54 resultados para Streambank planting


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干旱是威胁宁南山区胡麻生产持续发展的首要限制因子。采用地膜覆盖穴播种植技术 ,探索了旱地胡麻覆膜穴播种植的增产机理及其增产效应。结果表明 ,覆膜穴播可以提高土壤地温 ,保持土壤水分 ,促进土壤速效养分的充分释放和有效利用。又因穴播种植 ,胡麻籽粒顶土合力增强 ,出苗率高达 79.4%~ 96.2 % ,籽粒产量提高 37.9%~ 46.2 %。与此同时 ,作者于胡麻覆膜穴播种植后 ,在胡麻的关键生育期枞形后期—现蕾初期 ,进行了膜上节水补灌试验。结果表明 ,节水补灌 30 0~ 450 m3 /hm2可提高籽粒产量 30 %~ 44% ,水分生产效率达0 .30~ 0 .32 kg/(hm2 · mm) ,水分生产效率提高 8%~ 1 4 .9%。这一新的种植方式 ,效益显著 ,应在干旱半干旱地区的胡麻产地大面积推广应用

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自 1 98 4年开始的长期不同轮作与施肥试验表明 :种植作物可提高土壤供氮能力 6.88%~ 36.58%,以种植苜蓿提高幅度最大 ,是裸地的 1 .37倍。长期施用氮肥、磷肥、有机肥及三者配施可提高土壤供氮能力 9.8%~ 1 33.98%,其中以施氮、磷及有机肥玉米连作提高幅度最大。不同轮作系统中土壤供氮能力 :粮草 3年轮作 >粮草 8年轮作 >粮豆 3年轮作 >粮饲豆 4年轮作 ;种植作物可有效增加土壤有机氮水平 ,提高剖面土壤供氮能力。施用有机肥可有效地增加深层土壤供氮潜力并在 1 0 0 cm处出现迅速减小的现象

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研究了黄土塬区塬面不同套种作物的幼树苹果园土壤微生物的分布和酶活性。结果表明,果园土壤中微生物的分布在果树行与套种行中是不均匀的,细菌和真菌多为果树行多于套种行;土壤的过氧化氢酶,蔗糖酶,脲酶以及中性磷酸酶活性在套种小麦的果园中以套作行高于果树行,而套种烤烟则使脲酶和中性磷酸酶活性有所降低。套种豆类有利于土壤肥力的均衡发展。

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20 0 0年特旱年 ,燕沟流域通过推广抗旱保苗、调整作物种植结构、品种改良、增施肥料、大垄沟种植等技术措施 ,增产稳产效果显著 ,在全年降水量减少 36 .1%的情况下 ,粮食单产仍稳中有升 ,人均产粮达到了 5 2 5 .1kg。这对于黄土高原中部丘陵区坡改梯后保障食物安全生产、加快退耕还林还草步伐都具有一定的现实意义。

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针对黄土高原半干旱区灌草植被退化严重的关键问题 ,进行了长期的定位研究 ,提出了灌草植被封育、改良、立体配置等快速恢复与重建的技术体系。试验结果表明 :主要草地群落本氏针茅、百里香适宜封育期为 3~ 5a ,产草量可提高 5 1~ 7 5倍。大针茅适宜封育期为 5a ,产草量可提高 1 5~ 5 0倍 ;改良草地最佳组合荒山穴播为本氏针茅 +杂类草、达乌里胡枝子 +本氏针茅群落 ,产草量提高 6 1~ 6 4倍。撂荒地开沟种植为本氏针茅 +冷蒿、本氏针茅 +红豆草、本氏针茅 +达乌里胡枝子群落 ,产草量提高 4 6~ 4 8倍。荒山隔带耕翻种植为芨芨草、本氏针茅 +紫花苜蓿、本氏针茅 +老芒麦、达乌里胡枝子 +本氏针茅群落 ,产草量提高4 5~ 6 5倍 ;灌草立体配置结合工程整地措施 ,建立了以柠条 +芨芨草、沙棘 +草木樨和山桃 +芨芨草为主的集流灌草配置模式 ,现已形成可更新的稳定的灌草群落类型。该体系的组装配套与试验、示范、推广为黄土高原农牧交错区灌草植被的快速恢复提供了重要的科学依据。

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通过对苹果地、农田和其他塬面主要土地利用方式的比较研究 ,发现苹果地土壤入渗速率大、降雨产流率低和存在生物利用型土壤干层。这些水文学性质将增强土壤 -植物 -大气间垂直水分交换 ,削弱降雨转化为地表径流和地下水的比例 ,最终影响区域地表和地下水资源的数量。另外土壤干层的出现还削弱了土壤水库对年际和季节性干旱的调节作用 ,导致苹果产量随降雨量的自然变化呈现较大波动

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针对黄土高原铁路、公路、大坝及农田地埂边坡长期裸露的水土流失与生态环境问题,选择禾本科植物-芨芨草,进行了为期10年的引种、栽培、生理生态特性与水保等方面的综合开发利用研究。结果表明,芨芨草具有耐旱、耐盐碱、耐瘠薄、抗风沙和极强的固土护坡作用,采用的包衣穴播、分根栽植、基茎扦插3大栽培技术,使芨芨草植株在长期干旱裸露的边坡能快速形成密集的地上部分和发达的根系,固结土壤,防止地表径流冲刷土壤,保护了铁路、公路、大坝及农田地埂边坡的生态安全,为我国西部同类型区的边坡治理,提供了抗逆性较强的优良禾本科植物与配套的栽培技术体系。

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在黄土高原南部半湿润易旱区以土垫旱耕人为土为供试土壤,进行大田试验,研究了不同栽培模式下花后去叶对产量及其构成的影响。结果表明,不同栽培模式对穗粒数、千粒重和籽粒产量的影响差异显著(P<0.05),集雨面栽培下穗粒数最多;全程覆膜、覆膜150 d和集雨面栽培模式千粒重显著高于常规栽培和三密一稀栽培;全程覆膜栽培下籽粒产量最高。去叶处理对穗粒数、千粒重和籽粒产量影响差异显著(P<0.05),各去叶处理穗粒数均大于对照。不同去叶处理千粒重均小于不去叶对照。不同去叶处理籽粒产量大小顺序为去全旗叶>对照>只保留旗叶>去1/2旗叶>去旗叶、倒二叶。去叶处理对穗粒数、千粒重和籽粒产量的影响因栽培模式不同而有差异。

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It is known that global climate changed from the early Tertiary “Green House” to the Quaternary “Ice House” of cyclic glacial-interglacial climatic changes. Since the middle Pleistocene, the climate cycles changed from 40 kyr to 100 kyr, and the amplitudes of climatic fluctuations increased significantly. Therefore, it is important to study the climate changes since the middle Pleistocene. The loess-paleosol sequence in China is considered as one of the most continuous continental records of the last 2.58 Ma. Paleoclimatic and environmental changes have been widely extracted through various climatic parameters. However, the history of paleovegetation on the Loess Plateau still remains unclear. Did an extensive broadleaf forest ever exist on the Loess Plateau? Pollen preserved in the loess and paleosol provides a direct record for vegetation and paleoenvironmental change on the Plateau. However, because it is difficult to extract sufficient pollen grains from loess, the pollen record since the middle Pleistocene especially in the central part of the Chinese Loess Plateau has not been well studied. So we preliminarily focus on the palynological records of the loess-paleosol sequence spanning the last 630 kyr at Luochuan and aim to understand the evolution of vegetation and climate change on the Chinese Loess Plateau. The main results and conclusions are as follows: 1. The palynological results show that the grassland has been a dominant vegetation in the Luochuan area since 630 kyr, even during the intervals of relatively warm and wet climatic conditions. 2. The pollen concentration of Luochuan section sharply decreases from the bottom of S1 to downward depth. This decrease can be attributed to depositional environment rather than climate change. In loess, not only oxidation, but also the PH of deposits and bacteria or fungi have been able to degrade sporopollenin. 3. The paleoclimatic condition during S4 stage, characterized with warmer condition during the early stage, was warmer and wetter than that during S5 in Luochuan area. Paleoclimate was warmer and wetter during the early stage of S5 and became colder and drier later. The special pedogenic features of S5-I can be attributed to a prolonged pedogenic duration rather than a warm-wet climate. 4. Evidence from pollen assemblage suggests that the Holocene vegetation has been affected by human impacts, especially after the Yangshao Culture. 5. The present steppe environment on the loess plateau is mainly due to natural conditions. Temperature, seasonal precipitation and soil structure are three important factors which control the vegetation type. 6. The vegetation on the loess plateau is characterized with zonal or azonal distribution. So local conditions should be taken into account when recover natural vegetation. Finally, the restoration and reconstruction of ecosystem on the loess plateau area should be focused on planting grassland rather than forests.