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41.
Nitrogen runoff and leaching losses from two tomato and four corn field plots were compared to model predictions by CREAMS, a field-scale model for Chemicals, Runoff, and Erosion from Agricultural Management Systems. The tomato treatments were (1) trickle irrigation with one-half of applied N at preplant and one-half of applied N through the trickle irrigation system and (2) overhead sprinkler irrigation with one-half of applied N at preplant and one-half of applied N in two equal sidedressings. The corn treatments consisted of multiple N applications, minimum tillage, and “conventional” management. Soil type appeared to influence the ability of CREAMS to predict seasonal trends and treatment influences. Model predictions for N losses from tomato and corn treatments that were located on sandy soils often disagreed with measured values. Treatment influences and seasonal trends for N losses from corn treatments that were located on a higher clay content soil were more satisfactorily predicted by CREAMS. Even though model input parameter estimation and measurement techniques may be imperfect, the simulation ability of CREAMS for predicting N leaching losses from systems on deep sands probably needs to be improved. Sensitivity analyses indicated that annual NC3?-N leaching loss predictions were either minimally or not affected by changes in saturated hydraulic conductivity. Input estimations of the fraction of soil pore space filled at field capacity and soil organic matter were inversely related to annual NO3?-N leaching losses, while potential mineralizable N was directly related to yearly N leaching losses.  相似文献   
42.
亚热带东部壳斗科6种常绿植物叶的生态解剖   总被引:12,自引:0,他引:12  
选取亚热带东部替代分布明显的壳斗科6种常绿树种(青冈,小叶青冈,细叶青冈,苦槠,甜槠和石乐)的11个种群叶片进行生态解剖,并用SPSS,DCA和TWINSPAN比较分析,结果表明:(1)尽管6种11个种群叶的结构仍属中生叶型,但有着不同程度的趋旱适应;(2)叶的解剖性状在属间,种间和种群间均存在着不同程度的差异,这是它们适应各自生境的结果,青冈和石栎的种内差异较大,反映出它们对环境变化有较强响应能力;(3)叶片的不同解剖性状在属,种类和种群间的变化并不同步,其中叶片和栅栏组织厚度等性状差异突出,反映它们更易受环境的饰变,是生态适应性状,而海,上角质膜,特别是下表皮厚度等性状差异较小,显示出这些性状的稳定性,可以认为是系统演化性状;(4)苦槠,青冈具有较厚的叶片,栅栏组织,角质膜和发达输导和机械组织,苦槠还具有复表皮,表现出对旱化生境的适应;甜槠尽管具有复表皮和较厚的叶片,但这是海绵组织增厚的结果,是对中生生境的适应;小叶青冈和细叶青冈具有较垢叶片和栅栏组织,角质膜厚度居中等特点,可能是对中山凉湿生境的。图版1图2表2参24  相似文献   
43.
滇池流域蔬菜地土壤氮素分布与转移特征   总被引:1,自引:0,他引:1  
选取滇池流域蔬菜设施保护地油麦菜(Lactuca sativa var.ramosa)种植区进行研究,分为高量组和低量组两个组别进行,每组分别设置9个施肥处理。试验结果表明:土壤总氮在各水平处理之间并没有规律性变化,在垂直梯度上(0-20、20-40、40-60cm),土壤养分随深度增加而递减;高量组和低量组在生长期和成熟期,土壤总氮积累量和施氮量表现出了显著正向线性相关,相关系数R分别为0.9873、0.9901、0.9881和0.9880;适量施氮,土壤氮积累量表现出减少,而过量施氮则表现出了盈余;高量组氮损失量均大于低量组,且高量组在不同生育期的氮损失量与施氮量表现出极显著的线性正相关,相关系数R分别为0.9823、0.9719。高量组与低量组氮素损失率生长期均高于成熟期,而各处理之间未表现出明显的变化规律,最大损失率为39.79%,在适宜施肥量的处理中,损失率也达到了20%以上。  相似文献   
44.
河西走廊石羊河下游地区盐碱土中放线菌多样性   总被引:1,自引:0,他引:1  
为了解甘肃省河西走廊石羊河流域地区盐碱土中放线菌种群结构及多样性,采用非培养法对河西走廊石羊河下游流域的3种不同类型土样(原生盐碱土、次生盐碱土和农田土)的总DNA进行提取,用放线菌特异性引物对16S rRNA基因进行扩增,构建放线菌16S rRNA克隆文库.用HaeⅢ和HhaⅠ两种限制性内切酶对阳性克隆子进行16S rDNA扩增片段限制性内切酶分析(Amplifed Ribosomal DNA Restriction Analysis,ARDRA),提取酶切带型不同的菌液进行测序,构建其系统发育树并进行多样性指数分析.结果显示:原生盐碱土克隆文库中90个阳性克隆分归于20个OTUs,分属于微球菌科(Micrococcaceae)、中村氏菌科(Nakamurellaceae)、类诺卡氏菌科(Nocardioidaceae)、链霉菌科(Streptomycetaceae)、棒状杆菌科(Corynebacteriaceae)、诺卡氏菌科(Nocardiaceae)和未知类群;次生盐碱土克隆文库中98个阳性克隆分归于32个OTUs,分属于纤维素单胞菌科(Cellulomonadaceae)、微球菌科(Micrococcaceae)、地嗜皮菌科(Geodermatophilaceae)、类诺卡氏菌科(Nocardioidaceae)、小单孢菌科(Micromonosporaceae)、伪诺卡氏菌科(Pseudonocardiaceae)、链霉菌科(Streptomycetaceae)、链孢囊菌科(Streptosporangiaceae)、高温单孢菌科(Thermomonosporaceae)、动孢囊菌科(Kineosporiaceae)、糖霉菌科(Glycomycetaceae)和未知类群;农田土克隆文库中98个阳性克隆分归于10个OTUs,分属于微球菌科(Micrococcaceae)、博戈里亚湖菌科(Bogoriellaceae)、地嗜皮菌科(Geodermatophilaceae)、中村氏菌科(Nakamurellaceae)、类诺卡氏菌科(Nocardioidaceae)和未知类群.其中,微球菌亚目(Micrococcineae)是3种不同类型土壤中的优势类群.多样性指数和稀释性曲线分析结果显示,3种不同类型土壤中放线菌多样性为次生盐碱土>原生盐碱土>农田土.  相似文献   
45.
上海佘山国家森林公园空气负离子动态及其主要影响因子   总被引:2,自引:0,他引:2  
以上海佘山国家森林公园为研究地,通过定点观测,对比分析了林内与空地的空气负离子在日变化和季节变化上的规律。研究结果表明:在一日内的上午、中午、下午3个时段,林内与空地的空气负离子浓度和安培空气离子评价系数(CI)值均无显著性差异;而在这3个时段,林内的空气负离子浓度和CI值均显著高于空地;季节上,林内与空地的负离子浓度、CI值以及空气清洁程度均为夏秋季大于春季大于冬季,林内和空地在夏秋两季负离子浓度和CI值都显著大于空地。同时林内的空气清洁程度在4个季节皆高于空地。通过多元回归分析得出,总悬浮颗粒物(TSP)是影响夏秋两季林内负离子浓度和CI值的主要影响因素;相对湿度是影响夏秋两季空地空气负离子浓度和CI值的主要影响因素。  相似文献   
46.
利用层次分析和专家打分法构建了气候变化对内蒙古马铃薯生产的脆弱性影响评价指标体系,运用脆弱性的定义及灾害风险的理论建立了马铃薯脆弱性综合指数评估模型,通过分析主产区的敏感性、适应性来评估脆弱性影响程度.结果表明:内蒙古马铃薯生产脆弱性分布呈中部高、东西部低的分布特点.以乌兰察布市中部、呼和浩特市南部、包头市南部及锡林郭...  相似文献   
47.
采用50 mm流动检测池,建立了连续流动分析法测定地表水中总氮。方法检出限为0.02 mg/L,水样加标回收率为100%~101%,平行样品相对偏差为0.10%~0.27%,精密度(RSD,n=6)为0.72%~1.10%。实验结果表明,该方法准确可靠、灵敏度高、重现性好、分析速度快、操作简便,适用于地表水中总氮的分析。  相似文献   
48.
In northern Florida, forages are grown in dairy effluent sprayfields to recover excess P. Our purpose was to evaluate five year-round forage systems for their capacity to remove P from a dairy sprayfield. The soil is a Kershaw sand (thermic, uncoated Typic Quartzipsamment). Systems included bermudagrass (Cynodon spp.)-rye (Secale cereale L.) (BR), perennial peanut (Arachis glabrata Benth.)-rye (PR), corn (Zea mays L.)-forage sorghum [Sorghum bicolor (L.) Moench]-rye (CSR), corn-bermudagrass-rye (CBR), and corn-perennial peanut-rye (CPR). Forages were grown for five 12-mo cycles. Effluent P rates were 80, 120, and 165 kg ha-1 cycle-1. The 5-cycle P removal was 67 kg ha-1 cycle-1 for BR, 54 kg ha-1 for CBR, 52 kg for CSR, 45 kg for PR, and 43 for CPR. Removal of P by winter rye was low. There were differences in system rankings among cycles primarily due to changes in the performance of perennial forages. In the first two cycles, BR had the greatest P removal (91 kg ha-1 cycle-1) due to high bermudagrass yield and P concentration. In the first cycle, P removal was lowest for PR (36 kg ha-1) because perennial peanut was slow to establish. In later cycles, P removal for BR declined because bermudagrass yield and P concentration declined. It increased for PR because peanut yield increased. The yield of corn in CBR, CPR, and CSR was consistently high but P concentration was modest (avg. 2.2 g kg-1). Sorghum produced moderate but stable yield and had low P levels (avg. 1.8 g kg-1). Effluent rate marginally affected the performance of most grasses. For P recovery in dairy sprayfields in northern Florida, the best warm-season forage would likely be a high yielding, persistent bermudagrass.  相似文献   
49.
There is concern that P from dairy effluent sprayfields will leach into groundwater beneath Suwannee River basins in northern Florida. Our purpose was to describe the effects of dairy effluent irrigation on the movement of soil P and other nutrients within the upper soil profile of a sprayfield over three 12-mo cycles (April 1998-March 2001). Effluent P rates of 70, 110, and 165 kg ha(-1) cycle(-1) were applied to forages that were grown year-round. The soil is a deep, excessively drained sand (thermic, uncoated Typic Quartzipsamment). Mean P concentration in soil water below the rooting zone (152-cm depth) was < or = 0.1 mg L(-1) during 11 3-mo periods. Mehlich-1-extractable (M1) P, Al, and Ca in the topsoil increased over time but did not change in subsoil depths of 25 to 51, 51 to 71, 71 to 97, and 97 to 122 cm. Topsoil Ca increased as effluent rate increased. High Ca levels were found in dairy effluent (avg.: 305 mg L(-1)) and supplemental irrigation water (avg.: 145 mg L(-1)) which likely played a role in retaining P in the topsoil. An effect of effluent rate on P and Al concentrations in the topsoil was not detected, probably due to large and variable quantities present at project initiation. The P retention capacity (i.e., Al plus Fe) increased in the topsoil because Al increased. Dairy effluent contained Al (avg.: 31 mg L(-1)). Phosphorus saturation ratio (PSR) increased over time in the topsoil but not in subsoil layers. Regardless of effluent rate, the P retention capacity and PSR of subsoil, which contained 119 to 229 mg kg(-1) of Al, should be taken into account when assessing the risk of P moving below the rooting zone of most forage crops.  相似文献   
50.
Abstract:  The 735,000-km2 Caatinga is a mosaic of thorn scrub and seasonally dry forests, with more than 2000 species of vascular plants, fishes, reptiles, amphibians, birds, and mammals. Endemism in these groups varies from 7% to 57%. Inappropriate land use has already caused serious environmental damage and accelerating desertification, which is currently threatening about 15% of the region. Moreover, the rich and diversified biota of the Caatinga is poorly protected: only 11 reserves (<1% of the region) are strictly protected areas. A conservation strategy for the Caatinga biota should be designed to (1) avoid further habitat loss and desertification, (2) maintain key ecological services necessary for improving the living standards of the rural population, and (3) promote the sustainable use of the region's natural resources. Implementing an effective conservation agenda for the Caatinga is not an easy task but, with creativity and consistent financial support, it should be possible to nurture this unique biome and guarantee the preservation of its rich and diversified fauna and flora, and, with this, the well-being of its rural populations.  相似文献   
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