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771.
772.
我国化肥和农药非点源污染状况综述 总被引:3,自引:0,他引:3
徐谦 《生态与农村环境学报》1996,(2)
从农田排水与径流对地表水体的污染,渗漏对地下水体的污染和生态系统内部结构破坏加剧污染物流失等3个方面综述了我国近年来在化肥、农药非点源污染调查与研究方面取得的成果。 相似文献
773.
施氮对植物生长、硝态氮累积及土壤硝态氮残留的影响 总被引:14,自引:2,他引:14
施用N肥可提高叶类蔬菜的产量,但施用过量也会造成土壤N污染。为了研究当年施肥量对作物硝态氮累积及土壤无机氮残留量的影响,采用土壤盆栽试验,研究了5个施氮水平下3种叶类蔬菜(油菜、小白菜、菠菜)的生长、硝态氮累积和土壤硝态氮残留的变化。结果表明,施氮过高抑制了植物的生长,其中对菠菜的抑制作用最强。3种蔬菜硝态氮累积对施N的反应不同,油菜在施N0.40g时硝态氮含量达到最高,为N1742.2μg·g-1FW;小白菜在0.60g最高,为N1635.6μg·g-1FW;而菠菜则在0.80g最高,为N865.2μg·g-1FW。施N量与土壤硝态氮残留量之间呈显著正相关关系,说明施氮量越高土壤中硝态氮的残余就越大,对土壤的污染就越严重。 相似文献
774.
水肥耦合效应对保护地土壤硝态氮运移的影响 总被引:2,自引:0,他引:2
采用二次回归正交旋转组合设计,研究了水肥耦合效应对保护地土壤硝态氮运移的影响。结果表明,0—20cm土层硝态氮含量主要受灌水和施氮的影响,且灌水影响程度大于施氮,灌水与0—20cm土层硝态氮含量呈负相关,而与施氮呈正相关。20—40cm土层和40—60cm土层硝态氮也主要受灌水和施氮的影响,但施氮影响程度大于灌水。灌水和施氮对0—20cm土层硝态氮含量影响有相互拮抗作用。施磷对3个层次土壤硝态氮含量影响都很小。 相似文献
775.
SPACSYS: Integration of a 3D root architecture component to carbon, nitrogen and water cycling—Model description 总被引:1,自引:0,他引:1
L. Wu M.B. McGechan N. McRoberts J.A. Baddeley C.A. Watson 《Ecological modelling》2007,200(3-4):343-359
It is an ongoing challenge to develop and demonstrate management practices that increase the sustainability of agricultural systems. Soil carbon and nitrogen dynamics directly affect soil quality, crop productivity and environmental impacts. Root systems are central to the acquisition of water and nutrients by plants, but are also a major pathway for the inputs of carbon and nutrients to soil. The complexity of both biotic and abiotic interactions, combined with stochastic changes in root architecture, makes it difficult to understand below-ground dynamics on the basis of experimentation alone. The integration of dynamic models of above-ground growth, three-dimensional root system demography, and interactions between plants and the environment, into one single model is a major challenge because of the complexity of the systems.In order to understand the interaction between a plant and the environment, it is advantageous to develop a model framework to integrate submodels that simulate various plant and environmental components. The objective of this paper is to outline a mechanistic and process-based model, which is capable of simulating interactions among environmental conditions around plants, plant growth and development, nitrogen and carbon cycles, with a three-dimensional root system submodel as an interface.The model presented in this paper is a mixed dimensional, multi-layer, field scale, weather-driven and daily time-step dynamic simulation model. The current version includes a plant growth and development component, a nitrogen cycling component, a carbon cycling component, plus a soil water component that includes representation of water flow to field drains as well as downwards through the soil layers, together with a heat transfer component. The components themselves and linkage among components are designed using object-oriented techniques, which makes the model robust, understandable and reusable. The components are implemented in the C++ programming language, and inputs and outputs of all components are organised as a database in either Microsoft® SQL Server 2000, Access 2000 or MySQL5.0. Root architecture is visualised by using the OpenGL graphics system. Preliminary validation with two separate experimental datasets shows that the model can reasonably simulate root systems, nitrogen cycling, water movement and plant growth. 相似文献
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778.
The spatial distribution patterns of the nitrogen and phosphorus input/intake amounts in crop production within two small basins are examined, based upon a cropping unit distribution map that is obtained from remote sensing data analysis. Firstly, we examine the availability and suitability of approaches to the spatial distribution analysis of cultivation patterns classified from material flow characteristics of crop production using seasonal remote-sensing data. Secondly, material flow units in crop production are grouped according to the cultivation patterns obtained from the remote-sensing data analysis. Consequently, the spatial patterns of the amounts of both nitrogen and phosphorus inputs/intakes through crop production on farmland are examined and their spatial distribution maps are prepared according to the material flow units. In addition, we developed a nitrogen flow and runoff model and the model is simulated based on the examination of the results of spatial distribution patterns of the material flow units. The annual nitrogen runoff from small catchments, where various crops are cultivated, varies from 2.7 kg ha–1 year–1 to 108 kg ha–1 year–1 and the annual balanced losses of nitrogen in small catchments varied from –30 kg ha–1 year–1 to 101 kg ha–1 year–1. Also, the monthly changes in soil nitrogen of each material flow unit is estimated at –55 kg ha–1 as a maximum decrease and 114 kg ha–1 as a maximum increase. These results indicate that the spatial distribution patterns of nutrient input and intake through agricultural activities should be considered when analyzing the material flows and nutritient movement in soil–water systems in rural areas for watershed environmental control and regional agricultural management. 相似文献
779.
1991年在潮汕地区进行的水稻高产经验调查结果表明:(1)改善土壤环境、培育肥沃深厚的土壤、提高地力产量,是水稻高产的前提。高产田在植稻前土壤的有效氮(碱解N,电脑推荐施肥法)含量平均为103(±7)mg kg~(-1),有效磷(P_2O_5,MⅢ法)为40(±10)mg kg~(-1),有效钾(K_2O,MⅢ法)为150(±59)mg kg~(-1)。具有这种养分含量的稻田在当季不施肥的地力产量平均占82(±5)%,连续两季不施肥的仍占76(±6)%。(2)增施有机肥。施用量一般占施肥总量(N+P_2O_5+K_2O)的30—40%。化肥氮的施用遵循“前足、中促、后壮”的原则。(3)应用“健身栽培”、肥水促控等措施来控制水稻的最高苗数、提高成穗率和稻谷结实率。(4)延长功能叶的寿命,收获期每株水稻的青叶数保持在3片以上。 相似文献
780.
利用污水处理厂脱水后的污泥,经粉煤灰水分调节后进人动态堆肥装置,好氧发酵成为性状良好的腐殖颗粒,然后经过一定工艺制成一种有机-无机复合化肥,其N、P、K含量达到25%,有机质含量大于30%,含水量小于10%,pH值6~8。将化肥用在农田的水稻种植,水稻的亩产量增产11.4%,各项指标均符合国家标准。 相似文献