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31.
N. Fitton C. P. Ejerenwa A. Bhogal P. Edgington H. Black A. Lilly D. Barraclough F. Worrall J. Hillier P. Smith 《Soil Use and Management》2011,27(4):491-501
The aim of this paper is to assess the greenhouse gas (GHG) mitigation potential of croplands and grasslands in Great Britain under different management practices. We consider the feasible land management options for grass and cropland using county level land‐use data with estimates of per‐area mitigation potential for individual and total GHGs, to identify the land management options with the greatest cost‐effective mitigation potential. We show that for grasslands, uncertainties still remain on the mitigation potential because of their climatic sensitivity and also their less intensive management. For croplands in Great Britain, the technical mean GHG mitigation potentials for all cropland management practices range from 17 Mt CO2‐eq. per 20 yr to 39 Mt CO2‐eq. per 20 yr. There are significant regional variation in all cases, with the greatest potentials in England, negligible potential in Wales and intermediate potential in Scotland, with country differences largely driven by the areas of cropland and grassland in each country. Practices such as agronomic improvement and nutrient management are the most promising options because of their impact on N2O emissions and also their larger potential at low cost. In terms of annual emissions from agriculture, calculated mitigation potentials are small, where the technical mitigation potential of agronomy and nutrient management strategies are ca. 4.5 and 3.8%, respectively (agricultural emissions account for ca. 9% or 47.7 Mt CO2‐eq., of total Great Britain GHG emissions, Department of Energy and Climate Change, UK). However when compared with the land use, land‐use change and forestry sector (LULUCF) emissions, nutrient management would reduce further emission reductions by approximately half of the 2005 LULUCF sink (i.e. ?1.6 Mt CO2‐eq. per year). 相似文献
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对宿迁市宿城区半地下土墙日光温室基地的生产现状进行了详细了解,并分析了其发展优势和存在的隐患,进一步提出了相应的发展对策。 相似文献
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针对我国南方地区夏季高温高湿的气候条件,对采用天窗、外遮阳、内喷雾降温措施的试验Venlo温室内温度状况进行了模拟研究。以室外气候参数为边界条件,考虑作物和环境的相互作用,内喷雾系统和室内环境的质热交换以源项的形式加入到控制方程中,采用CFD(computational fluid dynamics)中的稳态方法求解控制方程,模拟Venlo型温室不同调控措施及组合下的温室内温度分布特点,分析各种调控措施的调控效果。模拟结果表明:采用加入源项的方法模拟内喷雾系统和室内空气的质热交换,其模拟值和实测值均方根误差RMSB为0.514 4℃,最大绝对误差为0.75℃,平均相对误差为1.3%,说明所建立的CFD模型有效。3种降温措施下,以外遮阳+自然通风的降温贡献率最大(80.6%),能耗最高的喷雾系统降温贡献率仅为34.8%,较高的环境湿度影响了喷雾系统的降温效率。CFD夏季降温模型的建立为温室作物系统的环境控制策略的制定提供了科学依据。 相似文献
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针对我国北方寒地水稻育秧大棚的结构特点,设计并开发了一套基于ZigBee的智能控制系统,并构建了该系统的星型网络,用以实现将传感器采集到的数据进行无线传输的功能。系统进行数据采集的模块分别采用AT89S52单片机、数字式空气温湿度传感器DB420、数字式土壤温度传感器DS18B20和数字式土壤水分传感器SM2802M,用这些模块来监测空气中的温湿度、土壤温度以及土壤水分等,将监测到的数据通过JM12864F显示出来。这些采集模块还可以监测到大棚内的空气温湿度、土壤温度、土壤水分含量等实时信息,并对这些信息进行分析处理,将分析处理的结果发送到用户手中,达到远程监控的目的。 相似文献
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Comparison of emission estimates for non‐CO2 greenhouse gases from livestock and poultry in Korea from 1990 to 2010
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It has often been claimed that non‐carbon dioxide greenhouse gases (NCGGs), such as methane, nitrous oxide and fluorinated greenhouse gases, are significant contributors to climate change. Here we nvestigate emission estimates of methane and nitrous oxide from livestock and poultry production, which is recognized as a major source of those NCGGs, in Korea over the period of 1990 through 2010. Based on the data on livestock and poultry populations, emission estimates of methane and nitrous oxide are first derived based on the Tier 1 approach. Then, the Tier 2 approach is adopted to obtain emission estimates of methane and nitrous oxide from cattle, which are known to be the largest sources of these NCGGs and account for about 70% of emissions from livestock and poultry in Korea. The result indicates that the Tier 2 estimates of methane and nitrous oxide emissions from enteric fermentation and manure management are significantly different from the Tier 1 estimates over the analysis period. 相似文献
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