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1.
1 INTRODUCTIONQuality of chemical properties of flooded soils isgenerally determined by salinity and alkalinity,bothof these acts as inhibiting factors of plant growth.Thecorrelation of electrical conductivity and other analysisindex has been reported by …  相似文献   
2.
 The renewable and controlled-release fertilization system investigated here uses NH4 +-exchanged phillipsite tuff, from Jordan, to help in the dissolution of phosphate rock. Accordingly, controlled and renewable soluble nitrogen, phosphate and Ca are released as nutrients for plants. NH4 + phillipsite can sequester Ca ions released by the dissolution of phosphate rock, therefore, leading to further phosphate rock dissolution. In this study the results show that the amount of phosphate released is more than that released by phosphate rock alone. This method offers an alternative to the use of highly soluble fertilizers and may avoid environmental problems associated with their extensive use in agriculture. Received: 22 May 1997 · Accepted: 12 August 1997  相似文献   
3.
我国盐湖钾盐资源现状及提钾工艺技术进展   总被引:6,自引:3,他引:3  
中国是一个农业大国, 钾肥缺口很大。中国又是一个多盐湖的国家, 盐湖中蕴藏着丰富的钾盐资源, 有望解决中国的缺钾问题。中国已经建立了青海察尔汗和新疆罗布泊两个钾肥生产基地, 但还是远远满足不了国内钾肥需求, 70%需要依赖进口。因此, 有必要继续加强钾盐开发研究, 建立新的钾肥生产基地。通过长期攻关, 我国氯化物型和硫酸盐型盐湖形成了比较成熟的提钾工艺路线, 但是, 碳酸盐型盐湖提钾研究刚刚起步。本文对青海察尔汗盐湖和新疆罗布泊盐湖两大中国钾肥生产基地的资源及生产工艺进行了分析研究, 其成功的开发经验可用来指导我国同类型其他盐湖钾资源的开发; 探讨了开发我国碳酸盐型盐湖钾盐的可行之路, 碳酸盐型盐湖通过技术创新, 可以在盐湖现场获得钾肥产品; 指出我国不同水化学类型的盐湖应采取不同的资源利用工艺路线。  相似文献   
4.
Karst areas and their catchments pose a great challenge for protection because fast conduit flow results in low natural attenuation of anthropogenic contaminants. Studies of the hydrochemistry of karst sources and river solutes are an important tool for securing and managing water resources. A study of the geochemical downriver evolution of the Wiesent River and its tributaries, located in a typical karst terrain, revealed unexpected downstream decreases of nitrate with maximum mean values of 30 mg/L at the source to minimum values of 18 mg/L near the river mouth. This trend persisted over the length of the river even though increased agricultural activities are evident in the downstream section of the catchment. This pattern is caused by fertilizer inputs via diffusive and fast conduits flow from karst lithology in the upstream area that may have reached the river's source even from beyond the hydrological catchment boundaries. Further downstream, these influences became diluted by tributary inputs that drain subcatchments dominated by claystone and sandstone lithologies that increased potassium and sulphate concentrations. Our findings indicate that bedrock geology remains the dominant control on the major ion chemistry of the Wiesent River and that agricultural influences are strongest near the headwaters despite increased land use further downstream, due to long‐term storage and accumulation in karst aquifers. This feature may not be unique to the Wiesent River system, as carbonates cover significant portions of the Earth's surface and subsequent work in other river systems could establish whether such patterns are ubiquitous worldwide.  相似文献   
5.
The paper presents a detailed understanding of nitrogenous fertilizer use in Indian agriculture and estimation of seasonal nitrogen loosses from rice crop in Indo-Gangetic plain region, the ‘food bowl’ of the Indian sub-continent. An integrated methodology was developed for quantification of different forms of nitrogen losses from rice crop using remote sensing derived inputs, field data of fertilizer application, collateral data of soil and rainfall and nitrogen loss coefficients derived from published nitrogen dynamics studies. The spatial patterns of nitrogen losses in autumn or ‘kharif’ and spring or ‘rabi’ season rice at 1 × 1 km grid were generated using image processing and GIS. The nitrogen losses through leaching in form of urea-N, ammonium-N (NH4-N) and nitrate-N (NO3-N) are dominant over ammonia volatilization loss. The study results indicate that nitrogen loss through leaching in kharif and rabi rice is of the order of 34.9% and 39.8% of the applied nitrogenous fertilizer in the Indo-Gangetic plain region. This study provides a significant insight to the role of nitrogenous fertilizer as a major non-point source pollutant from agriculture.  相似文献   
6.
王凯  金樱华  李晨  闵红  屠虹 《岩矿测试》2012,31(1):142-146
样品经硝酸微波消解,以镓为内标,采用全反射X射线荧光光谱法(TXRF)同时测定复混肥料中的钒、铬、锰、铁、镍、铜、锌、铅,方法检出限从铅的1.0μg/g到钒的7.0μg/g,精密度(RSD)铬为2.5%,铅为16%,除铅以外,其余元素的RSD均小于10%;方法回收率为80%~120%,Pb的回收率略低主要是由于化肥中As Kα谱线对Pb Lα谱线的干扰导致测定结果偏低。用TXRF和电感耦合等离子体发射光谱法(ICP-AES)测定不同复混肥料中各元素的含量,经统计检验,两种方法测定结果在95%置信区间内无显著性差异。对于金属元素含量较高的样品,TXRF法测定结果的相对标准偏差小于ICP-AES法。对于不同的复混肥料,在微量、痕量元素检测范围内,TXRF法具有较高的准确度和适用性,仪器使用和维护成本低,方法快速准确。  相似文献   
7.
基于时空不确定性的对流尺度集合预报效果评估检验   总被引:3,自引:0,他引:3  
针对对流尺度天气系统的高度非线性特征和高分辨率模式预报结果存在时、空不确定性现象,以及当前邻域概率法主要考虑高分辨率预报结果的空间位移误差,而不能有效解决预报结果存在时间超前与滞后问题,将时间因素引入到邻域概率法中,结合一次强飑线过程进行对流尺度集合预报试验,并基于改进后的新型邻域概率法与分数技巧评分,对降水预报进行了不同时、空尺度的效果评估检验。结果表明:(1)邻域集合概率法和概率匹配平均法在极端降水的分数技巧评分远高于传统集合平均,弥补了集合平均对极端降水预报能力偏低的缺陷。(2)对于此类飑线过程的对流尺度天气系统而言,邻域半径为15—45 km的空间尺度能够改善降水位移误差的空间不确定性,并使其预报效果达到最优,其中15—30 km的邻域半径对于尺度更小的大量级降水事件预报能力更强。(3)对流尺度降水预报考虑时间尺度与降水强度存在着对应关系,不同时间尺度可以捕获到不同量级降水的时间不确定性。同时,时间尺度与空间尺度对于降水预报效果的影响是相互关联的。(4)改进的邻域概率法能够同时体现高分辨率模式预报结果在对流尺度降水事件上存在的时、空不确定性,实现了对流尺度降水在时、空尺度上的综合评估,并能为不同量级降水提供与其时、空尺度相匹配的概率预报结果。   相似文献   
8.
所研制的高钾系列复混喷施肥其成份以KNO3为主,含微量营养元素。应用试验表明,该喷施肥具有成本低,肥效高,经济效益显著的特点,具有推广应用价值。  相似文献   
9.
张铜会  赵学勇 《中国沙漠》1999,19(Z1):124-126
对沙地玉米进行不同施肥量的试验研究。结果表明,试验条件下在沙地增加施肥量特别是N肥可显著增加玉米的产量,增幅达14.2%~73.8%,而增施P肥则对产量增加不显著;玉米产量与施肥量显著相关,相关系数为0.827;同时随着沙地玉米产量的增加,其水分利用率也明显提高,增幅达13.5%~70.8%。  相似文献   
10.
Cation exchange processes and human activities in unconfined aquifers   总被引:1,自引:0,他引:1  
During the 1999–2002 water years, a hydrogeological research project was carried out on the unconfined aquifer of Trifilia in the Peloponnese. Seawater intrusion due to overpumping, and intensive use of fertilizers caused the groundwater quality degradation that is a typical case for the coastal aquifers in Greece. Isopiezometric maps along with ion distribution balances, ion distribution maps and factor analysis indicate the existence of three zones of groundwater quality. In the first zone of saline water, a cation exchange process between the Ca2+ of sediments and the Na+ of groundwater contribute to the formation of the water type Na+-Ca2+-Cl. In the second zone, which is considered as a transition zone, dominate the Ca2+-Na+-HCO3-Cl water type. In the third zone of Ca2+-HCO3-SO42– water type, relationships among Ca2+, SO42–, NO3 and NH4 can be attributed to the dissociation of ammonium nitrate and sulfate fertilizers on one hand, and Ca2+ derivation from cation exchange processes between water, rocks and clay minerals, such as smectite and illite, on the other.  相似文献   
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