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1.
Spatial variability in carbon dioxide (CO2), nitrous oxide (N2O) and methane (CH4) emissions from soil is related to the distribution of microsites where these gases are produced. Porous soil aggregates may possess aerobic and anaerobic microsites, depending on the water content of pores. The purpose of this study was to determine how production of CO2, N2O and CH4 was affected by aggregate size and soil water content. An air-dry sandy loam soil was sieved to generate three aggregate fractions (<0.25 mm, 0.25–2 mm and 2–6 mm) and bulk soil (<2 mm). Aggregate fractions and bulk soil were moistened (60% water-filled pore space, WFPS) and pre-incubated to restore microbial activity, then gradually dried or moistened to 20%, 40%, 60% or 80% WFPS and incubated at 25 °C for 48 h. Soil respiration peaked at 40% WFPS, presumably because this was the optimum level for heterotrophic microorganisms, and at 80% WFPS, which corresponded to the peak N2O production. More CO2 was produced by microaggregates (<0.25 mm) than macroaggregate (>0.25 mm) fractions. Incubation of aggregate fractions and soil at 80% WFPS with acetylene (10 Pa and 10 kPa) and without acetylene showed that denitrification was responsible for 95% of N2O production from microaggregates, while nitrification accounted for 97–99% of the N2O produced by macroaggregates and bulk soil. This suggests that oxygen (O2) diffusion into and around microaggregates was constrained, whereas macroaggregates remained aerobic at 80% WFPS. Methane consumption and production were measured in aggregates, reaching 1.1–6.4 ng CH4–C kg−1 soil h−1 as aggregate fractions and soil became wetter. For the sandy-loam soil studied, we conclude that nitrification in aerobic microsites contributed importantly to total N2O production, even when the soil water content permitted denitrification and CH4 production in anaerobic microsites. The relevance of these findings to microbial processes controlling N2O production at the field scale remains to be confirmed.  相似文献   
2.
In 2004 and 2005, the yield, leaf area, dry weight and dry weight partitions of soybeans were determined at the Agroforestry Research Site (ARS) (est. 1987, Ontario, Canada). Soybean was intercropped with poplar (Populus deltoides x nigra DN-177 L., 556 m3crown tree−1), silver maple (Acer saccharinum L., 308 m3), black walnut (Juglans nigra L., 148 m3) and pecan (Carya illinoensis Wangenh., 114 m3), or grown alone (monoculture). Yield of soybean was not different in either year between the monoculture and the black walnut or pecan intercrops. In the poplar and silver maple treatments, yield was 66 and 85% (2004 and 2005) lower than in the monoculture. Despite the fact that different tree species were used, there was a significant negative linear regression between yield and tree crown volume (R 2 = 0.76, P = 0.0049 and R 2 = 0.93, P < 0.0001 in 2004 and 2005, respectively). With increasing tree crown volume, soybean tended to partition more dry matter to the photosynthetic and reproductive parts and less to structural tissue and petiole. This demonstrates the phenotypic flexibility of the crop component in agroforestry systems. Contrary to theoretical predictions, soybean leaves were thicker as shade increased (increase by 6.2 × 10−4–1.2 × 10−3 mg cm−2, per unit of crown volume), pointing to competitive interactions specific to tree-based intercrops.  相似文献   
3.
La lutte chimique contre Solanum elaeagnifolium Cav. a fait l’objet de nombreux travaux de recherche, et ce grâce aux nombreuses expérimentations menées sur un grand nombre d’herbicides (doses, stades d’application, conditions climatiques, biotopes traités, etc.). Les résultats montrent que les herbicides appliqués en cours de végétation n’aboutissent générallement pas à un bon contrôle de l’adventice. En effet, les doses d’herbicides sélectifs de ces cultures sont peu efficaces contre S. elaeagnifolium. Le glyphosate, le sulfosate et l’aminotriazole – herbicides systémiques – se sont montrés très performants et sont préconisés principalement pour le traitement non sélectif des vergers d’oliviers, d’agrumes et d’arbres fruitiers ainsi que des parcelles en postrécolte des cultures (céréales, betterave à sucre, maraîchage). Ils nécessitent des conditions d’application particulières et sont conseillés surtout en cas de fortes infestations. Les phytohormones, l’imazapyr et le bromacile sont utilisés pour le désherbage des bordures de routes publiques boisées et/ou non boisées et éventuellement les parcelles non exploitées. Le bromacile peut être utilisé dans les vergers d’agrumes agés de plus de 4 ans, mais uniquement sur des zones fortement infestées compte tenu de son coût élevé. Par le biais du transfert de technologie chez les agriculteurs, ces derniers ont été convaincus de la possibilité de contrôler cette adventice par le glyphosate et d’autres herbicides lorsqu’un certain nombre de conditions sont respectées. En se basant sur ces résultats, des opérations de lutte chimique ont été menées à grande échelle par les organismes de développement.  相似文献   
4.
耕作机具能耗模拟研究进展(英文)   总被引:1,自引:1,他引:0  
耕作机具的能耗模拟研究始于20世纪60年代。近年来,性能强大的计算机应用和先进建模技术与软件的发展,提高了研究人员建模分析和预测不同耕作条件下(如耕作机具所引起的土壤运动、土体破坏分布、作物残茬处理和肥料施用等)机具性能和能耗状况的能力。研究人员使用解析分析、数值模拟和经验法等方法,建立了耕作机具能耗的多种数学模型。该文对耕作机具能耗数学模型进行了系统的概述,总结了已有的研究成果,重点论述了数学模型的分类和特点,模型参数的测定、验证和模型的适用范围,可为耕作机理深入研究和耕作机具优化改进提供参考。  相似文献   
5.
Signalée pour la première fois au Maroc en 1949, la morelle jaune (Solanum elaeagnifolium Cav.) est devenue à partir des années 80 une adventice préoccupante à l’échelle nationale. Dans un premier temps, l’infestation est restée limitée à la région du Tadla. Mais vingt ans ont suffi à la morelle jaune pour sortir de son berceau et se propager vers des régions éloignées. Des études et des enquêtes effectuées au Maroc ont permis de souligner la grande diversité et l’efficacité de facteurs de dissémination tels que: le fumier organique, les ovins, l’eau d’irrigation, les machines agricoles, les plants en motte et le vent. Toutefois, les trois premiers facteurs restent les plus importants. Suivant les conditions locales, certains de ces facteurs de dissémination deviennent prépondérants et peuvent être simultanés ou successifs.  相似文献   
6.
The burning of agricultural waste is a major cause of environmental pollution. In this study, we sought to prepare biochar from agricultural waste as a source material for the preparation of carbon nanoparticles (CNPs). Surface morphology, hydrodynamic particle size, and purity and crystallinity of CNPs were extensively investigated using transmission electron microscopy (TEM), zeta sizing, and X-ray diffraction (XRD) spectroscopy, respectively. The CNPs were subsequently immersed in a solution of potassium nitrate (KNO3) to prepare a CNPs/NK nanocomposite (CNPs loaded with nitrogen (N) and potassium (K)) as a nanocomposite fertilizer for common bean (Phaseolus vulgaris L.). The CNPs/NK nanocomposite was sprayed as a foliar fertilizer at 0, 10, 20, 30, and 40 mg L-1 on common bean plants 25 d after sowing on a farm in Shebin El-Kom, El-Monifia, Egypt. The growth, yield, and quality of common bean were investigated during two successive growing seasons (2017 and 2018). The highest seed yields of 2.04 and 2.01 t ha-1 and the highest values of growth parameters including plant height of 61.5 and 59.2 cm, number of leaves per plant of 35 and 35, number of flowers per plant of 83.3 and 82.7, and plant fresh weight of 148.7 and 152.8 g plant-1 were obtained when using the CNPs/NK nanocomposite at a concentration of 20 mg L-1 during the 2017 and 2018 growing seasons, respectively.  相似文献   
7.
Soil salinity, which affects more than 6% of the earth’s land surface and more than 20% of its irrigated areas, is a major threat to agriculture. Diazotrophic bacteria are among the functional groups of soil microbiota that are threatened by this abiotic stress, as their activity is mostly inhibited by salt stress. Seventy bacterial strains with distinct characteristics were isolated from soils by using N-free Jensen’s selective medium. Based on their ability to produce metabolites of agricultural interest, four strains were selected and identified as Flavobacterium johnsoniae, Pseudomonas putida, Achromobacter xylosoxidans, and Azotobacter chroococcum. The selected strains were grown at different NaCl concentrations (0–600 mmol L~(-1) in N-free broth and 0–2 000 mmol L~(-1) in Luria-Bertani medium) in the presence and absence of glycine betaine (GB), aqueous and hydro-alcoholic extracts from marine macroalgae, Ulva lactuca and Enteromorpha intestinalis, and Opuntia ficus-indica cladodes. The selected bacterial strains, GB, and the aforementioned extracts were tested for their ability to promote the germination of wheat (Triticum durum) seeds at 0–300 mmol L~(-1) NaCl. Compared with the results obtained with the synthetic osmoprotectant GB, the extracts from O. ficus-indica, U. lactuca, and E. intestinalis significantly promoted bacterial growth and seed germination under salt stress.  相似文献   
8.
We examine the shifting farming system around the small hill dams in northwestern Tunisia. A socio-economic questionnaire was given to a sample of farmers using water from eight representative small hill dams. Cluster analysis was used to establish farmer groups before and after creation of the reservoirs. Before the creation of hill dams, farmers were grouped into two clusters. Afterwards, three new farming systems emerged. The main differences between these groups are farm area, cropping system, irrigation practice, livestock type and number, and income. Following construction of the small hill dams farmers increased the extent of fruit tree cultivation, introduced irrigation practices, and augmented livestock herd size and production. Farmer income increased with the availability of water in the hill dam reservoirs.  相似文献   
9.
Reactive cyclodextrin (RCD) based nanoemulsion and loaded with coconut oil in presence of Tween 80 emulsifying agent for development of antimicrobial medical cotton fabrics is the subject of current research. RCD based nanoemulsion was prepared at different stirring duration, viz, 2, 4, 6 and 24 h in presence of Tween 80. This was done in order to induce varieties in size and morphology of the nanoemulsion. The coconut oil encapsulated RCD based nanocomposite was precipitated as powder using centrifugation technique for 60 min at 4500 rpm and the resulted powder was investigated using TEM and SEM techniques. The images that provided by these techniques confirmed the nano-sized scale of the coconut oil loaded RCD nanocomposite. In addition, the entrapment efficiency of coconut oil loaded RCD based nanoemulsion after centrifugation was calculated and was found to more than 93 %; this is a proof for the successful inclusion of the coconut oil inside the cavity of RCD molecules. Moreover, the obtained RCD based nanoemulsions were applied to bleached cotton fabrics as per the pad-dry-cure method. The as treated cotton fabrics were monitored for nitrogen content, add-on, mechanical properties and morphology vis-a-vis those similarly treated fabrics but using the as prepared microemulsion of RCD loaded with coconut oil in absence of Tween 80. The morphological structure of cotton fabrics treated with the nanoemulsion in question was also examined using SEM technique. Moreover, the biological activity of the nanoemulsion finished fabrics before and after being submitted to 20 washing cycles was investigated against different types of bacteria and fungi as per the inhibition zone method. Results obtained signify: (i) deposition on the fabric of coconut oil loaded RCD nanoemulsion; (ii) the add-on of the nanoemulsion on the surface of cotton fabric is a manifestation of the stirring duration, proofing the formation of ultrafine oil nanoemulsion which penetrates the fabric surface; (iii) the finished fabrics display antimicrobial activity with clear excellent inhibition zone even after 20 washing cycles, indicating the protection of these fabrics for human beings from harmful microbes. In conclusion, the cotton fabrics treated with nanoemulsion of RCD loaded coconut oil is considered as an effective super antimicrobial medical textile against pathogenic microorganisms of both bacteria and fungus species.  相似文献   
10.
Cette revue présente les méthodes de lutte contre la morelle jaune explorées au Maroc. Concernant la lutte culturale, l'emploi d'une culture étouffante comme la luzerne ( Medicago sativa L.) en début de rotation réduit sensiblement l'infestation de cette adventice grâce aux fréquentes coupes, à la grande compétition et à l'effet allélopathique qu'exerce cette culture sur la morelle jaune. En lutte mécanique, trois méthodes ont démontré leur efficacité : le labour profond à la charrue à trois disques, le sweep (outil de 2,5 m de largeur composé de trois lames en V) et la sape (outil manuel qui coupe la plante au niveau du sol). Le labour profond (> 30 cm) et le sweep sont préconisés en début d'été et en post-récolte des cultures. L'intervention à la sape, utilisée 2 à 3 fois par an au stade initiation florale dans différents biotopes, permet l'affaiblissement progressif de l'adventice à moyen terme. La luzerne, le labour profond et le sweep sont conseillés pour les infestations moyennes àélevées. En outre, les interventions mécaniques combinées aux herbicides (le glyphosate, le sulfosate, l'aminotriazole et les phytohormones) donnent souvent de bonnes efficacités. La combinaison de ces méthodes est vivement souhaitable pour les grandes superficies où l'infestation est moyenne à forte.  相似文献   
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