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241.
瞿晴  徐红伟  吴旋  孟敏  王国梁  薛萐 《环境科学》2019,40(6):2904-2911
为研究黄土高原不同植被带对土壤团聚体稳定性及团聚体化学计量变化特征的影响,本研究选取黄土高原不同植被带人工刺槐林地土壤为研究对象,分析了不同粒径团聚体含量,团聚体化学计量及稳定性指标.结果表明, 2 mm和0. 25~2 mm粒径团聚体含量,机械团聚体的平均重量直径(E_(MWD))和机械团聚体的几何平均直径(E_(GMD))表现为森林带森林草原带草原带,而0. 053~0. 25 mm粒径团聚体含量和可蚀性因子K呈现相反的变化特点;各粒径团聚体有机碳和全氮含量在3个植被带整体表现为森林带显著高于森林草原带和草原带,而全磷含量在各植被带间无明显变化规律;有机碳和全氮含量在草原带以0. 053 mm和0. 25~2 mm粒径占绝对优势,在森林草原带以0. 053~0. 25 mm和0. 25~2 mm粒径为主,而森林带各粒径间均无显著差异;草原带和森林草原带0. 053 mm粒径全磷含量最高,而森林带全磷含量在各粒径间无显著差异;0. 053 mm和0. 053~0. 25 mm粒径团聚体C∶N值以草原带和森林草原带高于森林带,而0. 25~2 mm和 2 mm粒径在3个植被带间无显著差异;各粒径C∶P和N∶P值以森林带显著高于森林草原带和草原带.综上可见,土壤团聚体稳定性和团聚体化学计量在3个植被带间存在较大差异,团聚体稳定性和团聚体有机碳、全氮含量整体表现为森林带显著高于森林草原带和草原带.  相似文献   
242.
以聚丙烯酰胺、甲醛、氢氧化钠、二硫化碳为原料制备了重金属螯合絮凝剂二硫代羧基化羟甲基聚丙烯酰胺(DTMPAM),采用紫外分光光度法测定了DTMPAM与Cu2+形成的螯合物在不同Cu2+浓度、二硫代羧基(—CSS-)浓度、不同pH值下的紫外吸收光谱,确定了螯合物的配位比,考察了螯合物DTMPAM-Cu在不同pH值、不同—CSS-浓度下的稳定性,并计算了其稳定常数.结果表明,DTMPAM在207和226nm处出现最大吸收峰,而螯合物DTMPAM-Cu分别在220和260nm处出现最大吸收峰,最大吸收峰发生红移.在不同的—CSS-(3.0×10-5~6.0×10-5mol/L)浓度和pH值(3.0~9.0)下,DTMPAM中的—CSS-与Cu2+的螯合比均为2:1;当—CSS-浓度为3.0×10-5~6.0×10-5mol/L时,DTMPAM-Cu的螯合稳定常数对数值lgβ2在10.5725~11.4473之间,随着—CSS-浓度增大,螯合稳定常数略有减小.不同pH值下,DTMPAM-Cu的螯合稳定常数各不相同,当体系pH值为3.0~5.0时,随着pH值的升高,DTMPAM-Cu的稳定常数逐渐升高,当pH值为6.0~9.0时,DTMPAM-Cu的稳定常数整体上略有所降低.  相似文献   
243.
为了给废水处理生产中最佳孔径的生物载体选型提供依据,本研究系统考察聚氨酯海绵生物载体5种孔径(0.6~4mm)大小对生物膜微型动物群落多样性以及稳定性的影响.结果表明:鞭毛虫、肉足虫等是运行前期与中期的优势种属,游泳型与固着型纤毛虫、轮虫是后期的优势种属.不同孔径载体在不同时期,微型动物多样性、稳定性等参数变化具有明显差异.小孔径(0.6mm)载体微型动物仅在运行中期内表现出较高多样性,中小孔径(1mm)载体多样性总体偏低,中大孔径(3mm)和大孔径(4mm)载体微型动物多样性波动剧烈.小孔径、中小孔径载体内微型动物稳定性好,中大孔径载体稳定性波动大,而大孔径载体最不稳定.中等孔径(2mm)载体内微型动物群落物种丰富度、均匀度高,多样性高且稳定(后期H=2.12、R=1.19、λ=0.16),其微型动物群落最为稳定(后期WH=0.13),且表现出较好的废水处理效果,中等孔径是理想的生物载体内部孔径大小.在生物膜系统中,微型动物多样性稳定指数WH可作为废水中CODcr去除效果的指标参数.  相似文献   
244.
Using a bottom-up estimation method, a comprehensive, high-resolution emission inventory of gaseous and particulate atmospheric pollutants for multiple anthropogenic sectors with typical local sources has been developed for the Harbin-Changchun city agglomeration (HCA). The annual emissions for CO, NOx, SO2, NH3, VOCS, PM2.5, PM10, BC and OC during 2017 in the HCA were estimated to be 5.82 Tg, 0.70 Tg, 0.34 Tg, 0.75 Tg, 0.81Tg, 0.67 Tg, 1.59 Tg, 0.12 Tg and 0.26 Tg, respectively. For PM10 and SO2, the emissions from industry processes were the dominant contributors representing 54.7% and 49.5%, respectively, of the total emissions, while 95.3% and 44.5% of the total NH3 and NOx emissions, respectively, were from or associated with agricultural activities and transportation. Spatiotemporal distributions showed that most emissions (except NH3) occurred in November to March and were concentrated in the central cities of Changchun and Harbin and the surrounding cities. Open burning of straw made an important contribution to PM2.5 in the central regions of the northeastern plain during autumn and spring, while domestic coal combustion for heating purposes was significant with respect to SO2 and PM2.5 emissions during autumn and winter. Furthermore, based on Principal Component Analysis and Multivariable Linear Regression model, air temperature, relative humidity, electricity and energy consumption, and the urban and rural population were optimized to be representative indicators for rapidly assessing the magnitude of regional atmospheric pollutants in the HCA. Such indicators and equations were demonstrated to be useful for local atmospheric environment management.  相似文献   
245.
Understanding ozone (O3) formation regime is a prerequisite in formulating an effective O3 pollution control strategy. Photochemical indicator is a simple and direct method in identifying O3 formation regimes. Most used indicators are derived from observations, whereas the role of atmospheric oxidation is not in consideration, which is the core driver of O3 formation. Thus, it may impact accuracy in signaling O3 formation regimes. In this study, an advanced three-dimensional numerical modeling system was used to investigate the relationship between atmospheric oxidation and O3 formation regimes during a long-lasting O3 exceedance event in September 2017 over the Pearl River Delta (PRD) of China. We discovered a clear relationship between atmospheric oxidative capacity and O3 formation regime. Over eastern PRD, O3 formation was mainly in a NOx-limited regime when HO2/OH ratio was higher than 11, while in a VOC-limited regime when the ratio was lower than 9.5. Over central and western PRD, an HO2/OH ratio higher than 5 and lower than 2 was indicative of NOx-limited and VOC-limited regime, respectively. Physical contribution, including horizontal transport and vertical transport, may pose uncertainties on the indication of O3 formation regime by HO2/OH ratio. In comparison with other commonly used photochemical indicators, HO2/OH ratio had the best performance in differentiating O3 formation regimes. This study highlighted the necessities in using an atmospheric oxidative capacity-based indicator to infer O3 formation regime, and underscored the importance of characterizing behaviors of radicals to gain insight in atmospheric processes leading to O3 pollution over a photochemically active region.  相似文献   
246.
为考察聚磷酸铵(APP)干粉灭火剂的聚合度对其灭火性能的影响,选用3种不同聚合度的APP,结合其晶体结构、粒度分布及热性能测试,并通过粉体杯式燃烧器进行小尺寸灭火实验,对比3种样品的灭火性能及灭火机理,研究聚合度与其灭火性能的关系。热性能测试结果显示,聚合度的升高会导致APP的热稳定性下降,随着聚合度从80升至1 500,其初始分解温度从326.11 ℃降低至321.54 ℃,失重率从75.21%增加至79.66%。实验结果表明:随着APP聚合度的增加,火焰降温速率升高,最小灭火浓度(MEC)降低,灭火性能增强,当聚合度为1 500时,MEC为118.143 g/m3。聚合度的升高有助于APP在进入火场后更早、更充分地与火焰发生反应,从而使灭火性能得到提升。  相似文献   
247.
韩恒悦 《灾害学》1997,12(4):44-48
斜坡变形与失稳活动是黄土高原突出的地质地貌现象.它有较强的致灾性。本文通过陕西铜川斜坡变形的现场实际调查,研究了该地斜坡的形态、物质组成、变形形式以及作用因素等。本研究对厚层黄土区斜坡变形灾害的防治有较重要意义。  相似文献   
248.
A Markov model for assessing ecological stability properties   总被引:1,自引:0,他引:1  
Ecological systems are frequently modeled as dynamic systems. It is natural then to use the techniques of dynamic systems theory to analyze such models. However, the methods and results that are produced by dynamic systems theory do not always capture the aspects of ecological systems that are of greatest interest to managers and decision-makers. We identify some of the challenges of using dynamic systems theory to explore ecological systems and propose an alternative approach that emphasizes the understanding of transient effects in light of uncertainty and variability. We illustrate this method by an examination of a model for phosphorus levels in fresh water lakes.  相似文献   
249.
In planktonic food webs, the conversion rate of plant material to herbivore biomass is determined by a variety of factors such as seston biochemical/elemental composition, phytoplankton cell morphology, and colony architecture. Despite the overwhelming heterogeneity characterizing the plant–animal interface, plankton population models usually misrepresent the food quality constraints imposed on zooplankton growth. In this study, we reformulate the zooplankton grazing term to include seston food quality effects on zooplankton assimilation efficiency and examine its ramifications on system stability. Using different phytoplankton parameterizations with regards to growth strategies, light requirements, sinking rates, and food quality, we examined the dynamics induced in planktonic systems under varying zooplankton mortality/fish predation, light conditions, nutrient availability, and detritus food quality levels. In general, our analysis suggests that high food quality tends to stabilize the planktonic systems, whereas unforced oscillations (limit cycles) emerge with lower seston food quality. For a given phytoplankton specification and resource availability, the amplitude of the plankton oscillations is primarily modulated from zooplankton mortality and secondarily from the nutritional quality of the alternative food source (i.e., detritus). When the phytoplankton community is parameterized as a cyanobacterium-like species, conditions of high nutrient availability combined with high zooplankton mortality led to phytoplankton biomass accumulation, whereas a diatom-like parameterization resulted in relatively low phytoplankton to zooplankton biomass ratios highlighting the notion that high phytoplankton food quality allows the zooplankton community to sustain relatively high biomass and to suppress phytoplankton biomass to low levels. During nutrient and light enrichment conditions, both phytoplankton and detritus food quality determine the extent of the limit cycle region, whereas high algal food quality increases system resilience by shifting the oscillatory region towards lower light attenuation levels. Detritus food quality seems to regulate the amplitude of the dynamic oscillations following enrichment, when algal food quality is low. These results highlight the profitability of the alternative food sources for the grazer as an important predictor for the dynamic behavior of primary producer–grazer interactions in nature.  相似文献   
250.
In the present paper we propose a modification of a basic eco-epidemiological model by incorporating predator switching among susceptible and infected prey population. A local and global study of the basic model is performed around the disease-free boundary equilibrium and the interior equilibrium to estimate important parameter thresholds that control disease eradication and species coexistence. Next we analyze the switching model from the same perspective in order to elucidate the role of switching on disease dynamics. Numerical simulations are carried out to justify analytical results.  相似文献   
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