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751.
猪粪还田对土壤硝态氮淋失的影响研究——以黄灌区稻旱轮作制为例 总被引:2,自引:0,他引:2
宁夏引黄灌区是水污染严重地区之一,大部分排水沟水质属于劣五类,主要污染物是硝态氮与铵态氮.猪粪还田试验共有3个处理:传统施肥+空白(CK)、传统施肥+猪粪还田4500 kg/hm2(T1)和传统施肥+猪粪还田9000 kg/hm2(T2).采用树脂芯法测定了30,60,90cm土层的硝态氮淋失量.结果表明,30cm土层处,猪粪还田没有明显增加土壤硝态氮淋失.与对照(15.96±0.41) kg/hm2相比,T1(16.85±0.40) kg/hm2与T2(17.01±0.46) kg/hm2没有达到显著差异(P>0.05);60cm土层处理与对照也没有达到显著差异;90cm土层处的猪粪处理与对照达到显著差异,处理之间没有差异.猪粪还田有利于土壤有机质和总氮提高,30cm土层,与对照相比,T1和T2的有机质增加0.95g/kg和1.41g/kg,分别提高7.50%和11.13%;总氮增加0.06和0.16g/kg,分别提高7.72%和22.04%.猪粪还田提高了作物产量,水稻增产12.26%~11.56%,冬小麦产量提高9.32%~12.52%. 相似文献
752.
膜下滴灌棉田不同土层盐分变化及其对棉花生长的影响 总被引:3,自引:0,他引:3
研究选择两种不同盐分含量土壤(中度盐渍化EC25:4-7 dS.m-1和轻度盐渍化EC25:1-4 dS.m-1),通过对棉田整个生育期的土壤盐分含量测定,研究棉田不同土层盐分变化及其对棉花生长的影响。结果表明:两种不同盐分含量土壤,盐分降幅较大的在0-20、40-80 cm土层为膜下滴灌棉田盐分积聚区。整个生育期土壤盐分变化趋势相似,都表现为土壤盐分前期(现蕾期)快速下降后期有所增加;中度盐渍化和轻度盐渍化棉田的单株干物质积累量差异不显著,单位面积的干物质积累和籽棉产量差异显著,其主要原因是两种盐分土壤棉花的成活率差异较大。 相似文献
753.
通过在北京市野生动物救护中心构建表流湿地与潜流湿地相结合的复合人工湿地处理富营养化水体,研究该复合人工湿地对总氮(TN)、总磷(TP)及水体浊度的去除效果。结果表明:人工湿地对TP的去除效果好于对TN的去除效果,经过人工湿地处理的富营养化水体,表流湿地、潜流湿地和复合人工湿地对TP的平均去除率可分别达42%、55%、60%,对TN的平均去除率分别为27%、30%、34%,对水体浊度的平均去除率分别达43%、55%、75%。复合人工湿地对TP、TN以及浊度的去除效果受水体温度和溶解氧(DO)的影响,通过相关性分析发现,TP、TN和浊度的去除量与水体中的DO水平之间存在显著的负相关性,而与水体温度有正相关性,在显著性水平为0.05的条件下,相关系数分别为-0.829、-0.767、-0.765和0.674、0.757、0.774。复合人工湿地对TP、TN及浊度的去除率高于表流湿地和潜流湿地,表明复合人工湿地具有优于表流湿地和潜流湿地的整体性功能,能有效提高人工湿地对TN、TP以及浊度的去除率。 相似文献
754.
涔天河水库灌区土壤资源特点及其合理利用 总被引:1,自引:0,他引:1
彭佩钦 《长江流域资源与环境》1995,4(1):29-32
对涔天河水库灌区土壤资源现状,特点进行了调查研究,对土壤资源利用中存在的问题进行了剖析,并提出了合理利用土地资源,提高土壤生产力的措施。 相似文献
755.
Eugene W. Rochester Charles D. Busch 《Journal of the American Water Resources Association》1972,8(3):608-613
ABSTRACT In humid areas appreciable amounts of rainfall complicate irrigation scheduling. This rainfall tends to give supplemental water application a low priority. As a result irrigation may be delayed until there is not enough time to cover the crop area before some drought damage occurs. To improve the management of irrigation systems, a scheduling model has been developed. The model's water application decisions incorporate climatological records, soil-plant data, current pan evaporation and rainfall, the number of fields to be irrigated, and 5-day weather forecasts. The model updates the soil moisture conditions, predicts impending water depletion, and if supplemental water is needed both the field priority and amount to be applied is indicated for each of the next 5 days. Errors introduced through the use of forecasts and long-term pan evaporation records have been slight because of the tri-weekly updating. Also natural rains which restore the root zone to maximum water holding capacity prevent long-term bias. 相似文献
756.
757.
Claudia Ringler Nguyen Vu Huy Siwa Msangi 《Journal of the American Water Resources Association》2006,42(6):1465-1482
Abstract: Recent water sector reforms and increased scarcity and vulnerability of water resources, combined with declining public funding available for large scale infrastructure investment in the sector, have led to a greater awareness by the Government of Vietnam for the need to analyze water resource allocation and use in an integrated fashion, at the basin scale, and from a perspective of economic efficiency. In this study we focus on the development, application, and selected policy analyses using an integrated economic hydrologic river basin model for the Dong Nai River Basin in southern Vietnam. The model framework depicts the sectoral structure and location of water users (agriculture, industry, hydropower, domestic, and the environment) and the institutions for water allocation in the basin. Water benefit functions are developed for the major water uses subject to physical limitations and to constraints of system control and policy. Based on this modeling framework, we will analyze policies that can affect water allocation and use at the basin level, including both basin-specific and general macroeconomic policies. 相似文献
758.
Frank A. Ward Ari M. Michelsen Leeann DeMouche 《Journal of the American Water Resources Association》2007,43(1):237-253
Abstract: The Rio Grande basin shares problems faced by many arid regions of the world: growing and competing demands for water and river flows and uses that are vulnerable to drought and climate change. In recent years legislation, administrative action, and other measures have emerged to encourage private investment in efficient agricultural water use. Nevertheless, several institutional barriers discourage irrigators from investing in water conservation measures. This article examines barriers to agricultural water conservation in the Rio Grande basin and identifies challenges and opportunities for promoting it. Several barriers to water conservation are identified: clouded titles, water transfer restrictions, illusory water savings, insecure rights to conserved water, shared carry‐over storage, interstate compacts, conservation attitudes, land tenure arrangements, and an uncertain duty of water. Based on data on water use and crop production costs, price is found to be a major factor influencing water conservation. A low water price discourages water conservation even if other institutions promote it. A high price of water encourages conservation even in the presence of other discouraging factors. In conclusion, water‐conserving policies can be more effectively implemented where water institutions and programs are designed to be compatible with water’s underlying economic scarcity. 相似文献
759.
Abstract: Two CVM surveys were administered to 211 urban households and 188 rural farmer‐irrigators in the Comarapa watershed in Bolivia, South America, to estimate stakeholder willingness to pay (WTP) for a proposed upper watershed restoration program. Mean monthly household WTP to improve drinking water was $1.95 (65% of current charges), while mean annual WTP among farmer‐irrigators to improve irrigation water was $17 per hectare (34% of current costs). Aggregated to the entire population of households and farmer‐irrigators total WTP is $77,400 per year, which is 77% of the minimum cost to implement a watershed restoration program. 相似文献
760.
J. H. Krishna G. F. Arkin J. R. Martin 《Journal of the American Water Resources Association》1987,23(6):1057-1061
ABSTRACT: The current increase in the demand for water by municipal, industrial, and other users is likely to result in approximately one-third less water being available for agricultural use in Texas by the year 2000. As water supplies diminish, the rainfall excess needs to be used more efficiently. Large amounts of runoff occur in the eastern part of Texas that could be collected in small impoundments and utilized for crop production. Farmers in water-surplus basins or subbasins can apply for a permit to divert surface water into small on-farm impoundments to be used for supplemental irrigation. The costs for runoff collection and two supplemental irrigations, which amount to a total of 4 in./yr., are estimated to be approximately $60/acre/year. Depending upon the crop produced, the estimated increase in gross income from supplemental irrigation ranges from about $80 to more than $100 per acre annually. 相似文献