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21.
钾肥水平对油茶果实性状及产量的影响   总被引:1,自引:1,他引:1       下载免费PDF全文
为了研究钾素水平对油茶果实性状和产量的影响及它们之间的关系,设置了6个不同钾肥用量处理,以8年生的长林53号和长林27号两个油茶无性系为试材在江西永丰开展了施肥试验,连续两年测定了油茶果径、单果质量、干出籽率、干出仁率、种仁含油率、鲜果含油率、单株结果数、单株果实产量和产油量等指标,比较和分析了不同无性系的不同处理之间的差异。结果表明,两个无性系的果实性状和产量对钾肥水平差异的响应均存在大小年差异;结实大年时,钾肥水平对两个无性系果实的果径、单果质量和干出仁率影响不大,对其他性状的影响均达到显著水平;结实小年时,钾肥水平仅对53号无性系单株结实数量和产量造成影响且无明显梯度规律,而27号无性系随着钾肥水平的提高,其干出籽率和鲜果含油率呈先上升后下降趋势,单株果实数量、产量和产油量则呈下降趋势;无论大年还是小年,单株产量均与结实数量关系最密切,大年的产量在油茶生产中占据主导地位,就大小年平均产量而言,两品系均以中等钾肥水平的K2和K3处理最优。适量增施钾肥可有效改善油茶结实大年果实性状,提高单株结实数量,实现增产增效。  相似文献   
22.
通过水管部门组织科技人员对河套灌区调研为基础,以农业综合节水为目的,在灌区的中游永济灌域隆胜乡境内建设了节水农业示范区,面积为0.28万hm2.节水农业改造工程主要措施:渠道防渗衬砌、平地缩块.节水农业改造工程2002年竣工后,在运行中监测了3年,得出灌溉水量平均减少了12.3%;对示范区水盐动态进行了分析.  相似文献   
23.
根据1985-2007年的邢台地区地下水埋深数据、近10年地下水环境质量数据以及近37年的气象数据,运用arcGIS9.2,结合线性回归法、相关性分析、5年滑动平均法等,在分析地下水位动态变化的基础上,进一步分析此种变化的致灾效应.结果表明:邢台平原区浅层地下水以0.89m/a的速率下降,年内与降雨变化同步,深层地下水...  相似文献   
24.
以灭菌土为生长基质,采用盆栽试验和室内分析相结合的方法,研究不同施氮水乎下接种AM真菌摩西球囊霉和缩球囊霉对刺槐生长和营养代谢的影响.结果表明:接种AM真菌后刺槐根系菌根侵染率、根系活力和植株的生物量以及叶片超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和硝酸还原酶(NR)活性都随着施氮量的增加先升高后降低,在土壤中施氮量为0.4 g·kg-1水平时最好;相反,刺槐叶片丙二醛(MDA)和游离脯氨酸(PRO)含量却随着施氮量的增加先降低后升高,在施氮量为0.4 g·kg-1水平时最小.AM真菌的菌根效应因菌种不同而异,接种摩西球囊霉后,其菌根侵染率与各指标的相关性显著,更能促进刺槐的生长和营养代谢.  相似文献   
25.
石灰性土壤供氮能力几种化学测定方法的评价研究   总被引:2,自引:0,他引:2  
以采自于黄土高原差异较大的25个农田耕层石灰性土壤为供试土样,以淋洗和未淋洗土壤起始NO3--N小麦和玉米两季盆栽试验作物累积吸氮量为参比,对8种反映旱地土壤供氮能力的化学方法进行比较研究。结果表明,在一定程度上,可用有密切关系的土壤全氮或有机质,反映有机氮或全氮存在较大差异的土壤供氮能力,但其灵敏性较差。石灰性土壤矿质氮,特别是NO3--N与未淋洗土壤起始NO3--N作物吸氮量之间有较高相关性(r=0.884,P0.01),而与淋洗土壤起始NO3--N作物吸氮量间相关系数仅为0.472(P0.05),说明矿质氮可反映土壤当前供氮水平,而不能反映土壤潜在供氮能力;石灰性土壤起始NO3--N对各化学方法与作物吸氮量之间相关性影响较大。酸性高锰酸钾法既可反映土壤潜在供氮能力,也可反映土壤总供氮能力;酸性高锰酸钾法的修订方法,即硫酸高锰酸钾法提取出的NH4+-N值接近于KCl水浴法提取出的NH4+-N值,该方法在反映土壤总供氮能力方面与酸性高锰酸钾法相当,但在反映土壤潜在供氮能力方面不及酸性高锰酸钾法优越。KCl水浴法在评价石灰性土壤供氮能力方面,与酸性高锰酸钾法的效果基本相同;沸水浸取法和NaHCO3-UV法在评价石灰性土壤供氮能力方面效果较差。总结以上发现,在以盐类溶液提取法中,酸性高锰酸钾法、硫酸高锰酸钾法和KCl水浴法可作为反映石灰性土壤供氮能力的化学方法,其中以酸性高锰酸钾法最优,其次为KCl水浴法和硫酸高锰酸钾法。这3种方法在不包括起始NO3--N时,可反映石灰性土壤潜在供氮能力;包括起始NO3--N后,可反映土壤总供氮能力(当前供氮能力+潜在供氮能力)。  相似文献   
26.
The level of compaction induced on cultivated fields through trafficking is strongly influenced by the prevailing soil-water status and, depending on the attendant soil degradation, vital soil hydraulic processes could be affected. Therefore, understanding the relationship between field soil-water status and the corresponding level of induced compaction for a given load is considered an imperative step toward a better control of the occurrence of traffic-induced field soil compaction. Pore size distribution, a fundamental and highly degradable soil property, was measured in a Rhodic Ferralsol, the most productive and extensively distributed soil in Western Cuba, to study the effects of three levels of soil compaction on soil water characteristic parameters. Soil bulk density and cone penetration index were used to measure compaction levels established by seven passes of a 10 Mg tractor at three soil-water statuses corresponding to the plastic (Fs), friable (Fc) and relatively dry soil (Ds) consistency states. Pore size distribution calculated from soil water characteristic curves was classified into three pore size categories on the basis of their hydraulic functioning: >50 μm (f>50 μm), 50–0.5 μm (f50–0.5 μm) and <0.5 μm (f<0.5 μm). The greatest compaction levels were attained in the Fs and Fc soil water treatments, and a significant contribution to compaction was attributed to the existing soil water states under which the soil compaction was accomplished. Average cone index (CI) values in the range of 2.93–3.70 MPa reflected the accumulation of f<0.5 μm pores, and incurred severe reductions in the volume of f>50 μm pores in the Fs and Fc treatments, while an average CI value of 1.69 MPa indicated increments in the volume of f50–0.5 μm in the Ds treatment. Despite the differential effects of soil compaction on the distribution of the different pore size categories, soil total porosity (fTotal) was not effective in reflecting treatment effects. Soil water desorption at the soil water potentials evaluated (0.0 to −15,000 cm H2O) was adversely affected in the f<0.5 μm dominated treatments; strong soil water retention was observed with the predominance of f<0.5 μm, as was confirmed by the high water content at plant wilting point. Based on these findings, the use of field capacity water content as the upper limit of plant available soil water was therefore considered inappropriate for compacted soils.  相似文献   
27.
Soil compaction affects hydraulic properties, and thus can lead to soil degradation and other adverse effects on environmental quality. This study evaluates the effects of three levels of compaction on the hydraulic properties of two silty loam soils from the Loess Plateau, China. Undisturbed soil cores were collected from the surface (0–5 cm) and subsurface (10–15 cm) layers at sites in Mizhi and Heyang in Shaanxi Province. The three levels of soil compaction were set by increasing soil bulk density by 0% (C0), 10% (C1) and 20% (C2) through compression and hammering in the laboratory. Soil water retention curves were then determined, and both saturated hydraulic conductivity (Ks) and unsaturated hydraulic conductivity were estimated for all of the samples using standard suction apparatus, a constant head method and the hot-air method, respectively. The high level of compaction (C2) significantly changed the water retention curves of both the surface and subsurface layers of the Heyang soil, and both levels of compaction (C1 and C2) changed the curves of the two layers from the Mizhi site. However, the effects of compaction on the two soils were only pronounced below water tensions of 100 kPa. Saturated hydraulic conductivities (Ks) were significantly reduced by the highest compaction level for both sampled layers of the Heyang soil, but no difference was observed in this respect between the C0 and C1 treatments. Ks values decreased with increasing soil compaction for both layers of the Mizhi soil. Unsaturated hydraulic conductivities were not affected by soil compaction levels in the measured water volume ratio range, and the values obtained were two to five orders of magnitude higher for the Mizhi soil than for the Heyang soil. The results indicate that soil compaction could strongly influence, in different ways, the hydraulic properties of the two soils.  相似文献   
28.
In Britain wheat is an important crop accounting for 41% of the total cereal production. In this study ozone concentrations for 1989 estimated as described in Part 1 of the paper are integrated with the estimated wheat distribution to derive a detailed estimate of the impact of ozone on wheat yields at a fine spatial scale (1km × 1km). These data provide estimates for calculating regional and national yield losses. The methodology can be applied to other crop species. Recent research on a range of crops has established relationships between the economic yield loss for certain crops, including wheat, and ozone exposure. Exposure is described as the accumulated exposure above a threshold experienced during the daylight hours (AOT). Critical AOT values are derived from yield exposure relationships which show linear reductions of yield loss with increasing ozone concentrations. This study has made use of land cover data from remotely sensed imagery at 25m resolution and nationally collected agricultural statistics for counties. These data were combined using an areal interpolation technique to provide more spatially articulate estimates of the location and intensity of wheat production. The results demonstrate the economic importance of ozone as a pollutant. Wheat yield losses attributed to ozone vary between different parts of the country but, for years when ozone levels are high, yield losses are likely to be significant in some areas.  相似文献   
29.
The aim of this greenhouse experiment was the assessment of the influence of H2SeO3 at soil concentrations of 0.05, 0.15 and 0.45 mmol kg−1, on the activity of selected oxidoreductive enzymes in wheat (Triticum aestivum). The wheat plants were grown in 2 dm3 pots filled with dust-silt black soil of pH 7.7. Applied H2SeO3 caused activation of plant nitrate reductase at all concentrations, but activation of plant polyphenol oxidase at only two lower concentrations. The highest concentration caused inhibition of polyphenol oxidase and peroxidase. Plant catalase activity decreased under the influence of 0.15 and 0.45 mmol kg−1 concentration. After the final analysis Se was quantified in plants and soil. The amounts in plants were: control (unamended soil) 1.95 mg kg−1; I dose (0.05 mmol kg−1) 18.27 mg kg−1; II dose (0.15 mmol kg−1) 33.20 mg kg−1 and III dose (0.45 mmol kg−1) 38.37 mg kg−1, in soil: 0.265 mg kg−1; 3.61 mg kg−1; 10.53 mg kg−1; 30.53 mg kg−1; respectively. Simultaneously, a laboratory experiment was performed, where the activity of soil catalase and peroxidase were tested after 1, 3, 7, 14, 28, 56, and 112 days after Se treatment. Peroxidase activity in soil decreased with increasing Se content, over the whole experiment. The lowest dose of Se caused activation a significant 10% increase in catalase activity, but the influence of others doses was unclear.  相似文献   
30.
土壤矿物钾的释放及其在植物营养中的意义   总被引:14,自引:1,他引:14  
徐晓燕  马毅杰 《土壤通报》2001,32(4):173-176
本文对土壤钾的形态、矿物钾释放的影响因素及钾的固定、土壤含钾矿物与土壤供钾能力间关系、矿物钾的植物有效性进行了综述 ,表明土壤钾素从有效性的角度进行划分时 ,不能仅把速效性钾和1mol/L热硝酸提取的缓效性钾列为作物吸钾的主要来源 ,而忽视矿物钾的作用 .  相似文献   
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