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1.
我国饲料粮区域产消平衡特征及政策启示 总被引:3,自引:0,他引:3
我国饲料粮消耗量大且增长迅速,已经成为我国粮食安全的首要影响因素,准确判断我国饲料粮的区域产消平衡特征对农业相关政策的制订具有重要的现实意义。论文在详细分析各省区不同畜牧产品粮食转化系数的基础上,对区域饲料粮的产消平衡状态及其原因进行了研究。结果显示:1)近年来我国饲料粮消费量快速上升,由2000年的21 730万t增长到2015年的30 549万t,15 a间增长了8 819万t。2)2015年生猪饲料粮消耗量最大,比例达到了44.4%,占据了我国饲料消耗总量的半壁江山。其次为禽蛋与禽肉消耗,消费占比分别为15.8%与12.7%;牛肉、羊肉、牛奶与水产品的饲料粮消费量比例均在5%~9%之间。3)2015年全国饲料粮总计短缺4 276万t,区域上呈现“北余南缺”的格局,东北黑龙江、吉林、内蒙古三省(区)成为我国最重要的饲料粮供应区域。从粮食转换系数与饲养结构来看,“北粮南运”现象是粮食资源的合理配置。论文提出三点政策建议:1)转变消费结构,增加牛肉与牛奶的消费量;2)推动“以粮为纲”向“粮经饲”三元种植结构转变;3)充分利用国际市场,从全球视角保护粮食安全。 相似文献
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《环境科学学报(英文版)》2023,35(3):553-567
Based on the online and membrane sampling data of Yuncheng from January 1st to February 12th, 2020, the formation mechanism of haze under the dual influence of Spring Festival and COVID-19 (Corona Virus Disease) was analyzed. Atmospheric capacity, chemical composition, secondary transformation, source apportionment, backward trajectory, pollution space and enterprise distribution were studied. Low wind speed, high humidity and small atmospheric capacity inhibited the diffusion of air pollutants. Four severe pollution processes occurred during the period, and the pollution degree was the highest around the Spring Festival. In light, medium and heavy pollution periods, the proportion of SNA (SO42−, NO3− and NH4+) was 59.6%, 56.0% and 54.9%, respectively, which was the largest components of PM2.5; the [NO3−]/[SO42−] ratio was 2.1, 1.5 and 1.7, respectively, indicating that coal source had a great influence; the changes of NOR (nitrogen oxidation ratio, 0.44, 0.45, 0.61) and SOR (sulphur oxidation ratio, 0.40, 0.49, 0.65) indicated the accumulation of secondary aerosols with increasing pollution. The coal combustion, motor vehicle, secondary inorganic sources and industrial sources contributed 36.8%, 26.59%, 11.84% and 8.02% to PM2.5 masses, respectively. Backward trajectory showed that the influence from the east was greater during the Spring Festival, and the pollutants from the eastern air mass were higher, which would aggravate the pollution. Meteorological and Spring Festival had a great impact on heavy pollution weather. Although some work could not operate due to the impact of the COVID-19 epidemic, the emission of pollutants did not reduce much. 相似文献
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Athanasios A. Rentizelas Athanasios I. Tolis Ilias P. Tatsiopoulos 《Waste management (New York, N.Y.)》2014,34(1):36-48
Municipal Solid Waste (MSW) disposal has been a controversial issue in many countries over the past years, due to disagreement among the various stakeholders on the waste management policies and technologies to be adopted. One of the ways of treating/disposing MSW is energy recovery, as waste is considered to contain a considerable amount of bio-waste and therefore can lead to renewable energy production. The overall efficiency can be very high in the cases of co-generation or tri-generation. In this paper a model is presented, aiming to support decision makers in issues relating to Municipal Solid Waste energy recovery. The idea of using more fuel sources, including MSW and agricultural residue biomass that may exist in a rural area, is explored. The model aims at optimizing the system specifications, such as the capacity of the base-load Waste-to-Energy facility, the capacity of the peak-load biomass boiler and the location of the facility. Furthermore, it defines the quantity of each potential fuel source that should be used annually, in order to maximize the financial yield of the investment. The results of an energy tri-generation case study application at a rural area of Greece, using mixed MSW and biomass, indicate positive financial yield of investment. In addition, a sensitivity analysis is performed on the effect of the most important parameters of the model on the optimum solution, pinpointing the parameters of interest rate, investment cost and heating oil price, as those requiring the attention of the decision makers. Finally, the sensitivity analysis is enhanced by a stochastic analysis to determine the effect of the volatility of parameters on the robustness of the model and the solution obtained. 相似文献
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剩余污泥中木质纤维素稳定并转化能源可行性分析 总被引:4,自引:3,他引:1
剩余污泥中往往含有大量木质纤维素物质,在厌氧消化过程中难以降解,最终被浓缩于熟污泥中,这就是导致污泥有机物稳定并转化能源效率低下的主要原因之一.本文分析了剩余污泥中木质纤维素的含量与来源;阐述了木质纤维素的结构特点以及对其生物降解的关键技术所在;揭示了污泥常规预处理与木质纤维素预处理存在工艺条件不同的相似技术.文章结合两种预处理技术的特点和工艺条件,从原理、技术等角度分析了通过强化剩余污泥预处理而同时达到破解木质纤维素的技术思路.为此,提出了将污泥细胞破碎与木质纤维素破解耦合的观点,以期将污泥中木质纤维素的稳定与能源转化合二为一,从而构建木质纤维素稳定化、能源化与碳减排三位一体的技术策略 相似文献
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为了进一步研究当量加速关系,归纳了现有腐蚀损伤当量化的研究方法,详细介绍了基于电化学原理、物理参量和力学损伤的当量折算法,讨论了各种方法的优劣和所适用范围。基于电化学原理的当量加速关系研究方法适合用于制定飞机金属结构加速试验环境谱,以物理参量为基准的当量折算法适用于建立疲劳关键部位、腐蚀关键部位的涂层及金属基体等各种加速试验环境谱的当量加速关系,力学损伤对比法适合用于结构疲劳关键部位。最后得出针对不同材料、不同部位应该采用不同的当量加速关系的结论。 相似文献
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Zhen Bi Deqing Wanyan Xiang Li Yong Huang 《Frontiers of Environmental Science & Engineering》2020,14(3):38
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