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91.
针对目前北方许多大型灌区种植结构不合理、农业需水量偏大、水资源紧缺等问题,提出了一种基于作物空间信息特征的种植结构优化方法,通过调整种植结构和优化空间分布,减少农业需水量,提高农业效益。利用地统计学(GS)和地理信息系统(GIS)的空间处理能力,分区计算了灌区多年平均参考作物需水量(ET0)和作物需水量(ETc),并统计分区内作物单产和产值信息;构建了基于作物空间信息特征的多目标优化模型,设计了2种作物种植结构方案。结果表明,与传统多目标种植结构优化模型相比,基于作物空间信息特征的种植结构优化方法在节水效果和农业效益上都有一定的优势。  相似文献   
92.
采用参数估算法对2001~2013年鄱阳湖生态经济区农田生态系统的植被碳储量与碳密度进行测算。结果显示:该区农田植被碳储量与碳密度均呈现上升趋势;农田碳储量与碳密度的变化受农作物种植结构、产量及总播种面积的影响。由此可见,植被碳储量的变化对生态系统的固碳能力具有重要的影响,农田植被碳储量与碳密度在一定程度上的提高,具有碳汇作用。研究农田生态系统碳储量、碳密度对控制温室效应具有重要的参考意义。  相似文献   
93.
Abstract. Experiments were set up at two sites to measure nitrogen (N) leaching loss from applications of separated pig/cattle slurry and cattle farmyard manure(FYM), during winters 1990/91–1993/94 (site A) and from broiler litter and FYM, during winters 1990/91–1992/93 (site B). The manures were applied at a target rate of 200 kg ha-1 total N during the autumn and winter to overwinter fallow or top dressed onto winter rye. The total N in leachate was calculated from leachate N concentrations, in samples collected using ceramic cups buried at 90 cm, and an estimate of drainage volume. Nitrogen losses were greatest following manure applications in September, October and November but losses following applications in December or January were not significantly elevated above those from untreated controls. Losses were consistently lower from FYM than from broiler litter or separated slurry. The presence of a cover crop (winter rye) significantly reduced overall N leaching compared with the fallow, but only reduced the manure N leaching losses at one site during one winter when a high proportion of drainage occurred late. The incorporation of a nitrification inhibitor (DCD) with manures applied in October did not significantly reduce the manure N leaching.  相似文献   
94.
Abstract. Growing cover crops during the winter before spring-planted crops is often suggested as an effective method to decrease nitrate leaching. A four-course crop rotation (potatoes-cereal-sugarbeet-cereal) was followed through two rotations on a sandy soil in the English Midlands. Three management systems were imposed on the rotation to test their effects on nitrate loss. The effects of cover crops on nitrate leaching and crop yields were compared with the more conventional practice of over-winter bare fallow before potatoes and sugarbeet.
Cover crop N uptake was variable between years, averaging 25 kg ha−1, which is typical of their performance on sandy soils in the UK. The cover crops usually decreased nitrate leaching but their effectiveness depended on good establishment before the start of drainage. Over 7 years, cover crops decreased the average N concentration in the drainage from 24 to 11 mg l−1. Potato yield and tuber N offtake increased after cover crops. Ware tuber yield increased by an average of c . 8%; this was unlikely to be due to additional N mineralization from the cover crop because the potatoes received 220–250 kg fertilizer N ha−1, and non-N effects are therefore implicated. Sugar yield was not increased following a cover crop.
After 8 years of nitrate-retentive practices, there were no measurable differences in soil organic matter. However, plots that had received only half of the N fertilizer each year contained, on average, 0.14% less organic matter at the end of the experiment.  相似文献   
95.
农田生态系统水分循环与作物水分关系研究   总被引:8,自引:2,他引:8  
通过对我国不同类型农田生态系统水分循环与作物生产力关系的网络研究,探讨了我国主要类型地区小麦、玉米、大豆等几种主要作物的菡散耗水和需水规律、水分利用效率和作物水分生产函数,获得这些地区主要作物耗水需水特征及小麦水分生产函数。结果表明,在不同生态系统优化结构模式中作物与水分关系均得到极大改善,节约了作物用水,提高了作物产量和水分利用效率。  相似文献   
96.
低植酸作物的研究进展及展望   总被引:10,自引:7,他引:10  
任学良  舒庆尧 《核农学报》2004,18(6):438-442
对植酸的含量与贮存形式及其生理功能、低植酸作物的营养功能、低植酸突变体作物的培育与研究、低植酸突变的分子遗传学特性及其可能机理进行了综述 ,并对今后的工作提出了展望。  相似文献   
97.
Crop responses to annual compaction treatments (applied to whole plots) and management treatments to ameliorate compacted soil were determined in a field experiment on a Vertisol. Initially, all treatments except a control were compacted with a 10 Mg axle load on wet soil (26% gravimetric water content compared with a plastic limit of 22%). Annually applied axle loads of 10 and 6 Mg on wet soil (25–32% soil water) tended to reduce seedling emergence, grain yield (wheat, sorghum and maize), soil water storage and crop water use efficiency (WUE). Annual applications of an axle load of 6 Mg on dry soil (<22% soil water) had little effect on crop performance. Mean reductions in the yield of five crops (three wheat, one sorghum and one maize) in comparison with the uncompacted control were 23% or 0.79 Mg ha−1 (10 Mg on wet soil), 13% or 0.44 Mg ha−1 (6 Mg on wet soil) and 1% or 0.03 Mg ha−1 (6 Mg on dry soil). Maize grown in the fifth year of treatment application was most affected by compaction of wet soil, its WUE being reduced from 14.3 to 9.7 kg ha−1 mm−1 in response to an axle load of 10 Mg. Reduced WUE was associated with delayed soil water extraction at depth. A 3-year pasture ley was the most successful amelioration treatment. A wheat and a maize crop grown after the ley outyielded the control by 0.33 and 0.90 Mg ha−1, respectively. So the pasture not only ameliorated the initial compaction damage, with respect to crop performance, but resulted in improvements in two subsequent crops.  相似文献   
98.
作物节水灌溉需水规律研究   总被引:17,自引:4,他引:17  
基于节水灌溉条件下作物需水量试验资料,分析了控制灌溉和覆膜旱作节水灌溉的水稻需水规律以及节水高效灌溉模式下冬小麦、夏玉米和棉花作物的需水规律。结果表明,节水灌溉模式通过对水稻、冬小麦、夏玉米和棉花等作物产生的生长调控作用与补偿生长效应,使植株蒸腾量和棵间蒸发量较大幅度减少,各阶段需水量、需水强度和需水模系数均发生显著变化,形成了节水灌溉模式的主要农作物新的需水规律。可为节水灌溉制度的制定、节水型灌区动态配水及灌溉预报等提供科学依据。  相似文献   
99.
土壤酶活性对大田单季种植转Bt基因及转双价棉花的响应   总被引:6,自引:0,他引:6  
利用田间试验,以转Bt基因棉花Z30、转双价(Bt+CpTI)棉花SGK321及其相应的等价基因Z16、SY321作为供试对象,研究棉花种植后对土壤水解/氧化还原酶类活性的影响。结果表明,转Bt棉花及转双价棉花的种植对各种土壤酶活性的影响不一致,转Bt棉花及转双价棉花种植显著降低了土壤蛋白酶和脱氢酶活性(P 0.05)。转Bt棉花还显著降低了土壤脲酶活性(P 0.05);转双价棉花种植同时显著降低土壤磷酸二酯酶、β-葡萄糖苷酶、过氧化氢酶和硝酸还原酶活性(P 0.05)。棉花品种及转基因行为(转入基因类型)均未给土壤酸性磷酸单酯酶和FDA活性带来影响;土壤芳基硫酸酯酶所受的影响主要来自于棉花品种自身。  相似文献   
100.
干旱状况下小区域灌溉冬小麦农田生态系统水热传输   总被引:4,自引:2,他引:4  
该文采用涡度相关技术测定小区域灌溉冬小麦农田实际蒸散量和农田能量平衡各分量,分析表征农田地表获取能量再分配经典参数Priestly-Taylor系数(α=LE/LEeq)的变化特征。结果表明,在华北地区冬小麦返青至成熟期内,日变化过程中白天时间段内, Priestley-Taylor系数呈“U”型变化趋势,7︰00~18︰00 时刻内,α平均值为(1.324±0.334),正午前后保持在1.05~1.17之间。 在冬小麦生育期季节变化过程中,Priestley-Taylor系数(α)平均值为(1.473±0.454),远高于在湿润下垫面时(α=1.26)的数值,在抽穗开花期内土壤水分充足时α最大值为2.317,拔节时期土壤水分胁迫时α值为0.410。干旱少雨状况下,进行小面积充分灌溉时,由于存在农田热平流现象将导致过多的蒸发蒸腾水分耗散,降低农田灌溉水的利用效率。  相似文献   
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