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441.
兰州市街道尘埃粒度空间变化特征   总被引:1,自引:0,他引:1  
采用Mastersizer2000激光粒度仪对2006年3月采集的兰州市街道尘埃进行了粒度分析。结果表明,兰州市街道尘埃中颗粒物平均粒径范围在46.83μm-266.59μm,平均值为118.73μm;其中〉2μm的颗粒占总量的92%-99.5%,〈2μm的颗粒占10%以下。受地形因素影响,兰州市西部和东部地区粒径较粗,中间地段粒径相对较细;进一步分析发现在风动能大的区域,尘埃主要以较粗物质为主;在风动能相对较弱区域,细颗粒和粗颗粒含量差别不大,而在风动能小的区域,街道尘埃主要以细颗粒物为主。由此可见,兰州市街道尘埃中的颗粒物的主要来源是由于风力和人为活动产生的土壤尘和人为排放的污染物所共同贡献的;粒度分布特征受到风动力条件和物源(污染源)两方面因素的控制。  相似文献   
442.
基于最佳分析粒度的大辽河流域湿地景观格局分析   总被引:7,自引:0,他引:7  
湿地景观格局分析是湿地生态和全球变化研究领域的热点,最佳分析粒度是景观格局分析准确性的关键指标.定性与定量相结合,综合利用景观指数粒度效应分析和信息损失评价,确定了大辽河流域湿地景观格局的最佳分析粒度为60m.在该粒度下,选取反映空间组成和空间构型的指数,进行湿地景观格局分析.结果表明:①大辽河流域湿地景观主体为水田、...  相似文献   
443.
Atmospheric CO2 concentration (Ca) is rising, predicted to cause global warming, and alter precipitation patterns. During 1994, spring barley (Hordeum vulgare L. cv. Alexis) was grown in a strip-split-plot experimental design to determine the effects that the main plot Ca treatments [A: Ambient at 370 μmol (CO2) mol−1; E: Enriched with free-air CO2 enrichment (FACE) at ∼550 μmol (CO2) mol−1] had on several gas exchange properties of fully expanded sunlit primary leaves. The interacting strip-split-plot irrigation treatments were Dry or Wet [50% (D) or 100% (W) replacement of potential evapotranspiration] at ample nitrogen (261 kg N ha−1) and phosphorous (29 kg P ha−1) fertility. Elevated Ca facilitated drought avoidance by reducing stomatal conductance (gs) by 34% that conserved water and enabled stomata to remain open for a longer period into a drought. This resulted in a 28% reduction in drought-induced midafternoon depression in net assimilation rate (A). Elevated Ca increased A by 37% under Dry and 23% under Wet. Any reduction in A under Wet conditions occurred because of nonstomatal limitations, whereas under Dry it occurred because of stomatal limitations. Elevated Ca increased the diurnal integral of A (A′) that resulted in an increase in the seasonal-long integral of A′ (A″) for barley leaves by 12% (P = 0.14) under both Dry and Wet - 650, 730, 905 and 1020 ± 65 g (C) m−2 y−1 for AD, ED, AW and EW treatments, respectively. Elevated Ca increased season-long average dry weight (DWS; crown, shoots) by 14% (P = 0.02), whereas deficit irrigation reduced DWS by 7% (P = 0.06), although these values may have been affected by a short but severe pea aphid [Acyrthosiphon pisum (Harris)] infestation. Hence, an elevated-Ca-based improvement in gas exchange properties enhanced growth of a barley crop.  相似文献   
444.
Soil C sequestration in croplands is deemed to be one of the most promising greenhouse gas mitigation options for Japan's agriculture. In this context, changes in soil C stocks in northern Japan's arable farming area over the period of 1971-2010, specifically in the region's typical Andosol (volcanic ash-derived) and non-Andosol soils, were simulated using soil-type-specific versions of the Rothamsted carbon model (RothC). The models were then used to predict the effects, over the period of 2011-2050, of three potential management scenarios: (i) baseline: maintenance of present crop residue returns and green manure crops, as well as composted cattle manure C inputs (24-34 Mg ha−1 yr−1 applied on 3-55% of arable land according to crop), (ii) cattle manure: all arable fields receive 20 Mg ha−1 yr−1 of composted cattle manure, increased C inputs from crop residues and present C inputs from green manure are assumed, and (iii) minimum input: all above-ground crop residues removed, no green manure crop, no cattle manure applied. Above- and below-ground residue biomass C inputs contributed by 8 major crops, and oats employed as a green manure crop, were drawn from yield statistics recorded at the township level and crop-specific allometric relationships (e.g. ratio of above-ground residue biomass to harvested biomass on a dry weight basis). Estimated crop net primary production (NPP) ranged from 1.60 Mg C ha−1 yr−1 for adzuki bean to 8.75 Mg C ha−1 yr−1 for silage corn. For the whole region (143 × 103 ha), overall NPP was estimated at 952 ± 60 Gg C yr−1 (6.66 ± 0.42 Mg C ha−1 yr−1). Plant C inputs to the soil also varied widely amongst the crops, ranging from 0.50 Mg C ha−1 yr−1 for potato to 3.26 Mg C ha−1 yr−1 for winter wheat. Annual plant C inputs to the soil were estimated at 360 ± 45 Gg C yr−1 (2.52 ± 0.32 Mg C ha−1 yr−1), representing 38% of the cropland NPP. The RothC simulations suggest that the region's soil C stock (0-30 cm horizon), across all soils, has decreased from 13.96 Tg C (107.5 Mg C ha−1 yr−1) in 1970 to 12.46 Tg C (96.0 Mg C ha−1 yr−1) in 2010. For the baseline, cattle manure and minimum input scenarios, soil C stocks of 12.13, 13.27 and 9.82 Tg C, respectively, were projected for 2050. Over the period of 2011-2050, compared to the baseline scenario, soil C was sequestered (+0.219 Mg C ha−1 yr−1) by enhanced cattle manure application, but was lost (−0.445 Mg C ha−1 yr−1) under the minimum input scenario. The effect of variations of input data (monthly mean temperature, monthly precipitation, plant C inputs and cattle manure C inputs) on the uncertainty of model outputs for each scenario was assessed using a Monte Carlo approach. Taking into account the uncertainty (standard deviation as % of the mean) for the model's outputs for 2050 (5.1-6.1%), it is clear that the minimum input scenario would lead to a rapid decrease in soil C stocks for arable farmlands in northern Japan.  相似文献   
445.
Carbon (C) sequestration in soils is gaining increasing acceptance as a means of reducing net carbon dioxide (CO2) emissions to the atmosphere. Numerous studies on the global carbon budget suggest that terrestrial ecosystems in the mid-latitudes of the Northern Hemisphere act as a large carbon sink of atmospheric CO2. However, most of the soils of North America, Australia, New Zealand, South Africa and Eastern Europe lost a great part of their organic carbon pool on conversion from natural to agricultural ecosystems during the explosion of pioneer agriculture, and in Western Europe the adoption of modern agriculture after the Second World War led to a drastic reduction in soil organic carbon content. The depletion of organic matter is often indicated as one of the main effects on soil, and the storage of organic carbon in the soil is a means of improve the quality of soils and mitigating the effects of greenhouse gas emission. The soil organic carbon in an area of Northern Italy over the last 70 years has been assessed In this study. The variation of top soil organic carbon (SOC) ranged from −60.3 to +6.7%; the average reduction of SOC, caused by agriculture intensification, was 39.3%. This process was not uniform, but related to trends in land use and agriculture change. For the area studied (1,394 km2) there was an estimated release of 5 Tg CO2-C to the atmosphere from the upper 30 cm of soil in the period 1935–1990.  相似文献   
446.
固体发动机药柱应力应变仿真与试验验证研究   总被引:2,自引:2,他引:0  
目的研究某导弹固体发动机药柱在不同环境温度下的性能演变规律。方法利用ABAQUS有限元分析软件,仿真计算了药柱在-40,20,50℃下的应力应变情况,在此基础上通过推进剂拉伸应力松弛试验对仿真结果进行验证分析。结果最大应力应变发生在头部人工脱粘层的根部,药柱内部沿径向越靠近内孔表面,应力应变的数值越大,沿药柱的轴向,内孔表面的最大应力应变发生在靠近药柱中间位置。结论线粘弹性本构关系模型在较低应变水平下可以很好地模拟出推进剂的力学行为,当应变水平在14.3%以下时,试验和仿真的相对误差能控制在10%以内。  相似文献   
447.
采用田间试验法,研究了江苏省57个水稻品种籽粒对太湖地区乌栅土中Cd、Cu、Se的吸收积累.结果表明水稻籽粒的Cd、Cu、Se含量的变化范围分别为0.099±0.039、4.86±2.595、0.035±0.007mg/kg,指示不同水稻品种对同一土壤中Cd、Cu、Se的吸收及其在籽粒中的积累存在有显著的差异.不同品种籽粒对Cu和Cd的吸收积累有同步的趋势,而高Se品种显示出抑制重金属Cu和Cd积累的倾向.不同品种籽粒中重金属含量的差异可能影响到人类重金属食物摄取的健康风险,57个品种中92%的样品的Cd含量超出USEPA推荐的人类摄取的籽粒临界含量.因此,在土壤重金属污染地区,必须密切注意高Cd、Cu吸收积累品种的大规模栽培.而筛选高Se低Cu、Cd的水稻品种进行品质育种是可能的.  相似文献   
448.
高通量测序分析黄土高原退耕还林区土壤细菌群落特征   总被引:9,自引:6,他引:3  
刘晓华  魏天兴 《环境科学》2021,42(9):4489-4499
为分析不同植被恢复模式下土壤细菌群落特征,探讨微生物在植被恢复过程中对黄土高原退耕还林区土壤生态系统的作用,采用高通量测序技术,以山西吉县典型森林生态系统人工林(人工刺槐林、人工油松林)、天然次生林和荒草地为研究对象,分析其土壤细菌α多样性、群落结构特征、功能预测以及土壤环境因子与细菌群落的相关性.结果表明,各恢复模式共得到25门、66纲、129类、240科、392属、760种和2213 OTUs;细菌群落的丰富度存在显著差异,均表现为草地 > 天然次生林 > 人工刺槐林 > 人工油松林.在门分类水平上,天然次生林和草地与人工林之间群落的相对丰度变化存在差异性,但差异性不显著.α-Proteobacteria、β-Proteobacteria和δ-Proteobacteria在天然次生林土壤中的相对丰度要高于其他4种恢复模式,而在草地中的相对丰度最低.在土壤环境因子中TN和pH对土壤细菌群落的影响较大,优势细菌门类与TN和pH具有显著相关性,其中TN与Actinobacteria (放线菌门)呈显著正相关,pH与Proteobacteria (变形菌门)呈显著正相关,与Actinobacteria (放线菌门)呈显著负相关,而Acidobacteria (酸杆菌门)与TN和pH均呈显著负相关关系.土壤细菌群落主要涉及细胞运动,信号转导机制,氨基酸转运和代谢、辅酶的运输和代谢等24个二级功能,均表现出功能上的丰富性.本研究结果可为黄土高原退耕还林区植被恢复的效益评价提供良好的数据基础,并为人工林的合理经营提供科学依据.  相似文献   
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