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11.
ABSTRACT: The continuous availability of ground water to riparian phreatophytic vegetation results in large evapotranspiration (ET) losses in summer. Chemical or physical eradication of this vegetation can have undesirable environmental side effects. Spraying phreatophyte foliage with a nontoxic antitranspirant (AT) may reduce transpiration without eradication. Transpiration rate per unit leaf area was similar for several phreatophyte species, but ET per unit land area of phreatophytes depneds more on stand density than species. The mean ET for saltcedar in June was 8.1 mm/day measured by Bowen ratio, compared with 7.9 mm by lysimeters. ATs and growth-retardants reduced transpiration by over 50 percent in laboratory tests where foliage was thoroughly sprayed. In the field AT sprayed by a back-pack mistblower reduced ET by 20–35 percent initially and 10 percent after a month. No ET reduction occurred when AT was sprayed by helicopter on saltcedar, because excessive droplet size and heavy salt deposits on the foliage resulted in poor spray adherence. Wax-based AT was relatively nontoxic to fish and wildlife. Dissolved oxygen could be reduced for aquatic life, but further AT dilution in streams and ponds would minimize this. Helicopter spraying may affect bird nests and egg hatchability. Although ATs significantly reduce ET, their high cost and spraying difficulties preclude current use on phreatophytes. With improvement they may economically help to conserve water in riparian areas in future years.  相似文献   
12.
ABSTRACT: The water budget computation in shallow lakes is complicated because marsh vegetation can transpire large quantities of lake water. Thus, a model including the marsh zone evapotranspiration (WET) was developed to compute the water budget for Lake Okeechobee. Three periods of testing (1969–74), planning (1963–74), and recorded period (1952–77) were used to compare the differences of the sum of storage deviation between the WET and conventional methods (WOET). Results of the WOET method showed that the sum of stage deviations were 87.42 cm (2.868 ft.), 231.80 cm (7.605 ft.), and 284.50 cm (9.333 ft.) in the testing, planning, and recorded periods, respectively. These stage deviations are equivalent in the same order to 29, 76, and 93 percent of the lake volume. In general, the WET method not only was applicable to compute the water budget for the lake but also reduced the sum of storage deviation by about 42, 31, and 49 percent, respectively, in those three periods. The storage deviation in WET method was reduced on an average to about 2 percent each year in all three periods, and the deviations were scattered more randomly than in WOET.  相似文献   
13.
ABSTRACT: To investigate the magnitude of denitrification and assimilatory nitrate reduction as these reactions relate to the fate of nitrate reaching sediments via groundwater seepage, undisturbed core samples of sediments (40 cm length) from two lakes (Mendota and Tomahawk) were leached from the bottom (at 1.4 cm/day) with a solution of 15N-nitrate (10 mg N/liter). The sediment columns were fitted with Pt electrodes to measure the oxidation-reduction (Eh) potential. While leaching removed considerable ammonium-N and soluble organic N, essentially no 15N had passed through the columns by 50 days. The Eh readings indicated that denitrification was occurring in the lower portions of the columns. The 15N distribution of the sediment N after 50 days showed that about 15 to 26% of the added nitrate-N was converted to organic N and ammonium-N. The data show that denitrification can be a significant N sink in seepage lakes.  相似文献   
14.
小麦-玉米轮作体系农田氮素淋失特征及氮素表观平衡   总被引:3,自引:0,他引:3  
连续6年采用渗漏计法研究了不同施氮处理下陕西关中小麦-玉米轮作区农田土壤90 cm深度处氮素(N)淋失特征和土壤-作物体系氮素表观平衡状况.结果表明:该地区农田氮素淋溶主要发生在降雨量较多的玉米季,且集中在8月和9月.监测期内,TN和NO-3-N年平均流失量分别为2.72~23.07 kg·hm-2和1.53~18.72 kg·hm-2,年流失率分别为0.65%~3.44%和0.82%~3.32%,且年总氮、硝态氮流失量均随年施氮量增加呈指数增加.氮素淋失形态中,NO-3-N比例较高,可占总氮淋失量的56.00%~81.00%,且随着氮肥用量的降低,其占总氮淋失量的比例也随之减小.可见,施氮量的大小在一定程度上会影响淋失液中各形态氮的比例.氮素表观平衡结果显示,随着施氮量提高,氮素在土壤中的残留和表观氮盈余均呈现指数增加趋势.长期施氮条件下,土壤-作物体系氮素表观损失率的幅度为32.60%~55.20%,土壤表观残留率为-0.17%~8.20%.多年监测结果表明,优化施氮模式下,作物不仅可以获得较高的产量和氮肥利用率,农田氮素淋失量也大幅降低,在节约肥料资源的同时减轻了潜在的环境风险.  相似文献   
15.
The nitrogen balance can serve as an indicator of the risk to the environment of nitrogen loss from agricultural land. To investigate the temporal and spatial changes in agricultural nitrogen application and its potential threat to the environment of the Haihe Basin in China, we used a database of county-level agricultural statistics to calculate agricultural nitrogen input, output, surplus intensity, and use efficiency. Chemical fertilizer nitrogen input increased by 51.7% from 1990 to 2000 and by 37.2% from 2000 to 2010, concomitant with increasing crop yields. Simultaneously, the nitrogen surplus intensity increased by 53.5% from 1990 to 2000 and by 16.5% from 2000 to 2010, presenting a continuously increased environmental risk. Nitrogen use efficiency decreased from 0.46 in 1990 to 0.42 in 2000 and remained constant at 0.42 in 2010, partly due to fertilizer composition and type improvement. This level indicates that more than half of nitrogen inputs are lost in agroecosystems. Our results suggest that although the improvement in fertilizer composition and types has partially offset the decrease in nitrogen use efficiency, the environmental risk has still increased gradually over the past 20 years, along with the increase in crop yields and nitrogen application. It is important to achieve a better nitrogen balance through more effective management to significantly reduce the environmental risk, decrease nitrogen surplus intensity, and increase nitrogen use efficiency without sacrificing crop yields.  相似文献   
16.
ABSTRACT A weir system with a proportional sampler for use on miniature watershed ecosystems is described. Eight weir collection systems were evaluated for their ability to measure and sample inputs and outputs of soil-island ecosystems which occur on granite outcrops. The proportion of water actually collected by the weir systems was generally less than the proportion the systems were designed to sample, but adequate for supplying data needed for estimating elemental budgets. The weir systems were not able to account for 25 to 50 percent of the variation in total water passing over the cutoff wall. Several ways of improving overall performance of the weir systems are discussed.  相似文献   
17.
九孔鲍摄食江蓠与人工配合饵料的能量收支比较   总被引:2,自引:0,他引:2  
通过投喂江蓠 (Gracilariaceaelicheniodes)和配合饵料对九孔鲍 (Haliotisdiversicoloraquatilis)的能量收支进行了比较研究 .结果表明 :两种饲料组的九孔鲍耗氧率在昼夜之间均并没有明显差异 (P >0 .0 5 ) ,九孔鲍摄食两种饵料的吸收率也没有显著差异 (P >0 .0 5 ) ,而饵料系数、蛋白质效率、总生长效率则有显著的差异 (P <0 .0 5 ) .配合饵料组的排泄能显著高于江篱组的 (P <0 .0 5 ) ,而代谢能和粘液能却显著低于江篱组的 (P <0 .0 5 ) ,两组饲料的排粪能和壳能没有显著差异 (P >0 .0 5 ) .因壳能很少 ,在测定中可以忽略 .配合饵料组的软体部生长能显著高于江篱组的 (P <0 .0 5 ) .摄食江蓠和配合饵料的九孔鲍能量收支方程分别为 :江蓠组10 0C =(12 .76± 1.2 2 )F (76 .4 7± 5 .33)R (2 .74± 0 .4 0 )U (6 .75± 0 .4 6 )M (2 .78± 0 .4 8)Pg (0 .0 3±0 .0 1)Psh- (1.5 3± 4 .19)配合饵料组10 0C =(12 .15± 1.6 9)F (5 4 .94± 5 .10 )R (4.5 0± 0 .70 )U (3.99± 0 .0 7)M (2 9.79± 4 .77)Pg (0 .0 3±0 .0 1)Psh- (5 .4 0± 7.4 3)  相似文献   
18.
九龙江流域氮的源汇时空模式与机理初探   总被引:6,自引:3,他引:3  
综合运用定位监测、野外试验、模型模拟与GIS技术等手段和方法,定量研究了南亚热带地区九龙江流域和五川小流域氮的大气沉降、河流输送(地表径流)、淋失、反硝化和氨挥发等输入输出(源汇)时空模式与机理.结果表明,九龙江流域氮"源"以化肥与饲料输入为主(占总输入125.6kg·hm-2的86%).氮"汇"以氨挥发和河流输送为主(占总输出72.9kg·hm-2的82%).氮输入后50%以上进入大气和水环境,14.5%通过河流输送至河口与近海.大气氮沉降通量为14.9kg·hm-2,其中干沉降占34%,湿沉降占66%,形成1:2的干湿沉降结构;源于化肥施用与畜禽养殖引起的强烈氨挥发,氮沉降集中在春夏两季(占全年80%),且以铵态氮为主(39%以上).氮的径流输出及河流输送受人为氮输入与水文条件的双重控制,2004年九龙江向厦门海域输送无机氮11.5kg·hm-2,其中90%发生在春夏秋季(同期流量占全年89%);五川小流域总氯径流输出负荷为67.1kg·hm-2,其中85%发生在施肥量大、降雨集中的春夏两季(作物生长期);基流与降雨径流分别贡献25%和75%.总氮淋失负荷为27.5kg·hm-2,占总输入的9%;pH<5的酸性土壤带正电荷导致氮淋失以铵态氮为主(约占40%).九龙江流域反硝化通量为7.7 kg.hm-2,而氮挥发高达42.1kg·hm-2,氨挥发主要来自化肥施用与畜禽养殖(分别贡献50%和39%).减少春夏时期肥料氮的输入(养分管理),有效截留雨季的降雨径流(水文控制)是该流域氮素管理的关键.  相似文献   
19.
阐述了总量预算指标分配的概念,结合环境容量承载水平和总量管理的实际,从理论上建立河南各省辖市可用于社会经济发展的总量预算指标分配模型.针对各分析方法的理论模型进行对比分析,确定合理的分配方案,为后续的实证研究和"十三五"时期河南省总量预算管理提供基础.  相似文献   
20.
不同灌溉方式冬小麦农田生态系统碳平衡研究   总被引:7,自引:0,他引:7  
全球气候变暖趋势明显,陆地生态系统碳循环的研究成为目前的研究热点,而农田生态系统是陆地生态系统的重要组成部分,由于农田生态系统是受人类强烈调节与控制的复合系统,其碳循环受各类农作措施的影响极大。新疆地处干旱区,水分条件是农田碳循环的最重要限制因子。为此,分析不同灌溉方式对冬小麦(Triticum aestivuml)农田生态系统碳平衡的影响,从而提出有利于新疆冬小麦生产的固碳减排的灌溉方式。试验于2012—2013年在伊宁县科技示范园冬小麦试验田进行,选择伊农18冬小麦品种为供试材料,确定滴灌和漫灌为两个试验主因子并设置小区。试验自冬小麦返青开始至完全成熟结束,期间平均每7天采1次样,其中用典型样株法采集小麦植株,分根、茎、叶等不同器官单独烘干测定植株固碳量;用静态钠石灰吸收法测定冬小麦土壤呼吸;收集整理已发表国内外文献中的各类碳排放参数确定本研究中所需参数;采用王小彬的碳平衡计算方法分析不同灌溉方式农田生态系统碳平衡,据此对滴灌和漫灌两种灌溉方式的冬麦农田作物生物量固碳、土壤碳排放量和作物生产过程中物质投入的间接碳排放量,以及两种灌溉方式下冬麦农田生态系统净碳值进行分析。试验结果表明:滴灌条件下冬麦农田生态系统小麦的固碳量、土壤碳排放总量分别比漫灌小麦的高出15.38%和11.43%,冬小麦穗是差异形成的主要原因;而农业生产资料排碳总量比漫灌少排3.88%;但无论是滴灌还是漫灌,耗电碳排放量均占农业生产资料碳排放总量的59%以上,是农业生产资料碳排放的第一大来源。两种灌溉方式下冬小麦田生态系统的净碳值均呈现出固碳并存在显著差异(p〈0.01),且滴灌冬麦农田生态系统净碳值比漫灌高25.39%。因此,新疆冬小麦生产中采用滴灌方式更有利于农田生态系统的固碳,  相似文献   
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