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31.
结合生态农村园发展的要求及对同安造水村的综合考察,从多角度来分析市场形势和造水村的人文、地理等各条件的综合状况,为造水村观光农业旅游资源的合理开发提供较为科学的理论依据,同时,为同安区汀溪镇发展成为厦门市的后花园提供借鉴。  相似文献   
32.
Benefits of organic farming on soil fauna have been widely observed and this has led to consider organic farming as a potential approach to reduce the environmental impact of conventional agriculture. However, there is still little evidence from field conditions about direct benefits of organic agriculture on soil ecosystem functioning. Hence, the aims of this study were to compare the effect of organic farming versus conventional farming on litter decomposition and to study how this process is affected by soil meso- and macrofauna abundances. Systems studied were: (1) organic farming with conventional tillage (ORG), (2) conventional farming with conventional tillage (CT), (3) conventional farming under no-tillage (NT), and (4) natural grassland as control system (GR). Decomposition was determined under field conditions by measuring weight loss in litterbags. Soil meso- and macrofauna contribution on decomposition was evaluated both by different mesh sizes and by assessing their abundances in the soil. Litter decomposition was always significantly higher after 9 and 12 months in ORG than in CT and NT (from 2 to 5 times in average), regardless decomposer community composition and litter type. Besides, mesofauna, macrofauna and earthworm abundances were significantly higher in ORG than in NT and CT (from 1.6 to 3.8, 1.7 to 2.3 and 16 to 25 times in average, respectively for each group). These results are especially relevant firstly because the positive effect of ORG in a key soil process has been proved under field conditions, being the first direct evidence that organic farming enhances the decomposition process. And secondly because the extensive organic system analyzed here did not include several practices which have been recognized as particularly positive for soil biota (e.g. manure use, low tillage intensity and high crop diversity). So, this research suggests that even when those practices are not applied, the non-use of agrochemicals is enough to produce positive changes in soil fauna and so in decomposition dynamics. Therefore, the adoption of organic system in an extensive way can also be suggested to farmers in order to improve ecosystem functioning and consequently to achieve better soil conditions for crop production.  相似文献   
33.
Methane (CH4) is a potent greenhouse gas and the huge CH4 fluxes emitted from paddy fields can prejudice the eco-compatibility of rice cultivation. CH4 production in submerged rice crops is known to be highly influenced by water temperature. Hence, lowering ponding water temperature (LPWT) could be an option to mitigate CH4 emissions from paddy environments when it is possible either to irrigate with slightly colder water or to increase ponding water depth. However, paddy soil is a complex environment in which many processes are simultaneously influenced by temperature, leading to a difficult prediction of LPWT effects. For this reason, LPWT efficiency is here theoretically investigated with a one-dimensional process-based model that simulates the vertical and temporal dynamics of water temperature in soil and the fate of chemical compounds that influence CH4 emissions. The model is validated with literature measured data of CH4 emissions from a paddy field under time-variable temperature regime. Based on modeling results, LPWT appears promising since the simulated reduction of CH4 emissions reaches about −12% and −49% for an LPWT equal to −5 °C during the ripening stage only (last 30 days of growing season, when rice is less sensitive to temperature variations) and −2 °C over the whole growing season, respectively. LPWT affects CH4 emissions either directly (decreasing methanogenic activity), indirectly (decreasing activity of bacteria using alternative electron acceptors), or both. The encouraging results provide the theoretical ground for further laboratory and field studies aimed to investigate the LPWT feasibility in paddy environments.  相似文献   
34.
美国农业保护性耕作技术的启示   总被引:1,自引:0,他引:1  
为了学习与引进先进的保护性耕作技术,阐述了美国保护性耕作的起源,说明了传统耕作给农业生产带来的毁灭性的打击,并通过以免耕为主的保护性耕作的论述,进一步说明了黑龙江省耕作制度改革的必要性。同时通过美国先进耕作制度的论述,提出了黑龙江省发展保护性耕作制度的必要性和具体措施。  相似文献   
35.
根据农业院校高等数学教学体会进行了系统总结和思考,并对当前农业院校高等数学教学遇到的问题提出了改进建议。  相似文献   
36.
2015年越来越多的行业运用"互联网+"为行业创造更多的价值,笔者基于休闲观光农业的现状,从服务形式、游客参与度、营销方式、文化内涵、评价体系方面分析了休闲观光农业行业发展和营销推广中存在的问题,提出利用"互联网+"的技术和手段解决这些问题的方法和措施。  相似文献   
37.
热带农业科技国际合作项目评价体系初探   总被引:1,自引:0,他引:1  
从国际科技合作项目的特点出发,探讨提出热带农业科技国际合作项目评价体系的雏形,并对评价体系的项目前评价、项目中评价及项目后评价3个阶段的评价指标加以充实,为热带农业科技国际合作项目的科学、规范管理提供参考依据。  相似文献   
38.
农业社会化服务体系越发达,就代表着农业现代化发展的程度越高。贵州省属于典型的山区农业省份,农业经济发展水平相对落后,为推进贵州的农业现代化发展,首先需要完善农业社会化服务体系建设。介绍了贵州省农业社会化服务体系建设的发展现状,包括农业技术推广服务、农产品流通服务、农村金融服务、农产品质量安全监管服务、农村信息服务等,并阐述了几种典型的模式,针对贵州农业社会化服务体系建设过程中存在的问题,提出发展对策。  相似文献   
39.
田丽娜  吴玲  阎平  曹婷 《干旱区研究》2016,(6):1235-1241
通过野外实地考察和标本资料,研究表明:新疆西昆仑山豆科植物共计有7族12属67种,分别占新疆豆科属、种总数的25.53%和15.51%。该区豆科植物多生于山地,区系中单种属(6属)和寡种属(4属)共计10属,所占比例较高,但多种属(棘豆、黄耆)2属含47种,分别占属、种总数的16.67%和70.15%,优势明显。植物生活型以地面芽植物(多年生草本)为优势,有55种,占82.09%;其他1啊生植物、灌木、半灌木、垫状灌木合12种,共占17.91%,有一定的适应性。该区豆科植物属的地理成分具明显的温带性质,其区系中温带及含温带分布的属有10属,占总属数的83.33%。本区与帕米尔高原豆科共有属有11属,属的相似性系数高达73.33%,表明两地豆科植物关系密切;而与喀喇昆仑山的相似性系数较低,5个共有属集中于高海拔区,表明两地高海拔区有较密切联系。  相似文献   
40.
Elevated CO2 stimulates crop yields but leads to lower tissue and grain nitrogen concentrations [N], raising concerns about grain quality in cereals. To test whether N fertiliser application above optimum growth requirements can alleviate the decline in tissue [N], wheat was grown in a Free Air CO2 Enrichment facility in a low‐rainfall cropping system on high soil N. Crops were grown with and without addition of 50–60 kg N/ha in 12 growing environments created by supplemental irrigation and two sowing dates over 3 years. Elevated CO2 increased yield and biomass (on average by 25%) and decreased biomass [N] (3%–9%) and grain [N] (5%). Nitrogen uptake was greater (20%) in crops grown under elevated CO2. Additional N supply had no effect on yield and biomass, confirming high soil N. Small increases in [N] with N addition were insufficient to offset declines in grain [N] under elevated CO2. Instead, N application increased the [N] in straw and decreased N harvest index. The results suggest that conventional addition of N does not mitigate grain [N] depression under elevated CO2, and lend support to hypotheses that link decreases in crop [N] with biochemical limitations rather than N supply.  相似文献   
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