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1.
华北平原冬小麦/夏玉米轮作体系土壤硝态氮的适宜含量   总被引:19,自引:0,他引:19  
采用冬小麦季不同施氮处理(夏玉米季不施氮)研究了华北平原冬小麦/夏玉米轮作体系夏玉米季土壤硝态氮的适宜含量.结果表明:在播前土壤无机氮含量较高的条件下,冬小麦季施用150kgN.hm-2即可满足冬小麦/夏玉米两季作物的氮素需求;各氮肥处理在冬小麦季的氮肥施用当季的利用率仅为11%~23%,在夏玉米季氮肥残效利用率则高达30%~52%.当夏玉米播前0~90cm土层硝态氮含量达到82kg.hm-2时,无需施氮即可保证夏玉米十叶期的生长,达到151kg.hm-2时,无需施氮即可保证整个生育期的生长.夏玉米十叶期和收获后0~90cm土层硝态氮含量低于46和65kg.hm-2时,则影响作物正常生长.综合考虑产量和环境效应,冬小麦/夏玉米轮作体系中0~90cm土层硝态氮含量应控制在65~151kg.hm-2之间.  相似文献   

2.
华北平原典型农田氮素与水分循环   总被引:9,自引:0,他引:9  
华北平原近几十年的粮食生产伴随着强烈的地下水开采和化肥投入.高强度的农业活动改变了农田生态系统原有的物质循环和能量过程,同时给地区水土资源乃至粮食安全带来潜在的风险.本文通过对近20年有关华北平原冬小麦-夏玉米典型农田氮素循环、水分循环研究的分析,并结合气象数据及田间试验观测结果,综合计算得到该一年两熟轮作农田生态系统氮水循环的主要通量.在氮素循环方面,华北平原小麦-玉米轮作体系农田每年经由化肥施入的氮素约为523 kg N·hm-2,有机肥施入74 kg N·hm-2,大气沉降23 kg N·hm-2,灌溉水带入12 kg N·hm-2,共632 kg N·hm-2;在主要的氮素输出项中,作物吸收289kg N·hm-2,土壤残留77 kg N·hm-2,淋失到根区外104 kg N·hm-2,氨挥发52 kg N·hm-2,硝化-反硝化过程损失10 kg N·hm-2,共计532 kg N·hm-2.由于各研究案例本身以及综合分析时纳入的不确定性,致使氮素收支并不平衡.在水分循环方面,年平均降水量557 mm,灌溉量340 mm,蒸散约762 mm,根区向下的入渗量约135 mm.鉴于氮水平衡过程的不确定性,应尽快开展多学科并举的大型农田氮水耦合试验研究,揭示氮素与水分在土壤-植物-大气系统的运移转化规律,以及两者相互影响制约的机制和特定生理化学过程的临界点/阈值的确定,以实现水土资源的可持续利用.  相似文献   

3.
Wang HX  Li YY  Ren TZ  Pang HC 《应用生态学报》2011,22(7):1759-1764
在华北平原黑龙港流域对冬小麦实行3种灌溉模式,研究了不同灌溉模式对冬小麦-夏玉米产量、耗水特性和水分利用效率的影响.结果表明:浇底墒水+拔节水处理(W2,75 mm+90 mm)和浇底墒水+拔节水+灌浆水处理(W3,75 mm+90 mm+60 mm)周年总产量均显著高于只浇底墒水处理(W1,75 mm),增幅分别为8.7%和12.5%.冬小麦全生育期对土壤水的消耗随灌溉量的增加而减少,夏玉米季总耗水量随冬小麦季灌溉量的增加而增加.W2处理冬小麦水分利用效率(WUE)比W3处理高11.1%,而其夏玉米水分利用效率(WUE)与W3处理差异不显著.W2和W1处理的周年水分利用效率(WUET)分别为21.28和21.60 kg.mm-1.hm-2,比W3处理分别高7.8%和9.4%.综合周年产量、耗水量和水分利用效率,W2是较好的节水丰产灌溉模式.  相似文献   

4.
白天骄  孙才志 《生态学报》2018,38(17):6314-6325
促进我国整体水资源利用率和水环境质量的提升,已成为当前亟待解决的问题。为探究生产要素和其他传统因素对人均水资源环境差异的影响,基于对中国31省区(港、澳、台尚未统计) 2000—2014年人均灰水足迹的测算,应用Theil指数和扩展的Kaya恒等式对其区域差异及驱动因子进行探究。结果表明:1)近年全国人均灰水足迹差异缓幅波动,组间差异指数逐渐提升,组内差异为总体差异的主要来源,西部地区组内差异最大。2)在单一要素方面,资本深化和技术效率为全国差异的主导因素,也分别为中、东部组内差异的主导因素;经济活度对各类差异的驱动效应最小,且西部除该效应外,都为驱动差异的重要因素。3)相互作用成分中,除西部资本产出效应与单位GDP灰水足迹相互作用的贡献值最高外,其他地区资本深化效应与单位资本存量灰水足迹相互作用的贡献较大。在技术效率效应与环境效率效应相互作用方面,技术效率的提升可以带动东、西部灰水足迹所占比重下降和中部灰水足迹比重提高。经济活度效应与就业人口人均灰水足迹相互作用的贡献最小。  相似文献   

5.
在华北平原灌溉区,采用冬小麦 夏玉米周年轮作田间试验,研究麦季牛场肥水灌溉对冬小麦和夏玉米产量、磷吸收量、磷累计利用率及土壤积累的影响.结果表明:麦季肥水灌溉能显著提高冬小麦和夏玉米产量,冬小麦产量随肥水带入磷的增加先增加后降低,肥水灌溉带入137 kg P2O5·hm-2时冬小麦产量最高,磷的当季利用率较高,分别为7646.4 kg·hm-2和24.8%,肥水灌溉带入过量磷会降低冬小麦产量和磷当季利用率;夏玉米产量和磷素吸收量随冬小麦季肥水灌溉带入磷量增加而增加,后季夏玉米产量增加2222.4~2628.6 kg·hm-2,磷吸收量增加13.9~21.1 kg·hm-2.农民习惯施肥处理夏玉米当季施磷88 kg P2O5·hm-2时,与不施肥处理相比,夏玉米产量增加2235.0 kg·hm-2.随着牛场肥水灌溉年限的推移,作物增产效果逐渐明显,冬小麦 夏玉米轮作体系作物累计磷利用率逐年升高,6季作物收获后,磷累计利用率达40.0%~47.7%.试验条件下,
冬小麦 夏玉米轮作体系进行2次肥水灌溉是较经济安全的灌溉模式.  相似文献   

6.
中国省际灰水足迹测度及荷载系数的空间关联分析   总被引:7,自引:0,他引:7  
借鉴Hoekstra等提出的灰水足迹计算公式,从农业、工业及生活三方面计算了1998—2012年中国31个省市(自治区)的灰水足迹及其灰水足迹荷载系数。结果表明:1研究期间全国灰水足迹呈现波动趋势,1998年至2006年的灰水足迹呈现波动上升趋势;2007年开始,全国灰水足迹呈现下降趋势;农业在总灰水足迹的贡献率最高、工业最低;231个省市(自治区)15a灰水足迹荷载系数整体呈现小幅波动趋势。在全国内部也存在着明显的地区差异,大体分为5类,分别为高荷载地区、较高荷载区、中度荷载区、较低荷载区、低荷载区。3借助全局与局部空间自相关对全国31个省市(自治区)灰水足迹荷载系数进行空间关联格局分析可知,中国省级灰水足迹存在空间集聚现象且集聚现象逐渐减弱,其中H-H集聚区主要集中在华北地区,L-L集聚区主要集中在南方与青藏地区。通过全国灰水足迹测度与灰水足迹荷载系数空间关联格局分析为灰水足迹分析提供新的研究思路同时为区域可持续发展提供理论支持。  相似文献   

7.
节水栽培冬小麦对下层土壤残留氮素的利用   总被引:8,自引:0,他引:8  
吴永成  周顺利  王志敏  张霞 《生态学报》2005,25(8):1869-1873
为了进一步明确华北地区冬小麦-夏玉米种植体系周年氮肥利用效率及其影响因素与机制,试验在大田和原状土柱条件下进行了深层土壤放置15N标记氮肥试验,重点研究节水栽培冬小麦对夏玉米生育期淋洗到下层土壤的氮素利用能力。试验结果表明,大田条件下冬小麦根系空间分布与夏玉米存在明显差异,冬前苗期根系下扎深度可达1.0m,开花期最大根深已经超过2.0m。而且,小麦节水栽培(春季不灌水、春季灌2次水)相对于传统充分灌水模式(春季灌4次水)明显提高了根群中的下层根系比例。大田春不灌水和春灌2水条件下,冬小麦对于100~200cm深层土壤放置的15N标记氮肥均能吸收利用。土柱条件下15N标记氮肥试验进一步验证了春灌2水条件下小麦对深层土壤氮素的吸收作用,并表明植株对100~110cm、120~130cm、140~150cm各层土壤标记15N的回收率分别为16.26%、7.33%和4.38%。研究表明,节水栽培促进冬小麦根系深扎,较多的深层根系增强了小麦对深层土壤氮素的吸收和利用能力,有利于截获夏玉米季淋溶到下层土体的肥料氮,从而可减少肥料氮损失。  相似文献   

8.
李胜楠  王远  罗进  蒋培培  陈华阳 《生态学报》2020,40(21):7952-7965
灰水足迹是稀释水污染物至达标需要的淡水体积,是评价水污染程度与水环境质量的重要方法,对灰水足迹进行核算与分析,可以促进福建省提高水环境质量,构建可持续的水生态环境。借鉴Hoekstra等提出的灰水足迹核算方法,对福建省及各地市2001-2017年的灰水足迹进行核算,对其时空变化特征进行评价并使用对数平均迪式指数分解法(Logarithmic Mean Divisia Index Method,LMDI)模型对灰水足迹变动的驱动因素进行分解。结果表明:a)总氮是决定灰水足迹总量的主要污染物,非点源污染是灰水足迹的最主要来源但占比由68.25%降至63.35%;b)福建省灰水足迹总量降低了9.58%,且各项指标都呈下降趋势,在空间上,灰水足迹总量及剩余灰水足迹东南多西北少,人均灰水足迹及灰水足迹强度东少西多;c)福建省灰水足迹变动的驱动因素中,经济因素是最大正向驱动因素,产生2932.96亿m3的贡献量,技术因素是最大负向驱动因素,产生-2630.31亿m3的贡献量。最后,针对福建省水污染问题提出建议:a)开展非点源污染防治专项;b)加快速度提高城镇生活污水处理水平;c)优化产业结构,提高灰水足迹效率;d)切实落实生态补偿制度,调动各市水环境保护积极性;e)加强环境监管力度,加大技术投入。  相似文献   

9.
土壤呼吸是陆地生态系统碳循环的重要过程,准确估算土壤呼吸对估算陆地生态系统碳源汇具有重要意义。通过在华北平原典型农田内开展土壤呼吸及其组分的原位观测实验,构建了适用于华北平原冬小麦-夏玉米轮种制农田生态系统的半经验半机理土壤异养呼吸和土壤自养呼吸模型。结果表明,冬小麦-夏玉米农田土壤异养呼吸模型可表达为土壤温度和土壤水分的函数,其中,土壤温度对土壤异养呼吸的影响适合用Arrhenius方程描述,而土壤水分的影响适合用对称的倒抛物线描述。验证表明,该模型的R2和RMSE分别为0.68和0.52μmol m-2 s-1。土壤自养呼吸模型包括维持呼吸和生长呼吸两个模块,其中,维持呼吸表达为土壤温度和叶面积指数的函数,其形式分别为Van′t Hoff指数方程和米氏方程;生长呼吸表达为总初级生产力与维持呼吸之差的线性函数。冬小麦季和夏玉米季土壤自养呼吸模型的结构相同,但是两种作物的模型参数差异较大。验证表明,冬小麦季土壤自养呼吸模型的R2和RMSE分别为0.64和0.50μmol m-2...  相似文献   

10.
范星  陈彬 《生态学报》2022,42(15):6368-6380
水足迹是评价人类活动对水资源开采和水环境污染程度的重要方法,对农作物生长过程的绿水足迹、蓝水足迹和灰水足迹进行量化和分析,可以为农业用水综合评价和用水管理提供指导。以三江平原为研究区域量化粮食作物生产水足迹的时空特征,揭示粮食生产对区域水资源的占用情况,并分析水足迹的影响因素。结果表明:(1)三江平原粮食生产水足迹总量在2005-2018年间呈显著增加趋势,其中绿水足迹、蓝水足迹和灰水足迹在水足迹总量中的占比历年平均为28%、8%和64%;(2)粮食生产水足迹空间差异明显,在地市尺度,佳木斯市水足迹最高,占三江平原总量的47%,在县区尺度,富锦市、依兰县和桦南县是水足迹热点地区;(3)只考虑蓝水足迹,粮食生产给三江平原水资源造成轻度压力,而同时考虑蓝水和灰水足迹,粮食生产给三江平原水资源造成重度压力;各地市间水资源压力有较大差异,其中佳木斯市负担了该区域将近一半的粮食产量,水资源压力最高,鹤岗市则水资源压力最低;(4)降雨量、灌溉水利用效率、化肥施用量、粮食种植结构和作物单产水平等都会影响粮食作物生产水足迹,其中蓝水足迹响应种植结构的变化最敏感,灰水足迹响应化肥施用量的变化最敏感,而水足迹总量响应作物单产水平的变化最敏感。因此,建议减少化肥施用量、提高作物单产水平和优化作物种植结构纳入区域水资源可持续管理之中。  相似文献   

11.
In the context of social responsibility and, of the directives aimed at an integral management of natural resources, the Water Footprint (WF) has been widely spread as an indicator that contributes to a safe and sustainable use of water. The purpose of this study was to determine the WF for rice production (WFR) in two rice-growing areas in Argentina: central-east Entre Ríos and Santa Fe. The calculation was made using the methodology proposed in The Water Footprint Assessment Manual, according to which the WF of a crop, in this case rice, represents the relation between the amount of water satisfying the evapotranspiration demand (CWU) and the field productivity. The WF has three components: green (WFgreen), associated with rain used by the crop (CWUgreen); blue (WFblue), related to underground or surface water that fulfils the evapotranspiration demand (CWUblue); and grey (WFgrey), related to the volume of water required to dilute the residues of pollutants generated from the crop production. To estimate the CWUblue and CWUgreen, a rice water balance model (RWM), specifically developed for continuous flooding irrigation, was applied. Based on daily data of precipitation, crop evapotranspiration and soil variables the model allows calculating gross irrigation depth, surface runoff due to precipitations, variation of water stored in the soil, and deep percolation. Four agricultural seasons were assessed: 2009/2010, 2010/2011, 2011/2012, and 2012/2013. In Entre Ríos, WF was 987 m3 ton−1 (44% WFgreen and 56% WFblue), whereas in Santa Fe it was 846 m3 ton−1 (36% WFgreen and 64% WFblue). In accordance with related work in the region, WFgrey was not considered. Although only CWU is part of the WF calculation, the other components of the water balance are necessary for rice production. The RWM model determined the consumptive use of the crop and distinguished blue water from green water, besides calculating the other parameters of the water balance. This made possible to show the inefficiencies in the system since precipitations are not fully used. The WFR, together with these components, is useful to make comparisons between different regions and it is a tool to promote water saving, provided that it is complemented with specific policies, such as the differential application of irrigation taxes or electric power rates.  相似文献   

12.
该试验在玉米单作茬口、玉米-花生间作茬口(间作茬口)、花生单作茬口共3种茬口,以及0 kg P_2O_5·hm~(-2)(P_0)和180 kg P_2O_5·hm~(-2)(P_1) 2个磷水平下,研究了间作茬口与施磷对冬小麦分蘖、叶面积指数(LAI)、干物质积累、光合特性及产量的影响机制,为玉米花生间作与小麦-玉米复种轮作提供理论依据。结果表明:(1)间作茬口较玉米茬口显著提高了冬小麦有效分蘖数、LAI、净光合速率和干物质积累量,并提高了冬小麦旗叶的SPAD值、CO_2饱和点、光饱和点及最大净光合速率(P_(nmax))、表观量子效率(AQY)、羧化效率(CE)、最大羧化速率(V_(cmax))、最大RUBP再生的电子传递速率(J_(max))和最大磷酸丙糖利用速率(V_(TPU)),且CE、V_(cmax)、V_(TPU)的增幅均达到显著水平(P0.05),有效改善了冬小麦产量构成,显著提高籽粒产量(P0.05)。(2)间作茬口较花生茬口提高了冬小麦乳熟期的P_(nmax)、AQY、CE,增加了穗粒数和粒重,提高了产量。(3)与不施磷相比,施磷180 kg P_2O_5·hm~(-2)显著促进间作茬口冬小麦生长,显著提高冬小麦旗叶的SPAD值、P_(nmax)、AQY、CE、V_(cmax)、J_(max)、V_(TPU)和籽粒产量(P0.05)。研究发现,间作茬口较玉米茬口能有效增强冬小麦旗叶表观量子效率和CO_2羧化能力,显著提高小麦花后光合能力,促进冬小麦生长,从而增加穗粒数、粒重和籽粒产量,且间作茬口结合施磷180 kg P_2O_5·hm~(-2)效果更好。  相似文献   

13.
Requirements for mitigation of the continued increase in greenhouse gas (GHG ) emissions are much needed for the North China Plain (NCP ). We conducted a meta‐analysis of 76 published studies of 24 sites in the NCP to examine the effects of natural conditions and farming practices on GHG emissions in that region. We found that N2O was the main component of the area‐scaled total GHG balance, and the CH 4 contribution was <5%. Precipitation, temperature, soil pH , and texture had no significant impacts on annual GHG emissions, because of limited variation of these factors in the NCP . The N2O emissions increased exponentially with mineral fertilizer N application rate, with =  0.2389e0.0058x for wheat season and =  0.365e0.0071x for maize season. Emission factors were estimated at 0.37% for wheat and 0.90% for maize at conventional fertilizer N application rates. The agronomic optimal N rates (241 and 185 kg N ha?1 for wheat and maize, respectively) exhibited great potential for reducing N2O emissions, by 0.39 (29%) and 1.71 (56%) kg N2O‐N ha?1 season?1 for the wheat and maize seasons, respectively. Mixed application of organic manure with reduced mineral fertilizer N could reduce annual N2O emissions by 16% relative to mineral N application alone while maintaining a high crop yield. Compared with conventional tillage, no‐tillage significantly reduced N2O emissions by ~30% in the wheat season, whereas it increased those emissions by ~10% in the maize season. This may have resulted from the lower soil temperature in winter and increased soil moisture in summer under no‐tillage practice. Straw incorporation significantly increased annual N2O emissions, by 26% relative to straw removal. Our analysis indicates that these farming practices could be further tested to mitigate GHG emission and maintain high crop yields in the NCP .  相似文献   

14.
In agroecosystems, temporal diversification creates a sequence of short-lived habitats through time. Crop species as well as the diversity of crops grown in sequence might affect soil biodiversity and nutrient cycling processes. In the present study, we focused on a long-term crop rotation established in 2006 in Lower Saxony, Germany on a Luvisol. Winter wheat (WW) and silage maize (SM) were grown in continuous cultivation as well as in rotations. WW rotations span up to six years (including silage maize, sugar beet, winter rape and/or grain pea). Over two years, microbial biomass carbon (MBC) as well as kinetics (Michaelis-Menten Vmax and Km) of extracellular hydrolytic enzymes (β-glucosidase (BG), N-acetyl-β-glucosaminidase (NAG) and acid phosphomonoesterase (AP)) were measured in topsoil (0–10 cm depth) three times during the growing season. Continuous wheat increased soil microbial parameters compared to continuous maize as indicated by the higher microbial biomass to soil organic carbon ratio and higher potential enzymes activities involved in the C- and N-cycles (Vmax of BG and NAG). The efficiency of these enzymes was lowest in continuous maize (highest Km of BG and NAG). Maize and sugar beet as preceding crop of WW significantly decreased MBC in the 1st year but not in the 2nd year WW. Sugar beet decreased BG activity as well as its substrate affinity (increased Km). The effect of sugar beet on MBC and enzyme kinetics depended on the preceding crop and lessened with grain pea as the preceding crop. Soil microorganisms in the wheat phase benefited from winter rape as the preceding crop, shown by an increased biomass and efficiency to turn over chitin and peptidoglycan (decreased Km of NAG). Differences between cultivated crops, cropping history and fluctuations within the year in soil microbial biomass and enzyme kinetics are shown.  相似文献   

15.
A field experiment was conducted under a wheat-maize rotation system from 1990 to 2006 in North China Plain (NCP) to determine the effects of N, P and K on yield and yield gap. There were five treatments: NPK, PK, NK, NP and a control. Average wheat and maize yields were the highest in the NPK treatment, followed by those in the NP plots among all treatments. For wheat and maize yield, a significant increasing trend over time was found in the NPK-treated plots and a decreasing trend in the NK-treated plots. In the absence of N or P, wheat and maize yields were significantly lower than those in the NPK treatment. For both crops, the increasing rate of the yield gap was the highest in the P omission plots, i.e., 189.1 kg ha−1 yr−1 for wheat and 560.6 kg ha−1 yr−1 for maize. The cumulative omission of P fertilizer induced a deficit in the soil available N and extractable P concentrations for maize. The P fertilizer was more pivotal in long-term wheat and maize growth and soil fertility conservation in NCP, although the N fertilizer input was important for both crops growth. The crop response to K fertilizers was much lower than that to N or P fertilizers, but for maize, the cumulative omission of K fertilizer decreased the yield by 26% and increased the yield gap at a rate of 322.7 kg ha−1 yr−1. The soil indigenous K supply was not sufficiently high to meet maize K requirement over a long period. The proper application of K fertilizers is necessary for maize production in the region. Thus, the appropriate application of N and P fertilizers for the growth of both crops, while regularly combining K fertilizers for maize growth, is absolutely necessary for sustainable crop production in the NCP.  相似文献   

16.
黄土高原冬小麦地N2O排放   总被引:1,自引:0,他引:1  
从2007年7月1日到2009年6月30日对黄土高原冬小麦地氧化亚氮(N2O)排放采用静态箱气相色谱法进行了为期2a 的监测。设置2个处理,有小麦田(有小麦生长),无小麦田(出芽初期拔去麦苗)。研究结果表明有小麦田、无小麦田N2O排放量年际变化不大。有小麦田年均的N2O 排放量为2.05 kg · N2O · hm-2 · a-1,无小麦田年均的N2O 排放量为2.28 kg · N2O · hm-2 · a-1 。在冻融交替期,施肥后、翻地后和降雨后无小麦田和有小麦田N2O排放明显增加,N2O的季节变化受到这些短期事件的显著影响;有小麦田N2O排放与地温(P<0.01),气温(P<0.01)和WFPS(P<0.05)显著相关,而无小麦田N2O排放与这些环境土壤因子都不相关;有小麦田和无小麦田两个处理土壤的WFPS通常都低于60%,可以推断在本地区,硝化反应是N2O的重要生成源。  相似文献   

17.
气候变化背景下松嫩平原玉米灌溉需水量估算及预测   总被引:2,自引:0,他引:2  
黄志刚  肖烨  张国  曹云  彭保发 《生态学报》2017,37(7):2368-2381
开展农作物需水规律研究对于干旱半干旱区域旱作物节水灌溉和水分管理实践具有重要意义。以松嫩平原玉米为研究对象,研究玉米生育期需水量规律及灌溉需水量。结果表明:(1)历史时期和未来气候变化情景下,松嫩平原玉米全生育期和L~(mid)时段灌溉需水量等值线沿西南—东北方向递减,其中全生育期和L~(mid)时段2000s灌溉需水量临界等势线(灌溉需水量为0的等势线)分别比1970s北移70.2km和53.4km,全生育期和L~(mid)时段2040s灌溉需水量临界等势线分别比2010s北移30.9km和55.2km。(2)历史时期和气候变化情景下玉米全生育期灌溉需水量随年代呈波动增加趋势,其中前者以29.1mm/(10a)速度增加,后者以17.5mm/(10a)速度增加。(3)未来温度和降雨量变化对玉米需水量的贡献率为波动上升趋势,与1970s相比,2000s温度和降雨量变化对玉米需水量的贡献率为22.1%,增加6.8亿m~3灌溉水量;2040s温度和降雨量变化对玉米需水量的贡献率为38.3%,增加12.6亿m~3灌溉水量。  相似文献   

18.
李想  韩智博  张宝庆  高超  贺缠生 《生态学报》2021,41(8):3067-3077
科学的灌溉制度是干旱半干旱地区农业生产的重要保障。黑河位于西北干旱区,是我国第二大内陆河,且当地中游农业灌溉和下游生态需水矛盾十分突出。利用DSSAT (Decision Support for Agro-technology Transfer)模型模拟了黑河中游地区玉米、小麦、油菜、马铃薯的生长情况,对比分析了四种作物生育期内需水量变化与当地降水条件、现行灌溉制度之间的差异。通过设置灌溉组合探究了四种作物最适宜的灌溉制度,并计算了优化灌溉制度下的节水潜力。结果表明:DSSAT模型通过参数校正与验证后,对四种作物生长过程模拟性能较好,产量标准化均方根误差(nRMSE)均低于15.0%,决定系数(R2)均达到0.65以上。缺水量模拟结果表明,四种作物生长季平均水分亏缺介于122.5-367.0 mm。通过调整灌溉制度,可使玉米、小麦、油菜、马铃薯的水分利用效率分别提高54.8%、25.0%、18.3%和51.3%,且产量变幅均低于5.0%,实现了高产节水的目的。在研究区实施最优灌溉制度,中游农业灌区每年可以节省8.1×108 m3的水资源量,用于支持下游生态保护。  相似文献   

19.
Soil nutrients and water have long been recognized as the main determining factors influencing agricultural productivity in rain-fed agriculture. Manure application and irrigation can increase crop yield when nutrients and water are deficient. Often effects of water and nutrients are closely related and can not be easily separated in actual production. Three years of experiment were conducted in northern part of black soil area of Northeast China to investigate the responses of photosynthetic rates and yield/quality of main crops, wheat (Triticum aestivum L.), maize (May zeas L.), soybean (Glycine max L. Merr.) to irrigation and manure application. Irrigation and manure application had no effects on photosynthetic patterns during reproductive development in crops, maximum photosynthetic rates were achieved by irrigation, and manure application maintained relatively higher photosynthetic rates after the peak. On average, higher photosynthetic rates with irrigation may contribute to higher yield in soybean but not in maize and wheat. Responses of crop yield and quality to manure application and irrigation varied in the crops. Soybean yield and quality was very sensitive to irrigation and manure application. The greater supply of nutrients with sufficient water, the higher the yield. However, the high-yield of soybean achieved was accompanied with a decline of seed protein content. Maize yield mainly depended on nutrients used not the water supply, irrigation resulted in higher water content in the seed of maize and lower grain protein content in wheat at harvest, which is detrimental to seed storage in maize and processing quality in wheat. In the northern part of black soil area in Northeast China, the management of manure is critical to improve crop production, the optimum management for maize and wheat production was to apply chemical fertilizer and manure without irrigation, but for soybean was to apply fertilizer and manure with irrigation.  相似文献   

20.
基于生态需水保障的农业生态补偿标准   总被引:1,自引:0,他引:1  
庞爱萍  孙涛 《生态学报》2012,32(8):2550-2560
面向流域农业需水和生态需水间的矛盾问题和协调发展的要求,提出了基于生态需水保障的农业生态补偿标准计算方法。其中考虑农业用水定额计算基于生态需水保障的农业用水短缺,引入水分生产函数模型建立保障生态需水量产生的农业用水短缺与产量损失间的关系,根据不同季节作物产量响应系数的变化,定量确定具有时间和等级差异性的农业生态补偿标准。以保障黄河口生态需水引起的山东引黄灌区农业损失补偿标准分析为实例,计算了冬小麦和夏玉米种植户不同等级的生态补偿标准。结论认为,农业生态补偿标准需根据不同的来水过程及生态需水等级确定,面积稳定和保障功能显著的粮食作物应作为补偿标准计算的依据。  相似文献   

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