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31.
扁穗牛鞭草的抗性与利用途径 总被引:6,自引:0,他引:6
扁穗牛鞭草是一种优良的草种,不仅具有高产优质牧草的特性,而且对逆境表现出很强的耐性或抗性。在分析其抗旱、抗寒性和耐盐、耐酸、耐金属污染性,以及侵占性、独居性、再生性等特性的基础上,分析了牛鞭草在畜牧业生产、生态治理、污染环境修复等领域的利用潜力。 相似文献
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新时期下,保障我国畜产食品供给安全是保障我国食物安全的重要内容之一,而“适度进口”是保障我国畜产食品供给安全的重要途径之一。如何才算“适度进口”,需对畜产食品进口的相关风险进行分析方可评判。运用进口依赖性评价模型对我国猪肉、鸡肉、羊肉、牛肉、鲜牛奶的进口依赖性风险进行分析发现,上述5种畜产食品均存在进口依赖性风险。其中,猪肉的风险来自美国、德国、丹麦、西班牙和加拿大;鸡肉的风险来自美国、巴西、阿根廷和波兰;羊肉的风险来自澳大利亚、新西兰和乌拉圭;牛肉的风险来自乌拉圭、澳大利亚、新西兰、阿根廷和加拿大;鲜牛奶的风险来自德国、法国、新西兰和澳大利亚。为降低我国畜产食品进口依赖性风险,短期内应采取畜产食品进口市场多元化策略以及用进口饲草料替代进口畜产食品的进口方式;长期应在保障“口粮安全”的前提下,调整农业结构,大力发展草地农业,减少对国际市场的依赖性。 相似文献
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土地资源面积的有限性,位置固定性和区域差异性,造成了其供给稀缺性;而土地资源具有养育、支撑、资源和资产等功能,其需求旺盛;土地资源供给的稀缺性与社会需求的无限性之间存在矛盾。笔者运用经济学的总需求-总供给模型(AD-AS模型),立足生态文明角度,从供求方面对区域土地资源承载力进行探讨,以山西省大同市为案例区。研究结果表明:(1)由耕地需求量、建设用地需求量和生态用地需求量构成的土地资源综合承载力总需求,2011—2015年大同市土地综合承载力总需求分别为0.5309、0.5542、0.5770、0.5797和0.6030;其总体趋势增加;(2)由耕地支撑能力、建设用地支撑能力和生态支撑能力构成的土地综合承载力总供给,2011—2015年大同市土地综合承载力总供给分别为1.423、1.466、2.104、1.531和1.509;(3)2011—2015年大同市土地综合承载力处于超载,2013年超载最大,2015年超载最小,说明大同市的土地资源承载力超载现象在改善。运用此方法进行土地资源综合承载力评价,在土地资源承载力研究中更为科学和合理,使得人们更为关注生态文明,为建立社会、经济、生态和谐的人地关系提供了新的依据。 相似文献
36.
硼氢化钠的水解产物是一种新的储氢材料,其良好的可逆储氢能力在5MPa氢气压力真空条件下3分钟后在室温下吸收氢150。根据报道,它已被证明,这两种改变的催化剂NaBH4水解和添加催化剂直接插入接口是两个非常有效进一步提高接口的储氢容量。对hpsb-y2o3脱氢TiO2分别掺杂均达到重量2.4%和重量4.6%。重要的是对hpsb-y2o3可逆的脱氢能力不下降后成功———超循环。相比之下,对hpsb-ceo2可逆脱氢高达到重量5.9%,在室温下5分钟后3MPa氢气压力150氢吸附。 相似文献
37.
HUANG Ping ZHANG Jia-bao XIN Xiu-li ZHU An-ning ZHANG Cong-zhi MA Dong-hao ZHU Qiang-gen YANG Shan WU Sheng-jun 《中国农业科学(英文版)》2015,(1)
Cropland productivity has been signiifcantly impacted by soil acidiifcation resulted from nitrogen (N) fertilization, especialy as a result of excess ammoniacal N input. With decades’ intensive agricul... 相似文献
38.
滇东北4种典型筇竹林凋落物的持水性 总被引:1,自引:1,他引:0
以滇东北4种典型筇竹林为研究对象,对比分析不同类型筇竹林凋落物储量及持水性能,从而为滇东北筇竹林生态可持续经营提供理论依据和实践指导。研究结果表明,凋落物储量为人工筇竹-黄皮树混交林(7.61 t/hm2) > 天然筇竹-人工黄皮树混交林(6.61 t/hm2) > 天然筇竹-人工厚朴混交林(5.73 t/hm2) > 天然筇竹纯林(5.23 t/hm2)。凋落物最大持水量为天然筇竹-人工厚朴混交林(3.45 t/hm2) > 人工筇竹-黄皮树混交林(3.22 t/hm2) > 天然筇竹-人工黄皮树混交林(2.89 t/hm2) > 天然筇竹纯林(2.69 t/hm2)。4种类型筇竹林凋落物吸水速率均随着浸泡时间延长而逐渐趋于一致,筇竹混交林凋落物吸水速率高于筇竹纯林。凋落物的总有效拦蓄量为人工筇竹-黄皮树混交林(9.74 t/hm2) > 天然筇竹-人工厚朴混交林(8.95 t/hm2) > 天然筇竹-人工黄皮树混交林(7.73 t/hm2) > 天然筇竹纯林(6.23 t/hm2)。 相似文献
39.
In Central Europe, various plant species including large-grain legumes and their mixtures are grown as catch crops, particularly between grains harvested early and subsequent summer crops. This article investigates the question of how soil structure in the topsoil is influenced when catch cropping with large-grain legumes (experimental factor A: without catch crop, with catch crop) under different ploughless tillage conditions during catch crop seeding (experimental factor B: deep tillage/25–30 cm, shallow tillage/8–10 cm). Five one-year trials were performed using standard machinery at various sites in Germany. Soil core samples extracted from the topsoil in the spring after catch crop cultivation served to identify air capacity, saturated hydraulic conductivity and precompression stress. The above-ground and below-ground biomass yields of the catch crops were also determined at most of the sites. In addition, the soil compaction risk for the working steps in the experiments was calculated using the REPRO model.The dry matter yield of the catch crops varied considerably between the individual trial sites and years. In particular, high levels of dry matter were able to form in the case of early seeding and a sufficient supply of precipitation. The soil structure was only rarely affected positively by catch crop cultivation, and catch crops did not contribute in the short term to loosening already compacted topsoils. In contrast, mechanical soil stresses caused by driving over the ground and additional working steps used in cultivating catch crops often led to lower air capacity in these treatments. This is consistent with the soil compaction risks calculated using the REPRO model, which were higher in the treatments with catch cropping. Catch crop cultivation also only resulted in improved mechanical stability at one location. The positive effect of deep ploughless tillage on air capacity and saturated hydraulic conductivity, however, became more clearly evident regardless of catch crop cultivation. In order for catch crop cultivation with large-grain legumes to be able to have a favourable impact on soil structure, it is therefore important that cultivating them does not result in any new soil compaction. In the conditions evaluated, deep tillage was more effective at loosening compacted topsoil than growing catch crops. 相似文献
40.
Fagner Junior Gomes Bruno Carneiro Pedreira Patrícia Menezes Santos Cristiam Bosi Carlos Guilherme Silveira Pedreira 《Grass and Forage Science》2020,75(3):279-290
In silvopastoral (SP) systems, forage responses depend on the microenvironment in which the plants develop. Our objective was to evaluate canopy and tillering characteristics of shaded 'Marandu' palisadegrass [Brachiaria brizantha (Hochst A Rich) Stapf, syn. Urochloa brizantha] under continuous stocking in a SP system. Treatments were one full sun (FS) and three shaded systems (silvopasture, SP) corresponding to distances from tree groves: 7.5 m north (SP1), and 15 m (SP2) and 7.5 m south (SP3) studied during two rainy seasons (Year 1 and Year 2). The tree in the SP system was Eucalyptus urograndis (hybrid of Eucalyptus grandis W. Hill ex Maiden × Eucalyptus urophylla S. T. Blake). The photosynthetic active radiation was greater in FS (923 μmol m-2 s-1), followed by SP2 (811 μmol m-2 s-1), SP1 (727 μmol m-2 s-1) and SP3 (673 μmol m-2 s-1). Forage accumulation in FS was 15% greater than the mean of SP1, SP2 and SP3 (10,663 kg DM/ha). There was no difference in net accumulation of leaf, stem and dead material, averaging 3,302, 3,420 and 4,063 kg DM/ha respectively. Leaf accumulation and accumulation rate were greater in Year 2, and leaf accumulation rate was similar among treatments (19 kg DM ha−1 day−1). Leaf proportion increased 14% from Year 1 to Year 2. Specific leaf area was greater for treatments SP1 and SP3 (193 cm2/g). Tiller population density was similar across treatments in Year 1. Shaded palisadegrass maintains leaf productivity similar to FS under continuous stocking in an SP system. 相似文献