中未测出致病菌,其中1个样品检出霉菌;农药残留符合GB2763-2016食品中污染物限量要求;重金属检测中,铅含量0.229~0.819 mg/kg,砷含量0.071~0.205 mgkg,镉含量0.006~0.036 mg/kg,铬含量0.111~6.522 mg/kg,铜含量9.892~23.399 mg/kg,铝含量126.717~668.417 mg/kg,汞含量0~0.024 mg/kg,符合食品中污染物限量要求;理化检测中,水分含量4.6%~10.5%,灰分含量4.6%~5.7%,水浸出物含量30.2%~40.1%,茶梗含量0.8%~4.5%。由此可得出结论:紧压白茶的品质安全性可靠。 相似文献
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基于一种不依赖交通事故和交通冲突数据的事前安全评价方法——安全服务水平评价方法,分析了影响公路平面交叉口安全服务水平的客观因素,建立了设计阶段安全评价模型。结合江苏省临海高等级公路的平交口数据进行实例验证,提出了设计阶段平交口安全评价方案及优化流程,改善效果明显。 相似文献
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In order to investigate effects of topdressing on grain yield and N use efficiency of mechanically-transplanted hybrid rice,this experiment was conducted with 2-line hybrid rice cultivars,Quanliangyou 1 and Quanliangyou 681 with 3 application levels of N fertilizer,No,N1,N2,respectively.The results showed that there were no significant differences in grain yields of the 2 varieties between treatments N1 and N2.It was indicated that N is not the factor which could limit grain yield within limited application levels of N fertilizer.High N fertilizer treatment could contribute to the formation of effective panicles and spikelets per panicle,but it could also lead to the decline in grain filling rate.It was suggested that lowering the amount of Nfertilizer could facilitate improvement of N-use efficiency. 相似文献
30.
The introduction of new hybrids and integrated crop-soil management has been causing maize grain yield to increase. However, less attention has been paid on the nutrient concentration of the grain; this aspect is of great importance to supplying calories and nutrients in the diets of both humans and animals worldwide. Increasing the retranslocation of nutrients from vegetative organs to grain can effectively increase the nutrient concentration of grain and general nutrient use efficiency. The present study involved monitoring the dynamic change of macro- and micronutrients in different organs of maize during the grain filling stage. In addition, the mobility of different elements and their contribution to grain nutrient content were evaluated in a 2-year experiment under low (LN, no N supplied) and high N (HN, 180 kg N ha−1) supply. Under HN supply, the net remobilization efficiency (RE) of the vegetative organs as a whole (calculated as nutrient remobilization amount divided by nutrient content at silking) of N, P, K, Mn, and Zn were 44%, 60%, 13%, 15%, and 25%, respectively. The other nutrients (Mg, Ca, Fe, Cu, and B) showed a net accumulation in the vegetative organs as a whole during the grain filling stage. Among the different organs, N, P, and Zn were remobilized more from the leaves (RE of 44%, 51% and 43%, respectively) and the stalks (including leaf sheaths and tassels) (RE of 48%, 71% and 43%, respectively). K was mainly remobilized from the leaves with RE of 51%. Mg, Ca, Fe, Mn, and Cu were mostly remobilized from the stalks with the RE of 23%, 9%, 10%, 42%, and 28%, respectively. However, most of the remobilized Mg, Ca, Fe, Mn, Cu, and Zn were translocated to the husk and cob, which seemingly served as the buffer sink for these nutrients. The REs of all the nutrients except for P, K, and Zn were vulnerable to variations in conditions annually and were reduced when the grain yield and harvest index were lower in 2014 compared with 2013. Under LN stress, the RE was reduced in P and Zn in 2013, increased in Cu and unchanged in other nutrients. The concentration of these nutrients in the grain was either unchanged (P, K, Ca, Zn, and B) or decreased (N, Mg, Fe, Mn, and Cu). It is concluded that grain N, P, K, Mn, and Zn, but not Mg, Ca, Fe, Cu, and B concentration, can be improved by increasing their remobilization from vegetative organs. However, enhancing the senescence of maize plant via LN stress seems unable to increase grain mineral nutrient concentration. Genetic improvement aiming to increase nutrient remobilization should take into account the organ-specific remobilization pattern of the target nutrient. 相似文献