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1.
侯建伟  段玉  张君  赵沛义  景宇鹏 《土壤》2018,50(1):79-85
马铃薯是内蒙古阴山北麓的主要农作物之一,优化马铃薯种植模式,可以提高马铃薯产量,遏制土壤肥力退化,促进农业可持续发展。本研究于2009—2014年进行了6 a的大田小区定位试验,研究了马铃薯与苕子或莜麦间作对土地生产力及水分利用效果的影响。结果表明:马铃薯/苕子和马铃薯/莜麦2种间作模式具有较强且程度相当的间作产量优势,土地当量比分别为1.59~2.24和1.56~2.22。间作并不会显著增加或降低作物的耗水量,马铃薯、苕子和莜麦于不同种植年的耗水量有差异,最大降幅分别可达25.1%、23.7%和25.5%。间作可显著提高间作系统的水分利用效率,具有显著的水分利用优势(水分当量比分别为1.59~2.01和1.55~2.24),且主要体现在苕子和莜麦作物上。此外,间作体系的水分利用效果还与当年的降雨量关系密切。综合分析认为,马铃薯间作有利于整个间作系统农田生产力和水分利用效率的提高,且对苕子和莜麦的提升效果更佳。  相似文献   
2.
县域“旱改水”项目遴选布局方法与实证研究   总被引:1,自引:0,他引:1  
从分析遂溪县"旱改水"建设适宜性和空间稳定性入手,提出了基于耦合协调度模型和冷热点分析方法的"旱改水"建设项目遴选布局方法。结果表明,遂溪县开展"旱改水"建设潜力较大,其中高、中适宜区占耕地总面积的81.08%,主要分布在中东部乡镇;稳定性与适宜性的空间分布差异显著,高稳定性地块主要集中在北坡镇和广前公司,在其余乡镇也有分布;容易改造地块占耕地总面积的41.04%,主要分布在北坡镇、界炮镇、杨柑镇和广前公司等,该类耕地自然禀赋较好、基础设施完备,并且与城镇、交通干线有一定距离,建设占用的可能性较小;"旱改水"建设适宜性和空间稳定性耦合协调的热点区主要分布在杨柑镇、北坡镇、界炮镇和广前公司等中部乡镇,是"旱改水"项目布局的优先选择区域;结合研究区实际,确定遂溪县"十三五"期间"旱改水"建设区总面积462.75 hm2。该研究为科学遴选、布局"旱改水"建设项目提供了方法借鉴。  相似文献   
3.
Soil moisture is the most critical limiting factor impacting yields of dryland winter wheat(Triticum aestivum L.) and it is strongly affected by tillage practice and sowing methods. This study was to assess the link between sowing method and tillage practice during summer fallow and their subsequent effect on soil moisture and grain yield. Furthermore, we sought to identify a more appropriate farming management practice for winter wheat production in Loess Plateau region of China. The experiment was conducted from 2011 to 2013, using a two-factor split plot design, including subsoiling(SS) or no tillage(NT) during summer fallow for main plots, and conventional drill sowing(DS) or plastic film drill sowing(FM) for subplots. Results showed that the maximum soil water storage(SWS) was under SS×FM treatment with values of 649.1 mm(2011–2012) and 499.4 mm(2012–2013). The SWS during the 2011–2012 growing season were 149.7 mm higher than that in the 2012–2013 growing season. And adoption of SS×FM significantly increased precipitation use efficiency(PUE) and water use efficiency(WUE) compared to other treatments for both seasons. Moreover, adoption of SS×FM significantly increased yield by 13.1, 14.4, 47.3% and 25.9, 39.1, 35.7% than other three treatments during the two growing seasons, respectively. In summary, combining subsoiling during summer fallow with plastic film drill sowing(SS×FM) increased SWS at sowing and effectively improved WUE, thus representing a feasible technology to improve grain yield of dryland winter wheat in the Loess Plateau of China.  相似文献   
4.
过量施氮、降雨变率大和水氮耦合差是渭北旱地春玉米生产中氮肥高效利用的主要难题。构建渭北旱地不同降雨状况下春玉米临界氮稀释曲线,分析采用氮营养指数NNI诊断和评价旱地玉米氮素营养状况的可行性,为实现旱地玉米因雨合理施氮提供理论依据。以郑单958和陕单8806为试验材料,设置5个施氮量处理, 2016—2017年5个施氮量处理分别为0、75、150、270和360 kg hm-2, 2018—2019年施氮量调整为0、90、180、270和360 kg hm–2,文中依次用N0、N1、N2、N3、N4表示。其中2016年和2018年降水状况表现为穗期多雨,花粒期干旱; 2017年和2019年降水状况表现为穗期干旱,花粒期多雨,利用4年田间定位施氮试验数据构建并验证2种降雨状况下旱地春玉米临界氮稀释曲线模型。结果表明:(1)增施氮肥显著提高了旱地春玉米地上部生物量和植株含氮量,不同施氮量处理间差异显著。2种降雨状况下春玉米临界氮浓度和地上部生物量均符合幂指数关系,但模型参数之间存在差异(a.穗期多雨:Nc=35.98DM–0.35;b.穗期干旱:Nc=35.04DM–0.23)。模型拟合的植株氮浓度和实际氮浓度线性相关,穗期多雨年RMSE和n–RMSE分别为1.03、5.75%,穗期干旱年分别为1.53、6.78%,模型均具有较好稳定性。(2)在试验施氮量范围内,不同生育时期NNI随氮肥用量增加而增大,不同降雨状况下最佳施氮量存在差异。渭北旱地玉米最适施氮方案为基施氮肥150~180kghm–2,穗期多雨年追施氮肥45~75kghm–2。(3)氮营养指数NNI与相对吸氮量(RNupt)、相对地上部生物量(RDW)和相对产量(RY)均极显著相关,穗期多雨年NNI为1.02时, RY获得最大值,为0.95;穗期干旱年NNI为1.08时, RY获得最大值,为0.92。本研究建立的旱地玉米临界氮稀释曲线和氮营养指数,能够精准预测2种降雨状况下旱地春玉米拔节期至完熟期的氮素营养状况,对玉米生育季氮诊断及指导精确施氮具有重要意义。  相似文献   
5.
Soil surface mulching and planting density regulation are widely used for effective utilization of limited rainwater resources and improvement of crop productivity in dryland farming.However,the combined effects of mulching type and planting density on maize growth and yield have been seldom studied,especially in different hydrological years.A field experiment was conducted to evaluate the effects of mulching type and planting density on the soil temperature,growth,grain yield(GY),water use efficiency(WUE)and economic benefit of rainfed maize in the drylands of northern China during 2015-2017.Precipitation fluctuated over the three years.There were four mulching types(NM,flat cultivation with non-mulching;SM,flat cultivation with straw mulching;RP,plastic-mulched ridge plus bare furrow;RPFS,plastic-mulched ridge plus straw-mulched furrow)and three planting densities(LD,low planting density,45.0×10^3 plants/hm^2;MD,medium planting density,67.5×10^3 plants/hm^2;HD,high planting density,90.0×10^3 plants/hm^2).Results showed that soil temperature was higher with RP and lower with SM compared with NM,but no significant difference was found between RPFS and NM.More soil water was retained by soil mulching at the early growth stage,but it significantly varied at the middle and late growth stages.Maize growth was significantly improved by soil mulching.With increasing planting density,stem diameter,net photosynthetic rate and chlorophyll content tended to decline,whereas a single-peak trend in biomass yield was observed.Mulching type and planting density did not have significant effect on evapotranspiration(ET),but GY and WUE were significantly affected.There were significant interacting effects of mulching type and planting density on biomass yield,GY,ET and WUE.Compared with NM,RPFS,RP and SM increased GY by 57.5%,50.8%and 18.9%,and increased WUE by 66.6%,54.3%and 18.1%,respectively.At MD,GY increased by 41.4%and 25.2%,and WUE increased by 38.6%and 22.4%compared with those of at LD and HD.The highest maize GY(7023.2 kg/hm^2)was observed under MD+RPFS,but the value(6699.1 kg/hm^2)was insignificant under MD+RP.Similar trends were observed for WUE under MD+RP and MD+RPFS,but no significant difference was observed between these two combinations.In terms of economic benefit,net income under MD+RP was the highest with a 9.8%increase compared with that of under MD+RPFS.Therefore,we concluded that RP cultivation pattern with a suitable planting density(67.5×10^3 plants/hm^2)is promising for rainwater resources utilization and maize production in the drylands of northern China.  相似文献   
6.
A primary driver of the wheat yield gap in Australia and globally is the supply of nitrogen (N) and options to increase N use efficiency (NUE) are fundamental to closure of the yield gap. Co‐application of N with phosphorus (P) is suggested as an avenue to increase fertiliser NUE, and inputs of N and P fertiliser are key variable costs in low rainfall cereal crops. Within field variability in the response to nutrients due to soil and season offers a further opportunity to refine inputs for increased efficiency. The response of wheat to N fertiliser input (0, 10, 20, 40 and 80 kg N ha‐1) under four levels of P fertiliser (0, 5, 10 and 20 kg P ha?1) was measured on three key low rainfall cropping soils (dune, mid‐slope and swale) across a dune‐swale system in a low rainfall semi‐arid environment in South Australia, for three successive cropping seasons. Wheat on sandy soils produced significant and linear yield and protein responses across all three seasons, while wheat on a clay loam only produced a yield response in a high rainfall season. Responses to P fertiliser were measured on the sandy soils but more variable in nature and a consistent effect of increased P nutrition leading to increased NUE was not measured.  相似文献   
7.
Land degradation causes serious environmental problems in many regions of the world,and although it can be effectively assessed and monitored using a time series of rainfall and a normalized difference vegetation index(NDVI)from remotely-sensed imagery,dividing human-induced land degradation from vegetation dynamics due to climate change is not a trivial task.This paper presented a multilevel statistical modeling of the NDVI-rainfall relationship to detect human-induced land degradation at local and landscape scales in the Ordos Plateau of Inner Mongolia,China,and recognized that anthropogenic activities result in either positive(land restoration and re-vegetation)or negative(degradation)trends.Linear regressions were used to assess the accuracy of the multilevel statistical model.The results show that:(1)land restoration was the dominant process in the Ordos Plateau between 1998 and 2012;(2)the effect of the statistical removal of precipitation revealed areas of human-induced land degradation and improvement,the latter reflecting successful restoration projects and changes in land management in many parts of the Ordos;(3)compared to a simple linear regression,multilevel statistical modeling could be used to analyze the relationship between the NDVI and rainfall and improve the accuracy of detecting the effect of human activities.Additional factors should be included when analyzing the NDVI-rainfall relationship and detecting human-induced loss of vegetation cover in drylands to improve the accuracy of the approach and eliminate some observed non-significant residual trends.  相似文献   
8.
为探明耕作方式对豫西旱地麦-豆轮作田不同土层土壤理化特性和土壤酶活性的影响,设置免耕(NT)、旋耕(RT)和翻耕(PT)3种耕作方式,分析了定位试验9 a(2009—2019年)后小麦收获期的土壤容重、孔隙度和有机质、全氮、有效磷和速效钾含量,以及土壤脲酶、蛋白酶、转化酶和碱性磷酸酶活性,并运用相关分析和通径分析研究了土壤理化性质与土壤酶活性的关系。结果表明:不同耕作方式对土壤理化特性和酶活性具有显著的调控作用,其调控效应与其作业深度相关。RT较PT有利于降低0~15 cm土层但增加15~35 cm土层容重,NT较RT和PT显著降低了0~5、15~35、35~60 cm土层的土壤容重,土壤孔隙度变化规律与容重相反。各处理间土壤有机质、全氮、有效磷含量以及土壤脲酶、蛋白酶、转化酶和碱性磷酸酶活性在0~5 cm土层和15~35 cm土层规律一致,0~5 cm土层均以NT最优,分别较最低值处理(PT)显著提高16.7%、53.2%、15.9%、23.6%、18.0%、34.7%和29.0%;15~35 cm土层均以PT最优,分别较最低值处理(NT)显著提高18.3%、23.4%、53.4%、...  相似文献   
9.
于2017—2018年和2018—2019年,在西北中部旱作雨养农业区以冬小麦‘康庄974’为试验材料,设秸秆带状覆盖(SM)、地膜覆盖(PM)和无覆盖对照(CK)共3个栽培处理,分析不同覆盖方式对小麦灌浆期土壤水分和温度及抗氧化能力的影响,探讨花后干物质积累量和粒重形成的关系。结果表明,随生育期推进,花后旗叶相对含水量(RWC)逐渐降低,丙二醛(MDA)含量逐渐升高,且PM较SM降、升幅度明显。与CK相比,覆盖显著提高花后旗叶抗氧化酶活性,增加渗透调节物质含量;开花时间越长,SM抗氧化酶活性升高的幅度越大,而PM主要提高花后7 d旗叶抗氧化能力。SM和PM的粒重分别较CK增加14.3%和19.1%(P<0.05)。相关分析表明,土壤水分(SW)是影响旗叶生理活性的关键因子,提高SW,有利于增加RWC(r=0.84**),从而提高旗叶抗氧化能力,其中RWC和抗坏血酸酶(ASA)活性呈极显著正相关关系(r=0.82**);ASA活性和脯氨酸(Pro)含量呈极显著正相关关系(r=0.94**),和MDA含量呈极显著负相...  相似文献   
10.
不同地膜周年覆盖对冬小麦土壤水分及利用效率的影响   总被引:13,自引:0,他引:13  
为了探明不同地膜覆盖对早地冬小麦土壤水分及其利用效率的影响,选用普通地膜、生物降解膜以及液体地膜在陕西渭北旱塬旱作农田进行周年覆盖集雨栽培定位试验,研究了不同地膜周年覆盖对冬小麦不同生育时期土壤水分总贮量和不同土壤深度水分动态变化及其利用效率的影响.结果表明、周年覆盖地膜可提高土壤含水量,有利于土壤水库的扩蓄增容,并且...  相似文献   
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