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2011年11月10-14日苏州地区发生了一次严重灰霾天气过程,利用气象观测资料、探空资料及大气成分站监测资料对苏州三个站点的受污染情况进行了综合分析。结果表明:灰霾期间地面受弱气压场控制,风力较小,且有接地逆温的持续存在,大气水平和垂直输送都很弱,导致大量污染物在近地面堆积,能见度恶化;三站中昆山站灰霾持续时间最长,共计104时次,影响程度最重,重度灰霾占总数的39 %,中度和重度灰霾超过灰霾总数的一半;灰霾时各粒径颗粒物浓度均维持在较高水平,细粒子在可吸入颗粒物中占有较大比重,说明细粒子对灰霾贡献作用大,14日凌晨昆山及太仓出现大雾天气时细粒子比重甚至超过了灰霾时,而相对湿度峰值只有94 %,因此将该段天气定性为雾霾共存或者湿性霾更妥;秸秆焚烧污染期间,BC浓度明显上升,其绝对浓度要高出正常情况的3倍左右;通过CO/SO2及PM10/SO2对比发现昆山站受秸秆焚烧污染程度要严重的多,因此推测昆山本地郊区可能也存在零星秸秆露天焚烧点。  相似文献   
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Even two decades after independence in 1991, the agricultural sector of Uzbekistan remains regulated by the government, prescribing the number of cattle head per agricultural area or imposing mandatory cash crops. The policy makers are insufficiently informed about the bottlenecks in the different livestock production units and base their policies mainly on general knowledge. This study analyzed the two major cattle farm types in the Khorezm province, 56 medium-scale farms (LS; on average 22 ha) and 80 household farms (HH; on average 0.2 ha). While LS farms produced more metabolizable energy and crude protein than required by their own ruminant livestock, the feeds produced by HH farms covered only a third of the requirements. Despite their limited farm size, the HH farmers took an active part in the commercial farming sector, for example, through the purchase of inputs for cattle and crop production, and product sales. The HH farms generated higher relative crop yields than their LS counterparts, while cattle productivity of both was comparable, albeit low. The present findings can be considered as a benchmark for monitoring developments in the cattle sector and as a source of information for directing improvements in feed supply, cattle health and husbandry.  相似文献   
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基于2015年6月淮河流域卫星遥感监测火点信息、环境空气质量监测数据和常规气象观测资料,利用ANUSPLIN和ArcGISKriging方法对气象要素和主要大气污染物浓度空间栅格化,分析了秸秆焚烧关键期内AQI和主要污染物浓度的时空变化特征及其与气温、相对湿度、风速等气象要素的相关关系。结果表明:秸秆焚烧关键期内,淮河流域城市AQI、PM10与PM2.5浓度均明显升高,且与卫星监测火点具有一定时空响应关系。在时间变化上,AQI、PM10与PM2.5浓度6月上中旬呈波动上升,6月下旬趋于回落;在空间分布方面,AQI、PM10与PM2.5浓度三者分布形态相似,总体上呈现"南低北高、两高一低"分布特征;期间AQI、PM10与PM2.5浓度与气温呈显著正相关,与相对湿度呈显著负相关,与风速的相关性不显著。  相似文献   
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覆盖麦田的小气候特征   总被引:11,自引:1,他引:11       下载免费PDF全文
麦田进行秸杆覆盖后 ,由于地表热学性质和动力学性质的变化 ,使近地层水热状况发生改变 .1 997年 3月份小气候观测表明 :覆盖后白天能提高近地层的空气温度 ,减小近地层空气湿度 ,明显降低地温 ;覆盖后麦田乱流交换系数增大 ,显热通量增大 ,潜热通量减小 ,亦即用于土壤蒸发的能量减小 ,使土壤蒸发减小 ,从而从能量平衡角度解释了覆盖的保墒机理  相似文献   
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利用气象与环境监测数据,结合后向轨迹和秸秆焚烧火点监测资料,从环流形势、气象要素、污染源和污染传输特征等方面,对哈尔滨2017年10月18-20日持续性重污染天气过程进行分析。结果表明:这次重污染过程连续48 h为重度或严重污染,首要颗粒物为PM2.5,PM2.5平均浓度为438 μg·m-3,局地PM2.5浓度高达1487 μg·m-3。重污染过程分为两个阶段,每个阶段主要污染物呈双峰分布。在重污染过程中,高空环流平直,浅槽前暖平流占主导地位,地面为弱低压均压场控制。地面风速小,平均风速仅为1.5 m·s-1,风速≤ 1.5 m·s-1静小风频率为71%,风场辐合,有利于污染物积聚。在重污染发展的过程中,地面相对湿度(RH)增大有利于颗粒物吸湿增长和污染加剧;在重污染减弱的过程中,PM2.5浓度减少至每阶段谷值时间比RH减小至谷值时间滞后4-5 h。在边界层内有逆温层顶高为200 m左右、逆温强度>2.0℃·(100 m)-1的贴地逆温层,层结稳定,垂直扩散条件差。污染物主要来源于秸秆焚烧,其次来源于取暖燃煤。静稳气象条件下本地污染物积累叠加远距离较高浓度的秸秆焚烧污染物输送导致哈尔滨这次重污染过程。  相似文献   
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To reveal the influencing effect of the long-term straw mulching on the soil moisture, this paper employed the field experiment data in 2010 of a typical area of Taihang Mountains plain, observed the soil moisture dynamic regularities under different mulching patterns by virtue of depressimeter and neutron probe, analyzed the characteristics of soil water content and storage in different depths and seasons under the long-term straw mulching. The results showed that the long-term straw mulching can keep the soil moisture conservation of the deep, while decreased the shallow. (1) The long-term straw mulching can changed the type of soil water movement. If no straw mulching, the type is mainly evaporation-infiltration. And with straw mantle the type would change into infiltration. The number of zero flux plane would be reduced or absent. (2) The long-term straw mulching can increase the soil water reserves of the whole soil profile with the depth between 0 cm and 220 cm. But the soil water content of the layer from 30 cm to 80 cm decreased and the soil water content of the layer from 80 cm to 220 cm increased instead., The effect of soil moisture conservation on winter wheat is not obvious; (3) With no straw mulching, the depth of infiltration recharge by rainfall or irrigation is shallower than 80 cm. In a straw mulching, the influence depth is can extend to 120 cm; (4) With no straw mulching , there is a deep layer on the depth of 220 cm between March and June, while this layer will disappear with a long-term straw mulching.  相似文献   
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Forest land affected by deforestation yields high soil and water losses.Suitable management practices need to be found that can reduce these losses and achieve ecological and hydrological sustainability of the deforested areas.Mulch has been found to be effective in reducing soil losses;straw mulch is easy to apply,contributes soil organic matter,and is efficient since the day of application.However,the complex effects of rice straw mulch with different application rates and lengths on surface runoff and soil loss have not been clarified in depth.The current paper evaluates the efficiency of rice straw mulch in reducing the hydrological response of a silty clay loam soil under high intensity and low frequency rainfall events(tap water with total depth of 49 mm and intensity of 98 mm/h)simulated in the laboratory.Surface runoff and soil loss at three lengths of the straw(10,30,and 200 mm)and three application rates(1,2,and 3 Mg/ha)were measured in 50 cm(width)×100 cm(length)×10 cm(depth)plots with disturbed soil samples(aggregate soil size<4 mm)collected in a deforested area.Bare soil was used as control experiment.Runoff volume and erosion were significantly(at p<0.05)lower in mulched soils compared to control plots.These reductions were ascribed to the water absorption capacity of the rice straw and the protection cover of the mulch layer.The minimum runoff was observed for a mulch layer of3 Mg/ha of straw with a length of 200 mm.The lowest soil losses were found with straw length of10 mm.The models developed predict runoff and erosion based on simple linear functions of mulch application rate and length,and can be used for a suitable hydrological management of soil.It is concluded that,thanks to rice straw mulch used as an organic soil conditioner,soil erosion and surface runoff are significantly(at p<0.05)reduced,and the mulch protection contributes to reduce the risk of soil degradation.Further research is,however,needed to analyze the upscaling of the hydrological effects of mulching from the plot to the hillslope scale.  相似文献   
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