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201.
为了探明旱砂田西瓜产量、品质及氮肥利用率同步提高的最佳施氮量和种植密度,制定合理的栽培措施,本试验以中晚熟品种陇抗九号为试材,在砂田条件下设置了3个种植密度(9525、12120、16680株/hm2)和4个施氮水平(0、100、200、300 kg/hm2),研究了氮密互作对西瓜产量、品质和氮素利用率的影响.结果表明,种植密度和施氮量均显著影响西瓜产量及品质,但两者互作效应不显著,两因素中密度是导致产量变化的主导因素,西瓜产量为高密度>中密度>低密度,高密度处理的平均西瓜产量较中、低密度分别显著提高了23.46%和45.58%;而施氮量对西瓜品质的调控具有显著作用,施氮量在0~200 kg/hm2范围内,西瓜产量及品质随施氮量的增加而提高,之后有下降趋势,N200处理的西瓜含糖量较N0和N300分别显著提高了1.43%和1.92%,Vc含量分别提高了13.09%和8.42%.西瓜产量提高引起氮肥偏生产力和氮肥吸收利用率的协同提高.综合考虑产量、品质和氮素利用率等因素,在本试验条件下,砂田全膜覆盖栽培西瓜的适宜种植密度为16680株/hm2、适宜的施氮量为200kg/hm2,其西瓜产量、含糖量及氮肥吸收利用率分别为61754 kg/hm2、10.59%和22.29%.  相似文献   
202.
以免耕和翻耕稻田为研究对象,通过大田试验与室内分析,研究了不同耕作方式下稻田田面水和渗漏水的淋溶损失及其对环境的影响。试验共设4个处理,分别是免耕+不施肥(NT0)、翻耕+不施肥(CT0)、免耕+复合肥(NTC)和翻耕+复合肥(CTC)。结果表明,施磷肥显著提高稻田田面水以及渗漏水各形态磷浓度。施磷肥2d后田面水总磷(TP)浓度、颗粒态磷(PP)浓度和溶解磷(DP)浓度即达到最大值,此后由于水中颗粒或表土对田面水磷素的固定,磷素的淋失,水稻生长吸收及前期的稻田排水和灌水稀释,1周后迅速降低并趋于稳定;渗漏水TP浓度和溶解磷(RP)浓度在施磷肥2d后达到最大值,渗漏水TP浓度在施肥后一个半月达到最低值,而渗漏水RP浓度在施肥4d后就降低到最低值。处理NTC田面水TP、DP与PP显著高于处理CTC,而处理NT0与处理CT0之间无差异;与翻耕相比,免耕不影响渗漏水TP与RP浓度及磷下渗淋失。对田面水磷素及渗漏水磷素变化动态分析表明,施磷肥后的1周左右是控制磷素流失的关键时期。  相似文献   
203.
模拟降雨条件下坡地氮素流失特征试验分析   总被引:10,自引:0,他引:10  
通过模拟降雨试验,分别研究1.0mm/min和2.0mm/min雨强条件下,不同坡面上径流过程和土壤氮素流失特征。结果表明,在1.0mm/min雨强条件下,每个产流阶段径流变化量依次为18°>28°>21°,峰值出现时间依次为21°>18°>28°,径流峰值量依次为28°>18°>21°;硝态氮淋溶与土壤侵蚀同步进行;铵态氮流失量峰值的出现是坡面顶部和下部流失量的叠加结果,随后铵态氮流失量趋于降低;在2.0mm/min雨强条件下,每个产流阶段径流变化量不同,峰值出现时间依次为18°>21°>28°,径流峰值量依次为28°>21°>18°。硝态氮流失以泥沙携带为主,大坡度地表硝态氮流失量陡然增加;短时间内坡面表层土壤流失量显著增加,造成铵态氮流失量波动变化。在两种雨强条件下,累积径流流失量依次为28°>21°>18°;硝态氮是径流中全氮流失的主要形式;在整个降雨过程,全氮流失量表现为产流初期较低,中期增大,后期降低。各形态氮素累计流失量与径流累计流失量之间存在显著的线性关系。  相似文献   
204.
The transfer of heat and dissolved oxygen (DO) through water is important to understand the phenomenon of ponded water in a paddy soil. The heat from solar radiation is absorbed at the soil surface and transferred into the ponded water by convection. This study clarified the dynamics of DO, as well as the role of convection in water in DO transfer in the ponded water of a paddy field. DO concentration in the ponded water of a paddy field was measured in situ in the daytime and during the night. The results were confirmed in lab-scale model experiments. The DO concentration and temperature profiles in the ponded water of a lab-scale paddy field model were investigated under convective and non-convective conditions using solar radiation and infrared radiation, respectively. Under the ponded condition, solar radiation was absorbed at the soil surface whereas infrared radiation was absorbed at the water surface and thereby convective and non-convective conditions were generated, respectively. The diurnal variation in DO concentration was closely related to the intensity of solar radiation. Oxygen generation by micro-algae and its subsequent circulation by convection resulted in uniform DO concentration profiles, with super-saturated values in the ponded water in the daytime. Eventually oxygen was released to the atmosphere by deaeration until DO in water was depleted to the saturated level. During the night the oxygen moved from the atmosphere into the water surface by reaeration which depends on the oxygen deficit related to saturation. The oxygen deficit is caused by the respiration of microorganisms. The oxygen, that moved from the atmosphere to the water surface, was transferred to the soil surface by convection in the water layer. Thus convection plays an important role in the DO transfer in the ponded water of a paddy field. The DO dynamics is correlated with biological processes in the ponded paddy soil.  相似文献   
205.
To estimate the impact of water percolation on the nutrient status in paddy fields, the seasonal variations of the concentrations of cations, anions, inorganic carbon (IC), and of dissolved organic carbon (DOC) in percolating water that was collected from just below the plow layer (PW-13) and from drainage pipes at the 40 em depth (PW-40), as well as in irrigation water were measured in an irrigated paddy field. Total amounts of Ca, Mg, K, Fe, and Mn leached from PW-13 during the period of rice cultivation were estimated to range from about 390 to 770, 65 to 130, 33 to 66, 340 to 680, and 44 to 87 kg ha-1, respectively. Amounts of losses that were estimated from the differences between the input by irrigation water and the output by percolation water from the plow layer corresponded to 11 to 26, 22 to 47,5.9 to 12, and 13 to 26% of exchangeable Ca and Mg, amorphous Fe, and easily reducible Mn in the plow layer, respectively. The concentrations of Ca, Mg, K, Fe, and Mn in PW13 were higher than those in PW-40. The amounts of these nutrients that were retained in the subsoil between the 13 em and 40 em soil depth corresponded to 83, 86, 61, 99, and 89% of the amounts that percolated from the plow layer, respectively. Total amounts of IC and DOC that percolated from the plow layer ranged from 750 to 1,500 and 85 to 170 kg-C ha-1, which corresponded to 5.0 to 10.0% and 0.6 to 1.1% of the total carbon content in the plow layer, respectively. Eighty eight % of IC in the percolating water from the plow layer was also retained in the subsoil.  相似文献   
206.
The DNDC (DeNitrification-DeComposition)-Rice model, one of the most advanced process-based models for the estimation of greenhouse gas emissions from paddy fields, has been discussed mostly in terms of the reproducibility of observed methane (CH4) emissions from Japanese rice paddies, but the model has not yet been validated for tropical rice paddies under alternate wetting and drying (AWD) irrigation management, a water-saving technique. We validated the model by using CH4 and nitrous oxide (N2O) flux data from rice in pots cultivated under AWD irrigation management in a screen-house at the International Rice Research Institute (Los Baños, the Philippines). After minor modification and adjustment of the model to the experimental irrigation conditions, we calculated grain yield and straw production. The observed mean daily CH4 fluxes from the continuous flooding (CF) and AWD pots were 4.49 and 1.22?kg?C?ha?1?day?1, respectively, and the observed mean daily N2O fluxes from the pots were 0.105 and 34.1?g?N?ha?1?day?1, respectively. The root-mean-square errors, indicators of simulation error, of daily CH4 fluxes from CF and AWD pots were calculated as 1.76 and 1.86?kg?C?ha?1?day?1, respectively, and those of daily N2O fluxes were 2.23 and 124?g?N?ha?1?day?1, respectively. The simulated gross CH4 emissions for CF and AWD from the puddling stage (2 days before transplanting) to harvest (97 days after transplanting) were 417 and 126?kg?C?ha?1, respectively; these values were 9.8% lower and 0.76% higher, respectively, than the observed values. The simulated gross N2O emissions during the same period were 0.0279 and 1.45?kg?N?ha?1 for CF and AWD, respectively; these values were respectively 87% and 29% lower than the observed values. The observed total global warming potential (GWP) of AWD resulting from the CH4 and N2O emissions was approximately one-third of that in the CF treatment. The simulated GWPs of both CF and AWD were close to the observed values despite the discrepancy in N2O emissions, because N2O emissions contributed much less than CH4 emissions to the total GWP. These results suggest that the DNDC-Rice model can be used to estimate CH4 emission and total GWP from tropical paddy fields under both CF and AWD conditions.  相似文献   
207.
农田耕作措施对近地表风沙运动的影响   总被引:2,自引:2,他引:2  
我国北方传统耕作模式的犁耕、耙磨及磨平整地措施对农田近地表风沙活动影响显著。通过对春季半干旱沙区农田风沙活动的观测,本文对犁耕、耙磨磨平两种处理下近地表0~60 cm内输沙率和风沙流结构随田块长度的变化规律进行了研究。结果表明,耙磨磨平处理破坏了犁耕在农田地表形成的非可蚀性土块结构,使近地表0~60 cm内输沙率增大,在强沙尘事件中增加幅度可达数10倍。犁耕地表上输沙率随田块长度的增加呈指数关系递增,而耙磨磨平后风沙流发育的饱和路径长度减小,在强沙尘事件中近地表输沙率随田块长度的增加而递减。此外,上风向处犁耕地表低层输沙比例(Q0-10/Q0-60)小于耙磨磨平地表,且随田块长度的增加逐渐增大,而耙磨磨平后风沙流结构随田块长度的变化不大。  相似文献   
208.
华北低山丘陵区冬小麦田土壤呼吸变化规律及其影响机制   总被引:1,自引:0,他引:1  
利用2005年11月-2006年6月由Li-8100土壤呼吸自动观测系统及AR5土壤温度湿度自动观测系统观测数据,分析了华北低山丘陵区冬小麦田土壤呼吸变化规律及其影响机制。结果表明:(1)冬小麦返青前后的土壤呼吸速率(SRR)在晴或多云天气条件下都要高于阴天,SRR的日变化都表现为单峰变化趋势。(2)冬小麦生育期SRR的日际变化特征为:返青前SRR保持在较低水平,平均为0.63μmol.m-.2s-1;返青后SRR迅速增加,至抽穗期达到最大,此后保持稳定,平均为2.18μmol.m-.2s-1;收割后SRR降低。整个生育期SRR的平均值为1.28μmol.m-.2s-1。(3)冬小麦田浅层土壤温度(包括地表温度、地下5cm、10cm、15cm、20cm土壤温度,p<0.01)与SRR间都存在显著的指数关系,其中20cm土壤温度与SRR相关性最好,Q10值(5~20℃间气温每增加10℃呼吸增加的倍数)从表层至地下20cm依次为:2.09、2.29、2.39、2.51、2.63;土壤含水量过低对土壤呼吸有抑制,当土壤含水率在20%~30%时,SRR主要受土壤温度影响,与土壤含水量的关系不显著。  相似文献   
209.
高寒矮嵩草草甸地面热源强度及与生物量关系的初步研究   总被引:1,自引:0,他引:1  
在青藏高原海北高寒矮嵩草草甸地区,依据2002年涡度相关法观测的能量平衡各分量资料和6-10月植物地上、地下生物量测定值,分析了高寒矮嵩草草甸近地表热量平衡、地面热源强度的变化特征,讨论了地面热源强度与植物生物量季节变化过程中的相互关系。结果表明:在青藏高原海北高寒矮嵩草草甸地区,年内地面均为热源,热源强度季节变化明显,地面热源强度年平均为88.5 W/m2;地上生物量季节变化与热源强度具有显著的正相关关系,而地下生物量季节变化与热源强度关系不明显。  相似文献   
210.
试验采用裂区设计,以硝态氮和铵态氮两种氮素形态为主处理,5个供氮水平为副处理,在大田条件下研究了水田与旱地烤烟在团棵、旺长、脚叶采烤、腰叶采烤和顶叶采烤等5个生育期烟叶的总氮浓度、硝酸还原酶和谷酰胺合成酶活性的氮肥效应。结果表明,水田与旱地烤烟在各氮肥处理下团棵期烟叶的氮浓度最高,旺长期稍有下降,至脚叶采烤期则迅速降低;烟叶中的硝酸还原酶和谷酰胺合成酶活性从团棵到旺长期迅速升高,进入采烤后逐渐降低。水田烤烟烟叶总氮浓度和硝酸还原酶活性比旱地烤烟大,而谷酰胺合成酶则水田小于旱地,说明烤烟在水田状况下吸氮能力比旱地烤烟强;然而水田烤烟氮同化能力比旱地烤烟弱。试验结果还表明,水田与旱地烤烟烟叶的总氮浓度、硝酸还原酶和谷酰胺合成酶活性分别在09~0.kg/hm2和07~5.kg/hm2范围内随施氮量的增加而提高;由于土壤中铵态氮的转化与硝态氮淋溶损失,导致铵态氮的肥效优于硝态氮。  相似文献   
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