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排序方式: 共有244条查询结果,搜索用时 15 毫秒
1.
用通径分析的方法分析了不同形态硫对土壤有机质的作用。结果表明 :在影响土壤有机质的诸多硫组分中 ,以全硫为主 ,其次是未知态硫和全硫的共同作用 ,再次是碳键硫和全硫的共同作用 ,脂键硫排在第九位。有机硫起主要作用 相似文献
2.
该文通过对邓州市2006~2007连续两年所分析的4700个土样有效硫(S)化验结果整理分析发现,邓州市目前近30%耕地中有效态硫含量对禾谷类作物而言是缺乏的,有近60%的耕地中有效态硫含量对于种植十字花科、百合科、豆科等需硫较多的作物来说,属于潜在缺硫耕地;同时从施肥结构、种植结构变化详细分析了其产生的原因,并依据硫在植物体内移动状况、硫肥性状等因素提出相应对策。 相似文献
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4.
Stefan Möth Markus Redl Silvia Winter Florian Hüttner Siegrid Steinkellner 《Pest management science》2023,79(9):3080-3089
BACKGROUND
A reduction in chasmothecia, an important inoculum of grape powdery mildew (Erysiphe necator Schwein.), is essential for disease control in vineyards; the use of fungicides during the formation of chasmothecia on vine leaves, late in the growing season, may accomplish this. Inorganic fungicides, such as sulphur, copper, and potassium bicarbonate, are very useful for this purpose because of their multisite mode of action. The aim of this study was to evaluate chasmothecia reduction using different fungicide applications late in the growing season in commercially managed vineyards and in an exact application trial.RESULTS
Chasmothecia on vine leaves were reduced in commercial vineyards by four copper (P = 0.01) and five potassium bicarbonate (P = 0.026) applications. The positive effect of potassium bicarbonate was also confirmed in the application trial, where two applications showed lower chasmothecia numbers than the control (P = 0.002).CONCLUSION
The application of inorganic fungicides reduced the amount of chasmothecia as the primary inoculum source. Potassium bicarbonate and copper are of further interest for disease control as these fungicides can be used by organic and conventional wine growers. The application of these fungicides should be carried out as late as possible before harvest to reduce chasmothecia formation and, consequently, the potential for powdery mildew infestation in the subsequent season. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献5.
6.
《Communications in Soil Science and Plant Analysis》2012,43(4):331-339
Abstract A field experiment was conducted on an alkaline calcareous soil of Agronomy farm of the College of Agriculture, University of Udaipur to study the effect of sulphur on crop yield, leaf elemental composition, chlorophyll synthesis and activities of haematin enzymes. Application of elemental sulphur 21 days before planting with and without 0.1 per cent foliar sprays of H2SO4. increased crop yield by 137 to 197 per cent. Application of all these treatnents had no effect on nitrogen, phosphorus and potassium content of leaves but sulphur content was signficantly increased. Iron content of green leaves was decreased significantly 4 to 5 times together with an increase in the activity of catalase and peroxidase enzymes. Chlorosis in these soils appears to be on account of a reduced physiological availability of iron after absorption. 相似文献
7.
Youde H 《Veterinary research communications》2001,25(7):585-590
Veterinary Research Communications - 相似文献
8.
为了对规划期间排入大气的SO2进行有效的控制,本文应用B-P人工神经网络方法建立了山西省运城市各县(区)人口数量、燃煤量、工业总产值和SO2排放量与SO2浓度的规划期综合预测模型,以实现在规划期间对大气的SO2的预测和控制。 相似文献
9.
M. Novo C. M. Gayoso F. Pomar M. M. Lucas A. Ros Barceló F. Merino 《Plant pathology》2007,56(6):998-1004
Elemental sulphur levels, sulphur localization in stems, and levels of sulphate, glutathione and cysteine were studied in pepper ( Capsicum annuum ) cvs Yolo Wonder (higher resistance) and Luesia (lower resistance) after inoculation with Verticillium dahliae , the cause of vascular wilt. Accumulation of elemental sulphur (S0 ) was first detected 10 days after inoculation in Yolo Wonder (mean S0 level 7·3 µ g g−1 DW), and 15 days after inoculation in Luesia (mean S0 level 3·3 µ g g−1 DW). The maximum level was reached 21 days after inoculation in Yolo Wonder (14·1 µ g g−1 DW). In control plants, elemental sulphur was not detected. SEM-EDX (scanning electron microscopy-energy dispersive X-ray microanalysis) indicated that the sulphur was not restricted to a specific location, but was dispersed throughout the vascular tissue. Sulphate levels showed a decline at the end of the experiment in inoculated plants, possibly related to the increase in sulphur levels seen in the two cultivars. The differences in sulphate levels between the two cultivars may be due to faster sulphate breakdown in cv. Yolo Wonder. 相似文献
10.
A. Brandt‐Kjelsen E. Govasmark A. Haug B. Salbu 《Journal of animal physiology and animal nutrition》2014,98(3):547-558
Inorganic selenium (Se) in the form of selenite is applied to livestock to avoid Se deficiency. Selenite is, however, an artificial Se source in diets of unsupplemented chickens. It is therefore hypothesized that organic Se sources, such as Se‐enriched yeast and wheat, could be a more suitable Se supply in animal nutrition, although information on the transition of Se from organic Se sources in fast‐growing chickens is scarce. In this work, chickens were fed a low Se diet (0.27 ± 0.01 mg Se/kg, Se‐enriched yeast) until 20 days of age, after which the Se concentration was increased to maximum concentration allowed by the poultry industry in Europe (0.5 p.p.m. Se). At the same time, a daily contribution of carrier‐free 75Se tracer from labelled wheat was administered from day 20 to 27. The chickens showed S and Se homeostasis, as the concentration of S and Se in liver, blood or kidney remained about constant, and steady state of S and Se in the other organs was reached 1 day after the diet shift. The uptake of 75Se was readily seen in all organs. After 1 week, the depuration of the 75Se tracer was followed, and biological half‐lives and retention in individual organs were determined. The shortest biological half‐lives were observed in major metabolic organs, the liver, kidney and pancreas with half‐lives close to 4 days. There was a significant (p < 0.05) uptake in lung, brain and muscle that reached steady state when the administration of 75Se was terminated. The half‐life of 75Se in heart was 9 days and 7 days in blood. The longest half‐lives were observed in muscle (12 days), brain and lungs (13 days). All half‐lives were shorter than in Se deplete animals. 相似文献