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基于AERMOD线源模式的城市路网一次PM2.5排放扩散特征研究   总被引:1,自引:0,他引:1  
机动车排放的一次细颗粒物(PM_(2.5))易在城市交通密集区域和高峰时段扩散积累,形成高浓度的排放热点区域,对人体健康影响显著.本研究基于本地化机动车路网排放清单,应用AERMOD扩散模型对北京市六环内区域进行线源扩散模拟,探讨城市路网一次PM_(2.5)扩散浓度的时空变化规律与排放特征、气象条件和临时控制措施的关系.研究表明,在典型工作日的排放水平下,冬季工作日的机动车源一次PM_(2.5)模拟浓度日均值为2.94μg·m-3,夏季工作日为1.95μg·m-3.两季24 h浓度变化均呈夜间浓度高于日间的特点,但两季峰值在气象条件和排放强度的双重作用下又有所区别.冬季早晚高峰峰值浓度分别为日均浓度的2.3和1.7倍,而夏季早晚高峰由于扩散条件相对较好并未明显形成一次PM_(2.5)峰值.研究还以APEC峰会为例,评估峰会期间临时交通管控措施的影响.结果发现,在相似的季节气象条件下,APEC峰会期间机动车源一次PM_(2.5)模拟浓度日均值较峰会前削减50.1%,凌晨5:00达到小时最大削减率66.6%.冬夏季工作日机动车源一次PM_(2.5)扩散浓度的空间分布呈偏态分布,65%的浓度集中在30%的网格面积上.以冬季工作日为例,高浓度热点区域主要集中在各环路快速路、易拥堵主干道及省道、国道和高速路上,以上道路应成为排放控制的重点对象.  相似文献   
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Climate change and variability has the potential to impact crop growth by altering components of a region’s water balance. Evapotranspiration driven by higher temperatures can directly increase the demand of irrigation water, while indirectly decreasing the length of the annual crop growth period. The accompanying change in precipitation also affects the need to supply irrigation water. This study focuses on the spatial and temporal variation of historical and future irrigation water requirements of winter wheat (Triticum aestivum L.) in the Haihe River Basin, China. Irrigation water requirement is estimated using a simple water balance model. Climate change is incorporated by using predicted changes in daily precipitation and temperature. Changes in evapotranspiration and crop phenophase are then calculated for historical and future climate. Over the past 50 years, a decrease in total net irrigation water requirement (NIR) was observed mainly due to a reduction in the crop growth period length. The NIR is shown to decrease 2.8~6.9 mm with a 1-day reduction in growth period length. In the future, sowing period will come later and the heading period earlier in the year. The NIR in November, March and April is predicted to increase, especially in April. Increased NIR can result in increased water deficit, causing negative impacts on crop yield due to water stress. In the future, more attention should be paid to water resource management during the annual crop growth period of winter wheat in the Haihe River Basin.  相似文献   
3.
Biochar is increasingly been used as a soil amendment to improve water-holding capacity, reduce nutrient leaching, increase soil pH, and also as a means to reduce contamination through sorption of heavy metals or organic pollutants. The sorption behavior of three phenylurea herbicides (monuron, diuron and linuron) on five biochars (Enhanced Biochar, Hog Waste, Turkey Litter, Walnut Shell and Wood Feedstock) and an agricultural soil (Yolo silt loam) was investigated using a batch equilibration method. Sorption isotherms of herbicides to biochars were well described by the Freundlich model (R2 = 0.93–0.97). The adsorption KF values ranged from 6.94 to 1306.95 mg kg?1 and indicated the sorption of herbicides in the biochars and Yolo soil was in the sequence of linuron > diuron > monuron and walnut shell biochar > wood feedstock biochar > turkey litter biochar > enhanced biochar > hog waste biochar > Yolo soil. These data show that sorption of herbicides to biochar can have both positive (reduced off-site transport) and negative (reduced herbicide efficacy) implications and specific biochar properties, such as H/C ratio and surface area, should be considered together with soil type, agriculture chemical and climate condition in biochar application to agricultural soil to optimize the system for both agricultural and environmental benefits.  相似文献   
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为降低深部矿体开采中冒顶事故的发生概率,确保井下安全开采,采用Q系统分级法、RMR岩体分类和BQ分级法对矿区岩体进行质量评价,结合块体理论和三维有限元分析进路开挖后顶板的稳定性。研究表明:部分岩体在进路开挖后顶板处出现较大拉应力集中,抗拉稳定性降低,极有可能出现冒顶事故。针对这类不稳定岩体,提出永久巷道采用锚喷支护,临时巷道采用锚杆穿带支护;并运用悬吊理论、组合梁理论、屈服强度理论和安全系数法分析支护条件下进路顶板的稳定性,优化支护结构参数。通过振弦式锚杆应力计收集现场未支护巷道与支护巷道轴向力,得出该支护设计对开挖后岩体变形起到了明显改善作用。  相似文献   
5.
Journal of Material Cycles and Waste Management - Coal gangue, an industrial solid waste discarded from coal mining and processing, was used as the sole raw material to prepare brick. The coal...  相似文献   
6.
利用低能量超声波分散、虹吸法沉降分离的方法分离不同粒径的水稻土团聚体颗粒,采用恒温振荡法研究不同浓度磷酸盐预处理的团聚体对Cd2+、Cr(Ⅵ)平衡吸附以及吸附动力学的影响。结果表明,砂粒级、粗粉砂级、粉砂级和粘粒级对P吸附量分别小于50、46、50和97 mg?kg-1,Cd2+吸附量低于未处理土样,P吸附量大于该数值,Cd2+吸附量高于未处理土样,团聚体吸附磷酸盐对Cd2+吸附量的影响,表现为低P吸附量抑制Cd2+的吸附,高P吸附量促进Cd2+的吸附,即随P吸附量增加Cd2+的吸附量呈波谷形变化;而团聚体吸附磷酸盐后对Cr(Ⅵ)的吸附则表现明显的抑制作用。磷酸盐预处理的团聚体对Cd2+、Cr(Ⅵ)吸附量大小顺序均为粘粒级>砂粒级>粗粉砂级>粉砂级,与有机质和游离氧化铁的含量顺序一致。团聚体对Cd2+的吸附过程分为快、慢两个阶段,快吸附阶段用一级动力学方程拟合最佳,而慢吸附时段用扩散方程和Elovich方程拟合最佳,表明吸附过程由不同的吸附因素控制。团聚体吸附磷酸盐后对Cd2+的吸附动力学常数增大。团聚体对Cr(Ⅵ)的吸附过程无明显快、慢阶段,对Cr(Ⅵ)吸附的整个过程用双常数速率方程和Elovich方程进行描述最佳,团聚体吸附磷酸盐后对Cr(Ⅵ)的吸附动力学常数减小。磷酸盐对土壤中重金属吸附的影响与金属离子类型以及磷吸附量有关,所以采用磷肥等含磷物质修复重金属污染土壤要注意金属离子的类型和磷肥的施用量。  相似文献   
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