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981.
包膜尿素的养分释放特征及其肥效   总被引:11,自引:1,他引:11  
应用固-液反应包膜工艺,采用4种改性的无机包膜材料,试制出了成本较低的包膜缓释尿素,用水中溶出率法测定了包膜缓释尿素的养分释放特征,应用盆栽水稻评价了包膜缓释尿素的肥效,并与国外的有机缓释氮肥(Methylene Urea)和高聚物包膜复合肥(Osmocotte)进行了比较,表明固-液反应型包膜尿素具有较好的养分缓释效果,4种包膜尿素与等氮和等重常规尿素相比,栽培水稻都有一定的增产作用,并提高了肥料利用率,其中LU增产最显著,比等氮和等重尿素处理分别增产41.5%和35.7%,肥料当季利用率达到43.9%,好于国外的有机缓释氮肥和高聚物包膜复合肥。养分释放特征与水稻氮素营养特征较为接近,可为水稻一次性施肥所用。  相似文献   
982.
There is now clear evidence for a prolonged increase in atmospheric CO2 concentrations and enrichment of the biosphere with N. Understanding the fate of C in the plant-soil system under different CO2 and N regimes is therefore of considerable importance in predicting the environmental effects of climate change and in predicting the sustainability of ecosystems. Swards of Lolium perenne were grown from seed in a Eutric Cambisol at either ambient (ca. 350 μmol mol−1) or elevated (700 μmol mol−1) atmospheric pCO2 and subjected to two inorganic N fertilizer regimes (no added N and 70 kg N ha−1 month−1). After germination, soil solution concentrations of dissolved organic C (DOC), dissolved inorganic N (DIN), dissolved organic N (DON), phenolics and H+ were measured at five depths down the soil profile over 3 months. The exploration of soil layers down the soil profile by roots caused transient increases in soil solution DOC, DON and phenolic concentrations, which then subsequently returned to lower quasi-stable concentrations. In general, the addition of N tended to increase DOC and DON concentrations while exposure to elevated pCO2 had the opposite effect. These treatment effects, however, gradually diminished over the duration of the experiment from the top of the soil profile downwards. The ambient pCO2 plus added N regime was the only treatment to maintain a notable difference in soil solution solute concentration, relative to other treatments. This effect on soil solution chemistry appeared to be largely indirect resulting from increased plant growth and a decrease in soil moisture content. Our results show that although plant growth responses to elevated pCO2 are critically dependent upon N availability, the organic chemistry of the soil solution is relatively insensitive to changes in plant growth once the plants have become established.  相似文献   
983.
ABSTRACT

Field experiments were conducted for 2 years in sandy loam soil, to study the direct effect of organic manures i.e. sewage sludge (SS), vermicompost (VC) and sesbania (SB) and chemical fertilizers on rice (Oryza sativa) and their residual effect on wheat (Triticum aestivum) grown in sequence in winter (Rabi) and summer (Kharif) season during 2015–2016 to 2016–2017 at Varanasi, Uttar Pradesh. Residual effect of organic sources of nutrients as SS, VC and SB were monitored up to fourth crop (II wheat) in sequence applied in conjunction with 75% recommended dose of fertilize (RDF). Among the nutrient sources, the maximum grain yield in I rice (4.89 t ha?1), II rice (4.95 t ha?1), was recorded in treatment T3 (100% RDF with S, Zn, B) whereas in I wheat (4.68 t ha?1) and II wheat (4.59 t ha?1), it was recorded in T4 (customized fertilizer). The maximum straw yield during all four crops was recorded in T3 (100% RDF with S, Zn, B) in rice and T4 (customized fertilizer) in wheat crop, which showed 25, 32, 23 and 28% increase over 100% RDF (T2). Application of 100% RDF along with S, Zn, B and customized fertilizer increased the total uptake of N, P, K, S and B and also in net returns and B:C ratio followed by organic treatments.  相似文献   
984.
机械化播种作业是现代农业生产的重要环节,纯作业时间利用率是衡量播种机组作业效率的重要指标。该研究依据农业机组运行机理,在调查研究的基础上,提出季节时间利用率概念,确定了播种机组的作业时间构成,建立了播种机组纯作业时间、转弯时间、加种肥时间的计算模型和3种加肥方式下的播种机组纯作业时间利用率计算模型,明确各参数随地块面积、地块长度等条件变化的一般规律;以此为基础,在机组正常作业状态下,采用定距离多点多设备同步跟踪测的试验方法获取4种典型播种机组各类作业时间数据,并运用3σ原理剔除无效数据;依据所建模型及有效试验数据,采用Matlab 2012b对4种播种机组的纯作业时间利用率随地块条件变化规律进行模拟仿真,并采用Sigmaplot 12.5软件直观表达试验结果;进而探索了播种机组纯作业时间利用率随地块条件化的原因,确定了目标时间利用率条件下不同播种机组与其所适宜的作业地块面积和地块长度的定量关系:播种机组纯作业时间利用率大于0.6时,约翰迪尔7830机组适合作业地块面积大于等于6 hm^2、地块长度为1 200~1 400 m;维美德171机组适宜作业地块面积大于等于6 hm^2、地块长度为1 000~1 200 m;常发504机组适合作业的地块面积大于等于1 hm^2、地块长度为500~1 500 m;黄海254机组适合作业的地块面积大于等于0.3 hm^2、地块长度200~1 500 m。研究成果可为不同地块条件的播种机组选型提供定量依据。  相似文献   
985.
In the present study, pot experiments were conducted to evaluate the effects of the application of two different kinds of composts: pea-rice hull compost (PRC) and cattle dung-tea compost (CTC) on rice growth. These composts differed in their nitrogen composition, as well as in their effect on plant height, number of tillers, dry matter yield and nutrient uptake (nitrogen (N), phosphorus (P), potassium (K)) of rice plants. Plants were cultivated in 1/5,000 Wagner pots, which contained 3 kg of soil, completely mixed with the composts (PRC 404 g; CTC 380 g) and chemical fertilizer (CHEM), respectively in the first crop. The residual effect of the composts was studied after the plants of the first crop were harvested. All the treatments were replicated four times, with a randomized complete block design. The nutrient concentrations in the roots, leaf sheaths, leaf blades, stalks, and grain were analyzed at different growth stages. At the most active tillering and heading stages of the plants of the first crop, the number of tillers, dry matter yield and the amount of nutrients absorbed from the CHEM treatment were found to be higher than those in the other treatments. The values of the plant height, straw growth and nutrient uptake of the rice plants with the PRC treatment were the highest among all the treatments at the maturity stage. In the plants of the second crop, the values of the plant height, number of tillers, straw and whole plant yield and the N and K uptake from the PRC treatment were the highest among all the treatments at the heading and maturity stages. The chemical fertilizer was a fast-release fertilizer used to supply nutrients at the early stage of rice growth in the first crop. The beneficial effect of the composts on rice growth and nutrient uptake was conspicuous in the second crop, compared with that of routine treatment of chemical fertilizer.  相似文献   
986.
The influence of fertilization on organic‐carbon fractions separated by density and particle size in Heilu soil (Calcic Kastanozems, FAO) was investigated in a 20‐year (1979–1999) long‐term experiment on the Loess Plateau of China. Compared to an unfertilized treatment, N application alone did not increase total organic carbon (TOC) and its fractions of density and particle size. However, the treatment of N + P fertilization significantly increased salty‐solution–soluble organic carbon (SSOC), microbial biomass C (MB‐C), and organic C associated with fine silt. When manure was applied alone and in combination with N and P fertilizer, the light fraction of organic C (LFOC), SSOC, and MB‐C were increased significantly, and the TOC was as high as that of a native Heilu soil. Organic C associated with different particle‐size fractions was also increased significantly, and the allocation of C among the fractions was altered: the proportions of C in sand (>50 μm), coarse‐silt (20–50 μm), and fine‐clay (<0.2 μm) fractions were increased whereas fine‐silt (2–20 μm) and coarse‐clay (0.2–2 μm) fractions were decreased. It is concluded that N fertilizer alone is not capable of restoring organic‐matter content in the Heilu soils of the Loess Plateau and that C‐containing material like manure and straw is necessary to produce significant increase in soil organic carbon in these soils.  相似文献   
987.
螺旋排肥器排肥口参数对排肥性能影响的试验研究   总被引:2,自引:2,他引:2  
针对螺旋排肥器在物料输送过程中排肥口物料流量随时间波动变化造成排肥均匀性降低的问题,该研究采用离散元仿真和台架试验相结合的方法,以排肥均匀性变异系数为评价指标,在螺旋转速30r/min下,研究了排肥口长度和排肥口角度对排肥均匀性的影响,通过正交试验分析了单个螺旋转动周期内的排肥特性。试验结果表明:影响螺旋排肥器排肥性能的主次因素分别为排肥口长度、排肥口角度,两者对螺旋排肥器的排肥稳定性和均匀性有非常显著的影响,在排肥口角度为135°、排肥口长度为60mm的组合下取得较优排肥效果,该组合下仿真试验的排肥均匀性变异系数为4.98%,台架验证试验的排肥均匀性变异系数为5.41%,仿真试验和台架试验结果吻合度较好。该研究可为螺旋式排肥器的设计与优化提供参考和理论依据。  相似文献   
988.
山东省粮食作物的化肥施用状况分析   总被引:14,自引:0,他引:14  
在农户抽样调查数据的基础上,分析了山东省粮食作物上施用化肥的状况。通过对山东省不同地区2003年施肥状况调查并结合统计资料分析表明,粮食作物上施肥占化肥总投入的比例逐年在下降,但单位面积化肥投入量却稳步提高。在氮肥的品种构成中,低浓度的碳酸氢铵提供了46.8%的施氮量,仍占有重要地位。山东省粮食作物单位面积化肥平均用量为251.1kg/hm^2,其中小麦平均施肥量最高,达到277.6kg/hm^2;另外就施氮量来说,玉米施氮量最高,平均用量为175.2kg/hm^2;小麦施磷量最高,平均用量为97.6kg/hm^2;薯类施钾量最高,平均用量为55.7kg/hm^2。从施肥的氮磷比例来看,小麦上施用化肥的氮磷比例为1:0.7,高于推荐施肥比例,玉米上施用化肥的氮磷比例为1:0.25,低于推荐施肥比例。  相似文献   
989.
肥液浓度对单膜孔入渗NO-3-N运移特性影响的室内试验研究   总被引:5,自引:0,他引:5  
该文通过室内入渗试验,研究了不同浓度的单膜孔肥液入渗NO-3-N的分布特性。研究表明:不同浓度的膜孔肥液入渗土壤NO-3-N浓度的湿润锋运移距离与土壤水分运动的湿润锋一致;肥液浓度越大,相同入渗时间的NO-3-N浓度锋运移距离越大,土壤剖面NO-3-N浓度最大值越大,相同深度处土壤NO-3-N浓度也越大。肥液入渗土壤NO-3-N浓度分布特征与湿润体深度符合分段函数模型。供水入渗过程中,NO-3-N浓度锋运移距离和浓度最大值均随时间的延长而增大;再分布过程中,NO-3-N浓度锋运移距离继续增大,而NO-3-N浓度最大值逐渐减小。  相似文献   
990.
缓/控释氮素肥料玉米苗期养分释放特点   总被引:6,自引:0,他引:6  
采用盆栽试验.模拟田间生态环境.研究施用不同种缓/控释氮素肥料玉米苗期土壤尿素态氮、硝态氮、铵态氮和速效态氮含量,分析比较其在玉米苗期氮素养分释放特点。研究表明,在玉米苗期,施用醋酸酯淀粉包膜脲酶抑制剂nBPT涂层尿素肥料。土壤中尿素态氮和铵态氮的积累量最多.分别为21.72mg/kg和48.31mg/kg;醋酸酯淀粉包膜尿素肥料,硝态氮和速效氮含量最多.分别为102.90mg/kg和135.25mg/kg;丙烯酸树脂包膜脲酶抑制剂nBPT涂层尿素肥料,尿素自膜内迁移到土壤中的量较少,硝态氮和速效态氮含量最少。分别为53.74mg/kg和93.70mg/kg。包膜与脲酶抑制剂nBPT相结合的缓/控释肥料,对减少土壤石硝态氮的生成效果最为明显.明显优于其他缓/控释肥料.丙烯酸树脂包膜nBPT涂层尿素肥料控释效果最好。  相似文献   
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