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1.
通过盆栽试验,研究了3种灌溉方式(机械增氧滴灌、化学增氧滴灌、常规滴灌)对香芹生长特性的影响。结果表明,不同增氧滴灌方式具有不同的增氧效果;与常规滴灌相比,化学增氧滴灌与机械增氧滴灌分别使香芹可食用部分鲜质量平均提升39.84%和15.63%;在化学增氧滴灌的作用下,香芹不同生长阶段叶片叶绿素指数(CCI)、株高以及根茎叶的鲜质量较机械增氧滴灌和常规滴灌均有增加和提高。增氧滴灌促进了香芹植株的整体生长,并增强了香芹植株根茎叶的生理功能,其中化学增氧滴灌方式对香芹相关生长特性影响较为显著。  相似文献   

2.
加氧灌溉对烟草生长影响规律的研究   总被引:6,自引:0,他引:6  
加氧灌溉能很好地解决常规灌溉中“水氧矛盾”的问题,从而实现低水肥,高吸收,高产量,高品质的目标。通的对烟草进行机械加氧灌溉、化学加氧灌溉及常规对照三个处理进行试验研究,通过检测并分析烟草根系和农艺性状的相关指标,得出相对于常规对照处理,两种加氧灌溉处理均显著促进根系生长,增大叶面积,提高烟叶产量。机械加氧灌溉比化学加氧灌溉更有利于根系的扎深,化学加氧灌溉比机械加氧灌溉更有利于营养物质向地面植株的分配。  相似文献   

3.
加气滴灌对日光温室蓝莓叶绿素荧光特性的影响   总被引:2,自引:2,他引:0  
为探讨加气滴灌对蓝莓叶绿素荧光特性的影响,以日光温室内种植的3 a生蓝莓幼苗为试验材料,研究分析了不同滴灌模式下蓝莓叶片PSⅡ反应中心叶绿素荧光参数的响应机制。结果表明,采用加气滴灌可以提高蓝莓叶片PSⅡ反应中心最大荧光产量(F_m),且不同加气频率对叶片最大荧光F_m值具有显著影响(P0.05);与常规滴灌相比,在试验处理初期,加气滴灌对应的植株叶片PSⅡ反应中心潜在光化学活性(F_v/F_0)增幅较小,但随着时间的推移,其差异越来越明显;加气滴灌有利于提高蓝莓叶片PSⅡ光能捕获效率(F_v′/F_m′),同时提高了叶片实际光化学效率(Yield)和光化学猝灭系数(q P),且加气频率不同,叶片PSⅡ电子传递活性表现出较大的差异。加气处理对蓝莓叶片非光化学猝灭系数(NPQ)的影响较小,在整个试验期间均无显著差异。此外,根系活力分析结果表明,通过加气处理可以改善蓝莓根系生长环境,促进根系对养分的吸收。  相似文献   

4.
加气灌溉对温室番茄生长及产量的影响   总被引:2,自引:0,他引:2  
在地下滴灌条件下,作物根系集中在滴头周围生长,易于出现缺氧症状,针对这一问题,运用对照处理方法,研究了加气灌溉对番茄生长发育及产量等方面的影响,并对不同灌水水平下的加气灌溉进行了比较。结果表明,加气处理均可促进番茄生长提高产量,但优果率不高。其中,相较于对照,相同灌水量加气灌溉对开花时间影响不大,但增高13.90%,增...  相似文献   

5.
为探讨加气滴灌对蓝莓叶绿素荧光特性的影响,以日光温室内种植的3 a生蓝莓幼苗为试验材料,研究分析了不同滴灌模式下蓝莓叶片PSⅡ反应中心叶绿素荧光参数的响应机制。结果表明,采用加气滴灌可以提高蓝莓叶片PSⅡ反应中心最大荧光产量(Fm),且不同加气频率对叶片最大荧光 Fm值具有显著影响(Plt;0.05);与常规滴灌相比,在试验处理初期,加气滴灌对应的植株叶片 PSⅡ反应中心潜在光化学活性(Fv/F0)增幅较小,但随着时间的推移,其差异越来越明显;加气滴灌有利于提高蓝莓叶片PSⅡ光能捕获效率(Fv′/Fm′),同时提高了叶片实际光化学效率(Yield)和光化学猝灭系数(q P),且加气频率不同,叶片PSⅡ电子传递活性表现出较大的差异。加气处理对蓝莓叶片非光化学猝灭系数(NPQ)的影响较小,在整个试验期间均无显著差异。此外,根系活力分析结果表明,通过加气处理可以改善蓝莓根系生长环境,促进根系对养分的吸收。  相似文献   

6.
不同方式加气灌溉对温室芹菜生长及产量的影响研究   总被引:1,自引:1,他引:0  
【目的】探明不同地下灌溉方式加气灌溉对温室芹菜生长及产量的影响。【方法】采用温室小区试验,设计了2种不同地下灌溉方式(地下滴灌D和地下渗灌S),每种灌溉方式均设加气灌溉A和不加气灌溉N,以畦灌(CK)作为对照,共5个处理,研究了不同处理对温室芹菜生长发育、产量、土壤水分分布及灌溉水生产效率的影响。【结果】渗灌较地下滴灌有明显增产效果,不加气情况下显著增产10.6%;加气灌溉有一定增产效果,但与不加气灌溉下产量差异不显著。与常规地下滴灌不加气处理相比,渗灌加气灌溉增产12.8%,达到显著性水平(p0.01)。从土壤水分分布来看,在相同灌溉量情况下,渗灌0~20 cm土壤含水率较地下滴灌显著提高9.6%(p0.05),而20~40 cm土层则较地下滴灌土壤含水率降低12.9%(p0.05),地下渗灌的土壤水分分布更适合浅根性的温室芹菜根系水肥吸收。渗灌与地下滴灌的产量差异主要是株高差异所致,与芹菜的单株叶柄数关系不大。【结论】渗灌较地下滴灌显著提高灌溉水生产效率,且以渗灌加气灌溉的水分生产效率最高,渗灌结合加气灌溉可以实现温室芹菜节水高产。  相似文献   

7.
紫茄生长及养分利用对增氧地下滴灌的响应研究   总被引:2,自引:2,他引:0  
【目的】探究不同土壤条件下增氧灌溉方式对作物生长、产量及养分利用的影响。【方法】以郑州黄黏土、洛阳粉黏质壤土和驻马店砂壤土为供试土壤,以常规地下滴灌为对照(CK),设置曝气灌溉(AI)与化学增氧灌溉(HP)2种增氧方式,研究了温室紫茄生长及养分利用对增氧地下滴灌的响应。【结果】与CK相比,AI和HP处理提高供试土壤中紫茄净光合速率,黄黏土、粉黏质壤土和砂壤土下分别增加19.66%和8.49%、14.02%和7.51%、10.13%和5.91%。同时,AI和HP处理均显著促进根系生长、提升根系活力,进而提高紫茄的养分吸收效率、产量和水分利用效率(P<0.05)。其中,黄黏土下AI和HP处理作物氮吸收效率分别提高136.16%和65.43%,紫茄产量提高46.85%和28.49%,水分利用效率提高44.59%和27.38%;粉黏质壤土AI和HP处理作物氮素吸收效率分别提高141.23%和88.76%,产量分别提高41.52%和20.68%,水分利用效率提高41.06%和21.39%;砂壤土AI和HP处理作物氮素吸收效率分别提高112.60%和45.47%,产量提高49.86%和17.59%,水分利用效率提高48.81%和17.97%。【结论】曝气地下滴灌对紫茄生长、水分和养分利用的促进作用较为显著,而在不同土壤类型下,曝气地下滴灌对砂壤土紫茄产量增产及水分利用效率提升效果最优。  相似文献   

8.
增氧机增氧能力对比试验方法的探讨   总被引:1,自引:0,他引:1  
目前,增氧机型式多样,但对不同型式增氧机在作业中增氧性能的对比试验却未有规范的方法,这主要是因为鱼塘水中溶氧量受多种环境因素影响而不断发生变化,使机械增氧所产生的增氧效果较难进行定量分析,对此,我们通过两年多的摸索,得到一些体会和看法,现提出来供大家参考。  相似文献   

9.
不同增氧滴灌方式对蔬菜生长生理指标的影响   总被引:1,自引:0,他引:1  
为了研究不同增氧方式对盆栽小白菜生长生理指标的影响,以小白菜为供试作物,采用盆栽地下滴灌的方式,以普通地下滴灌作为对照(CK),设置循环曝气(MAI)、双氧水(H2O2)、纯氧扩散器曝气(OC)及射流振荡器曝气(FO)4个增氧灌溉处理.结果表明,增氧地下滴灌显著提高了土壤呼吸速率,处理MAI,OC和FO较对照处理分别增大了65.87%,66.79%和111.62%.增氧地下滴灌促进了小白菜的根系生长、光合作用、蒸腾速率和气孔导度,进而提高了小白菜的物质量积累和产量.与对照相比,处理MAI的地下部鲜质量增大了42.03%,地下部干质量增大了79.85%;处理MAI,H2O2,OC和FO的光合速率分别增大了868.62%,794.14%,778.67%和650.19%;处理MAI,H2O2和OC的气孔导度较CK增大了157.14%,128.57%和85.71%,蒸腾速率增大了55.61%,32.38%和19.58%;处理MAI和H2O2的产量分别增大了56.36%和38.72%.综上,增氧地下滴灌可增强小白菜根区的土壤呼吸作用,改善光合作用、蒸腾速率和气孔导度,提高了产量及水分利用效率.其中,循环曝气处理的改善效果最为显著.  相似文献   

10.
以超级稻“陵两优268”为试验材料,采用控制灌溉与增氧灌溉技术相结合,设置4组处理,分别为机械控制灌溉增氧(JX)、超微泡控制灌溉增氧(WP)、控制灌溉(CK)、淹水灌溉(YS),研究控制灌溉条件下增氧对水稻根系生长特征及水分利用效率的影响.结果表明:控制灌溉条件下增氧与淹水灌溉条件相比,有效节约用水最大达15.3%,有利于促进根系生长,增大了水稻的根部干物质质量,降低了水稻的茎叶干物质质量;提高了水稻根体积、根粗及干物质的质量,能显著增强水稻的根系活力,延缓水稻根系的衰老;产量上,控制灌溉增氧处理基本与淹灌处理接近,但结实率、千粒重、水分利用效率都优于淹灌处理.  相似文献   

11.
为了确定微咸水膜下滴灌棉花适宜的灌水量和利用方式,通过测坑试验探讨了微咸水膜下滴灌灌水量以及利用方式对棉花根层土壤盐分及产量的影响,结果表明:微咸水膜下滴灌灌水量为525.00~675.00 mm时棉花根层周围盐分积累较少,灌水量为475.00~564.29 mm时棉花产量较高;比起采用3.00 g/L的微咸水直接灌溉,1.08 g/L的微咸水直接灌溉时根系层土壤积盐范围较小且棉花产量较高,其次为1.08 g/L与3.00 g/L的微咸水轮灌。最后综合考虑确定出微咸水膜下滴灌棉花适宜的灌水量范围为525.00~564.29 mm,在淡水资源比较缺乏或没有淡水资源而微咸水资源较丰富的地区,可以考虑采用低矿化度的微咸水直接灌溉或将低矿化度与高矿化度的微咸水进行轮灌。  相似文献   

12.
Accurate crop development models are important tools in evaluating the effects of water deficits on crop yield or productivity and predicting yields to optimize irrigation under limited available water for enhanced sustainability and profitable production. Food and Agricultural Organization (FAO) of United Nations addresses this need by providing a yield response to water simulation model (AquaCrop) with limited sophistication. The objectives of this study were to evaluate the AquaCrop model for its ability to simulate wheat (Triticum aestivum L.) performance under full and deficit water conditions in a hot dry environment in south of Iran, to study the effect of different scenarios of irrigation (crop growth stages and depth of water applied) on wheat yield. The AquaCrop model was evaluated with experimental data collected during the three field experiments conducted in Ahvaz. The AquaCrop model was able to accurately simulate soil water content of root zone, crop biomass and grain yield, with normalized root mean square error (RMSE) less than 10%. The analysis of irrigation scenarios showed that the highest grain yield could be obtained by applying four irrigations (200 mm) at sowing, tillering, stem elongation and flowering or grain filing stages for wet years, four irrigations (200 mm) at sowing, stem elongation and flowering stages for normal years and six irrigations (300 mm) at sowing, emergence, tillering, stem elongation, flowering and grain filing stages for dry years. The least amount of irrigation water to provide enough water to response to evaporative demand of environment and to obtain high WUE for wet, normal and dry years were 100, 200 and 250 mm, respectively.  相似文献   

13.
基于SALTMOD模型的灌溉水矿化度对土壤盐分的影响   总被引:4,自引:0,他引:4  
以河套灌区沙壕渠灌域为例,运用SALTMOD模型探讨了区域尺度灌溉水矿化度对根层土壤盐分的影响。结果表明,根层土壤盐分随灌溉水矿化度的增大而增加,加大排水沟深度和提高渠道衬砌水平可缓解高矿化度灌溉水对土壤积盐的影响;采用地下微咸水和黄河水混合灌溉可有效控制盐渍化的发展,混合比在1∶1范围内时,根层土壤处于脱盐状态,最高脱盐率为23%,脱盐率高于引用黄河水灌溉的脱盐率(4%)。因此,适度利用地下微咸水灌溉,可有效的控制地下水位,节约淡水资源。  相似文献   

14.
This paper reports on results from a case study on water management within a traditional, falaj irrigation system in northern Oman. In the planning and design of regional irrigation development programs, generalized assumptions are frequently made as to the efficiency of traditional surface irrigation systems. Although qualitative accounts abound, very little quantitative research has been conducted on on-farm water management within falaj systems. Daily irrigation applications and crop water use was monitored during an 11-month period among 6 farm holdings at Falaj Hageer in Wilayat Al-Awabi. Contrary to the frequent assumptions that all surface irrigation systems incur unnecessarily high water losses, on-farm ratios of crop water demand to irrigation supply were found to be relatively high. Based on actual crop water use, irrigation demand/supply ratios among monitored farms varied from 0.60 to 0.98, with a mean of 0.79. Examination of the soil moisture budget indicates that during most irrigations of wheat (cultivated in the low evapotranspiration months of October–March) sufficient water is applied for the shallow root zone to attain field capacity. With the exception of temporary periods of high falaj delivery flows or periods of rainfall, field capacity is usually not attained during irrigations within the more extensive root zones of date palm farms. The data presented in this paper should provide a better understanding of water use performance by farmers within traditional falaj systems. Moreover, these data should also serve to facilitate more effective development planning for irrigation water conservation programs in the region.  相似文献   

15.
根灌高效节水农业新技术及其应用效果   总被引:9,自引:1,他引:9  
根灌是一种能将水直接灌到植物根部的高效节水农业新技术,具有抗旱、保水、施肥、改良土壤和防治地下病虫害五种功能。通过与滴灌技术的比较,根灌的优越性在于:治理戈壁沙漠效果显著;种植瓜菜节水高产;用于经济果林速生丰产;种植花卉节水省工。根灌适合于经济林、瓜菜和玉米等,在我国有着广阔的推广应用前景。  相似文献   

16.
Drip lines were located at distances ranging from 0 to 60 cm from one or both sides of a row of pepper plantlets, and we monitored the effects on their shoot development during 76 days from transplanting to full-size first fruits, on the final root system, and on the areal water and salt distributions in the upper 15-cm soil layer. The experiment was conducted in a greenhouse with a sandy soil, and excess fresh water (1.9 L d−1 per plant) was applied via short daily irrigations. In addition, the effects of watering distance and symmetry on the potential water uptake rate were analyzed with a coupled-source-sink steady flow and uptake model. Initial faster shoot growth with the one-side system and short distances progressively changed to faster growth with the two-side system and longer watering distances, with the optimum at 30-40 cm. These temporal changes are attributed to temporal changes in the root uptake of irrigation water: small plants with small root systems benefit from the larger water supply to a smaller soil volume provided by the one-side system, whereas larger plants with greater water needs could extract more irrigation water when they developed larger, split root systems in the two-side irrigation. Balanced root systems and maximal shoot growth can be obtained by starting the irrigation with a line on each side, near the plants, and moving the lines after a short time.  相似文献   

17.
紫花苜蓿每年刈割多次,其不同茬次间的耗水规律与灌溉制度存在较大差异.在鄂尔多斯市鄂托克前旗牧区节水灌溉示范区进行紫花苜蓿中心支轴式喷灌灌溉试验,利用水量平衡原理计算得出喷灌条件下不同茬次紫花苜蓿耗水量,研究分析不同茬次紫花苜蓿耗水规律、产量、水分生产率和灌溉制度.结果表明:研究区第一、二和三茬紫花苜蓿耗水量总体呈现递增趋势,而不同茬次紫花苜蓿耗水强度呈现低-高-低变化规律;不同茬次紫花苜蓿产量差异明显,其中第二茬紫花苜蓿产量最高,第一茬产量次之,第三茬产量最低,对应不同茬次紫花苜蓿水分生产率也呈现相同的变化规律;一般年份紫花苜蓿喷灌条件下推荐灌溉制度为全生育期灌水7次,灌溉定额270~315 mm,其中第一茬灌水3次,灌溉定额120~135 mm,第二茬灌水2次,灌溉定额75~90 mm,第三茬灌水2次,灌溉定额75~90 mm.该研究成果对于多茬牧草灌溉决策和牧区节水灌溉工程设计具有一定意义.  相似文献   

18.
不同水肥模式单季水稻生长特性研   总被引:1,自引:0,他引:1  
通过田间试验,对比不同灌溉模式与施肥方式的组合对单季水稻分蘖、根系生长、叶面积指数、产量和水分生产率的影响。研究表明:节水灌溉模式下(薄露灌、间歇灌),水稻分蘖优于常规灌溉,并且3次施肥处理的最终分蘖量好于2次施肥;水稻根系长度和根毛总量均大于常规灌溉;不同灌溉模式对水稻叶面积指数影响不显著;节水灌溉加3次施肥处理的实测产量略大于常规处理,每亩增产10~30kg。另外,节水灌溉模式可显著提高单季水稻的水分生产率,生育期用水可减少10%~30%。  相似文献   

19.
Supplemental irrigation of wheat with saline water   总被引:3,自引:0,他引:3  
In arid and semi-arid regions, both rainfall and surface irrigation water supplies are unreliable and inadequate to meet crop water requirement. Groundwater in these regions is mainly marginally saline (2-6 dS/m) to saline (>6 dS/m) and could be exploited to meet crop water requirement if no adverse effects on crops and land resource occur. The fear of adverse effects has often restricted the exploitation of naturally occurring saline water. The results reveal that substituting a part or all except pre-sowing irrigation with saline water having an electrical conductivity (ECiw) of 8 dS/m is possible for cultivation of wheat. Similarly, saline water with ECiw ranging between 8 and 12 dS/m could be used to supplement at least two irrigations to obtain 90% or more of the optimum yield. In low rainfall years, the use of such waters for all irrigations, except pre-sowing, produced more yield than skipping irrigations. Apparently, even at this level of osmotic salt stress, matric stress is more harmful. Thus, it would be interesting to use such waters for wheat production in monsoon climatic regions.  相似文献   

20.
以3年生分根盆栽皇家嘎拉苹果为试材,通过全部根系、3/4、2/4、1/4根系体积灌水4种处理研究了根系分区灌水苹果水分状况、光合能力、根系活力等生理变化及对枝叶生长和来年成花的影响。结果表明2/4、3/4根系灌水在整个生育期均能满足植株的水分需求,但仅1/4根系体积灌水在夏秋高温季节不能满足植株对水分的需求;减小灌水根系体积后,提高了根系活力;叶片Pn、Tr、Gs呈下降趋势,由于Tr较Pn下降幅度大,WUE提高;抑制了枝叶生长,来年开花株率、花序数量、坐果率均增加。  相似文献   

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