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91.
为综合评价新型生态清洁技术应用下的规模沼气工程的综合生态效益,该文以北京市顺义区D沼气工程(同时应用沼液循环回用技术和太阳能-地源热泵增温保温技术)为研究对象,利用能量系统图和能值评价体系,从经济效益、环境效益和可持续性3个方面对该系统进行了综合性能值分析,分析了沼液循环回用和太阳能-地源热泵增温保温清洁技术的应用对规模化沼气工程生态经济效益的影响。结果表明:太阳能-地源热泵增温保温技术在规模化沼气工程中的使用,不可再生购买资源投入减少8.80%,系统可持续性提升18.75%,有效替代了化石能源的使用,生态经济效益明显。同时,沼液循环回用技术的应用,可使地下水投入减少65%,在沼气工程周边土地无法充分消纳该沼气工程产生沼液的条件下,可节省1.77E+05美元/a的农田消纳后的剩余沼液排污处理费,环境负荷率减小68.52%,能值可持续指标由0.03增为0.38,系统自我维持能力提升。因此,沼液循环回用和太阳能-地源热泵技术的应用对该沼气工程系统的经济、环境和生态效益有很大改善作用。  相似文献   
92.
为了实现计算机系统对食品安全风险的自动报警与智能决策,该文以国家食品安全标准为安全指标,研究了食品安全信息风险的量化算法和计算机软件实现方法。针对可能出现的不同食品安全风险,提出了依据检测数据和其它监管信息,将食品安全信息风险分为5个等级的数据模型。并结合牛奶检测实例,探讨了将此数学模型编程实现计算机软件系统的关键步骤和技术。实际应用结果表明该系统的可操作性和科学性,可以对不同的食品安全事件发出预警,实现预警的系统性和连贯性。  相似文献   
93.
紫外吸收法、电导率法检验大白菜种子活力的研究   总被引:2,自引:0,他引:2  
通过人工老化种子和不同年代种子具有的活力不同,以发芽指数为活力参考标准来探索种子浸泡液电导率测定法和紫外吸收测定法是否适合大白菜种子活力的快速检测.结果表明:大白菜种子紫外区随着波长的缩短吸收值增大,但经玻璃比色杯滤过后会在286 nm下显示吸收峰,随着种子活力的降低286 nm下的OD值呈上升趋势,对发芽率高于85%的种子适用,而对于活力过低的种子检验不可靠;随着种子活力的降低电导率呈上升趋势,但对活力差异较小的种子间检验不可靠.因此,对发芽率合格范围内的种子可以根据286 nm(玻璃比色皿)紫外吸收值评价大白菜种子活力的高低,其他的种子可参考电导率值比较种子活力.  相似文献   
94.
秸秆还田对土壤养分及土壤微生物数量的影响   总被引:6,自引:3,他引:6  
为探明秸秆还田后土壤养分及土壤微生物数量的变化情况,通过田间试验,研究了秸秆还田对小麦-玉米轮作体系中土壤养分及土壤微生物数量的影响。结果表明:秸秆还田可以增加土壤有机质含量,提高土壤养分库容,增加土壤中细菌、真菌及放线菌数量。50%秸秆还田、100%秸秆还田、150%秸秆还田条件下,土壤有机质增幅为0.02~0.04个百分点,土壤碱解氮、有效磷、速效钾分别增加6.64~9.00、3.37~4.07、10.33~19.00 mg/kg。不同秸秆还田量增加土壤微生物丰富度,细菌、真菌、放线菌增幅分别为2.2×108个/g~3.1×108个/g、0.5×106个/g ~3.5×106个/g、1.3×107个/g ~1.9×107个/g。但过量秸秆还田不利于农田生产力。  相似文献   
95.
In this paper, a contribution to the design of collective pressurised irrigation networks in solid-set sprinkler-irrigated windy areas is presented. The methodology is based on guaranteeing minimum on-farm performance, using a historical hourly wind speed database and a ballistic solid-set irrigation simulation model. The proposed method was applied to the Montesnegros Irrigation District (central Ebro basin, Spain). The district irrigates an area of 3493 ha using an on-demand schedule. The average wind speed in the area is 2.8 m s−1. An analysis of district water records showed that farmers often reduce water demand when the wind speed is high, but their irrigation decision making is limited by the capacity of the irrigation network and by the unpredictable character of local winds. Simulations were performed for 11 irrigation seasons, 2 triangular sprinkler spacings (18 m × 18 m and 18 m × 15 m), and 2 sprinkler models. The percentage of monthly suitable time for irrigation was determined for four management strategies. The first one was based on a wind speed threshold (3 m s−1), while the other three were based on three levels (standard, relaxed and restrictive) of two irrigation performance parameters: the Christiansen Uniformity Coefficient (CU) and the Wind Drift and Evaporation Losses (WDEL). The standard strategy classified the time as suitable for irrigation when CU ≥ 84% and WDEL ≤ 20%. The thresholds limits of the irrigation parameters for the relaxed strategy were CU ≥ 80% and WDEL ≤ 25%. Finally, the restrictive strategy used thresholds of CU ≥ 90% and WDEL ≤ 15%. The suitable time for the first strategy (56%) was always lower than for the standard and the relaxed strategies (with respective average values of 75 and 86%), and higher than for the restrictive strategy (30%). In order to design the collective network, the hydrant operating time was equalled to the suitable time for irrigation. The differences in the cost of the collective network plus the on-farm equipment were particularly relevant between the restrictive strategy and the other three. Differences in suitable operating time were clear between sprinkler spacings, and less evident between sprinkler models. The application of the proposed methodology may be limited by the availability of historical wind speed records and CU estimates for different combinations of sprinkler models, sprinkler spacings and wind speed.  相似文献   
96.
连续流粮食干燥控制系统变量分析与结构设   总被引:2,自引:0,他引:2  
针对粮食干燥影响因素多且不确定,以及测量结果存在滞后的问题,提出了连续流粮食干燥被控变量和控制变量的选择方法,通过实验数据对影响粮食干燥过程的各因素及各因素对粮食出口含水率的灵敏度进行了分析.结果表明,影响较大的因素有排粮电动机转速、热风温度、粮食初始含水率,影响较小的因素有环境温度、热风和冷却风风量、粮食初始温度.设计了连续流粮食干燥过程自动控制系统的控制结构,引入微分环节可有效抑制因测量而造成的滞后现象.  相似文献   
97.
医药分子农业的受体系统评述   总被引:2,自引:0,他引:2  
利用转基因植物以农业规模生产口服疫苗、植物抗体、药用蛋白的途径称为医药分子农业。随着医药分子农业的发展,可作为受体的植物的种类正逐步扩大。但对于一个特定的目标蛋白,选用何种受体植物更有利于外源蛋白的高效稳定表达和经济快捷的提纯,仍是需要首要考虑和解决的问题。本文结合最近的研究进展,阐述各类植物受体的特点及应用情况,以期为科学地确定医药分子农业的适宜植物受体系统提供参考。  相似文献   
98.
In this paper,we discuss a mathematical mode) for optimization of active power dispatch of large-scale hydro-thermal power systems with cascaded hydropower stations. The following factors are taken into account: the variation of the head in the hydropower stations, water transport delay between cascaded stations etc. Using the decomposition-coordination method of large scale systems, we obtain a three-layer-hierarchical coordination system and a three-layer-hierarchical computational structure. We also discuss the computational methods which are used by each hierarchy. We have taken a test computation and analysing the result of an actual hydrothermal power system. The computational results show that it may obtain a satisfactory economic benefit. The paper provides some research work on the economic scheduling of hydrothermal power systems by the decomposition-coordination method of large-scale systems,multiplier method and a new variable metric method.  相似文献   
99.
Water scarcity is a major factor limiting food production. Improving Livestock Water Productivity (LWP) is one of the approaches to address those problems. LWP is defined as the ratio of livestock’s beneficial outputs and services to water depleted in their production. Increasing LWP can help achieve more production per unit of water depleted. In this study we assess the spatial variability of LWP in three farming systems (rice-based, millet-based and barley-based) of the Gumera watershed in the highlands of the Blue Nile basin, Ethiopia. We collected data on land use, livestock management and climatic variables using focused group discussions, field observation and secondary data. We estimated the water depleted by evapotranspiration (ET) and beneficial animal products and services and then calculated LWP. Our results suggest that LWP is comparable with crop water productivity at watershed scales. Variability of LWP across farming systems of the Gumera watershed was apparent and this can be explained by farmers’ livelihood strategies and prevailing biophysical conditions. In view of the results there are opportunities to improve LWP: improved feed sourcing, enhancing livestock productivity and multiple livestock use strategies can help make animal production more water productive. Attempts to improve agricultural water productivity, at system scale, must recognize differences among systems and optimize resources use by system components.  相似文献   
100.
Free-drainage or “open” substrate system used for vegetable production in greenhouses is associated with appreciable NO3 leaching losses and drainage volumes. Simulation models of crop N uptake, N leaching, water use and drainage of crops in these systems will be useful for crop and water resource management, and environmental assessment. This work (i) modified the TOMGRO model to simulate N uptake for tomato grown in greenhouses in SE Spain, (ii) modified the PrHo model to simulate transpiration of tomato grown in substrate and (iii) developed an aggregated model combining TOMGRO and PrHo to calculate N uptake concentrations and drainage NO3 concentration. The component models simulate NO3-N leached by subtracting simulated N uptake from measured applied N, and drainage by subtracting simulated transpiration from measured irrigation. Three tomato crops grown sequentially in free-draining rock wool in a plastic greenhouse were used for calibration and validation. Measured daily transpiration was determined by the water balance method from daily measurements of irrigation and drainage. Measured N uptake was determined by N balance, using data of volumes and of concentrations of NO3 and NH4+ in applied nutrient solution and drainage. Accuracy of the two modified component models and aggregated model was assessed by comparing simulated to measured values using linear regression analysis, comparison of slope and intercept values of regression equations, and root mean squared error (RMSE) values. For the three crops, the modified TOMGRO provided accurate simulations of cumulative crop N uptake, (RMSE = 6.4, 1.9 and 2.6% of total N uptake) and NO3-N leached (RMSE = 11.0, 10.3, and 6.1% of total NO3-N leached). The modified PrHo provided accurate simulation of cumulative transpiration (RMSE = 4.3, 1.7 and 2.4% of total transpiration) and cumulative drainage (RMSE = 13.8, 6.9, 7.4% of total drainage). For the four cumulative parameters, slopes and intercepts of the linear regressions were mostly not statistically significant (P < 0.05) from one and zero, respectively, and coefficient of determination (r2) values were 0.96-0.98. Simulated values of total drainage volumes for the three crops were +21, +1 and −13% of measured total drainage volumes. The aggregated TOMGRO-PrHo model generally provided accurate simulation of crop N uptake concentration after 30-40 days of transplanting, with an average RMSE of approximately 2 mmol L−1. Simulated values of average NO3 concentration in drainage, obtained with the aggregated model, were −7, +18 and +31% of measured values.  相似文献   
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