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81.
贵州清水江流域丰水期水化学特征及离子来源分析 总被引:21,自引:9,他引:12
对清水江流域丰水期河水离子浓度及组成特征分析表明,流域水化学组成以Ca2+、HCO-3离子为主,其次为Mg2+、SO2-4;TDS均值213.96 mg·L-1,高于世界流域均值.根据海盐校正分析得出,研究区大气降水中海盐输入对流域水化学的贡献率为2.23%,低于世界河流均值3%.Gibbs图结合离子比值分析表明,流域水化学主要受碳酸盐岩风化影响,越往下游硅酸盐岩化学风化贡献越明显,碳酸和硫酸同时参与了流域岩石风化过程.离子来源分析表明,Ca2+、Mg2+、HCO-3离子主要来自于白云石、方解石等碳酸盐岩风化溶解,Na+、K+、Cl-主要来源于硅酸盐岩风化;SO2-4和NO-3主要来源于大气酸沉降和城镇废水输入.人为活动影响分析表明上游工矿企业活动对清水江流域水化学影响明显. 相似文献
82.
异养与硫自养反硝化协同处理高硝氮废水特性研究 总被引:4,自引:4,他引:0
在异养反硝化反应器中添加单质硫,实现硫自养与异养反硝化联合处理NO_3~-废水,探讨异养和硫自养反硝化协同过程中的p H恒定及污泥减量化的特性.结果表明,硫自养反硝化菌在异养反硝化反应器内能够实现快速生长.经过65d的运行,控制进水TOC/N为0.65~0.75时,协同反硝化在无额外碱添加的情况下,厌氧反硝化产生的碱度满足自养反硝化的需求;运行至116d时,协同反硝化的总氮去除率为85%以上,脱氮效能稳定在2.5 kg·(m~3·d)~(-1).通过与完全异养反硝化相比,协同反硝化的污泥产量仅为完全异养反硝化的60%,极大地降低了污泥产量.但是利用协同自养反硝化处理高浓度NO_3~--N废水时,存在NO_2~--N累积的现象,即使是最终稳定期也有20 mg·L~(-1),需进行深度处理. 相似文献
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Optimization of the recovery of plastics for recycling by density media separation cyclones 总被引:1,自引:0,他引:1
Gent Malcolm Richard Menendez MarioToraño Javier Torno Susana 《Resources, Conservation and Recycling》2011,55(4):472-482
Material recovery processes are presented as the optimum option for recycling plastic wastes as a means of recovering hydrocarbon resources. There exist a large variety of automated material recovery processes for recycling of such wastes but each with significant limitations. Of these, the separation based on differences in densities is advocated as the optimum process either for producing recycled products or preparing wastes for subsequent recovery processing.Density separation processes based on cyclone type density media separation (DMS) is presented as an important, potential method for increasing plastics recycling process capacities. It is demonstrated to have the capacity to separate a significantly larger range of particle sizes than those presently processed industrially. The mathematical relationship for the prediction of quality of typical LARCODEMS type density media separations by particle size and density as expressed by the Ecart Probable is presented.A proposed device configuration is presented for density media separation to optimize the recovery and purity of both density fractions produced. It is also suggested that to be economically viable, a large scale of operation is required for industrial plastics recycling operations recovering and producing a number of different plastics with a purity to be used as a substitute for virgin material. 相似文献
86.
广泛存在各种类型生物细胞中的碳酸酐酶(cA),通过催化C02和HCO3^-之间的相互转化,驱动岩溶过程。文章通过分析我国西南典型岩溶区植物叶片和根系CA活性,探讨其与岩溶作用的相互关系,结果表明:岩溶生态系统中植物的碳酸酐酶活性差异较大,并在植物的生长期发生变动,植株根系CA活性〉成熟叶片CA活性,因而在土壤水分充足的条件下.根系分泌的CA催化CO2+H2O←→HCO3^-+H^+过程,促进石灰岩溶解,加快成土速率,并通过固定根呼吸和土壤微生物分解所释放的CO2产生岩溶碳汇效应;非岩溶生态系统由于土壤碳酸钙含量低,造成植物根系CA表达活性较低。 相似文献
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88.
Integrating soil carbon cycling with that of nitrogen and phosphorus in the watershed model SWAT: Theory and model testing 总被引:1,自引:0,他引:1
Armen R. Kemanian Stefan Julich Valipuram S. ManoranjanJeffrey R. Arnold 《Ecological modelling》2011,222(12):1913-1921
In this paper we describe and test a sub-model that integrates the cycling of carbon (C), nitrogen (N) and phosphorus (P) in the Soil Water Assessment Tool (SWAT) watershed model. The core of the sub-model is a multi-layer, one-pool soil organic carbon (SC) algorithm, in which the decomposition rate of SC and input rate to SC (through decomposition and humification of residues) depend on the current size of SC. The organic N and P fluxes are coupled to that of C and depend on the available mineral N and P, and the C:N and N:P ratios of the decomposing pools. Tillage explicitly affects the soil organic matter turnover rate through tool-specific coefficients. Unlike most models, the turnover of soil organic matter does not follow first order kinetics. Each soil layer has a specific maximum capacity to accumulate C or C saturation (Sx) that depends on texture and controls the turnover rate. It is shown in an analytical solution that Sx is a parameter with major influence in the model C dynamics. Testing with a 65-yr data set from the dryland wheat growing region in Oregon shows that the model adequately simulates the SC dynamics in the topsoil (top 0.3 m) for three different treatments. Three key model parameters, the optimal decomposition and humification rates and a factor controlling the effect of soil moisture and temperature on the decomposition rate, showed low uncertainty as determined by generalized likelihood uncertainty estimation. Nonetheless, the parameter set that provided accurate simulations in the topsoil tended to overestimate SC in the subsoil, suggesting that a mechanism that expresses at depth might not be represented in the current sub-model structure. The explicit integration of C, N, and P fluxes allows for a more cohesive simulation of nutrient cycling in the SWAT model. The sub-model has to be tested in forestland and rangeland in addition to agricultural land, and in diverse soils with extreme properties such high or low pH, an organic horizon, or volcanic soils. 相似文献
89.
Ecosystem constraints are both ontic and epistemic. They limit activity, and as problems to be solved they drive organization, which is our hypothesis:
The driver of organization is constraint.Solutions proliferate further constraints in an unending spiral of problem (constraint) generation and solution. As constraints proliferate, behavior narrows, and species diversify to compensate (paradox of constraint). Resource enrichment reduces constraints, releases behavior, and reduction of challenges decreases diversity (paradox of enrichment)—high diversity is expressed in low-resource environments and low diversity in high-resource environments. A three-part model of constraints is formulated for non-living systems, and also for goal-directed, problem-solving biota. Mode 1: dynamical means behavior is co-determined by internal states and external inputs. Mode 2: cybernetic employs negative feedback to keep dynamics within goal-oriented operating limits. Mode 3: model-making entails ability to represent (model) physical reality and respond to both phenomenal (modeled) and physical inputs; this property distinguishes living from nonliving systems. Principal sections of the paper elaborate dynamical constraints (three classes), boundary constraints (expressed in edge effects and trophic dynamics), physical constraints (space, time, temperature), chemical constraints (environment fitness, ecological stoichiometry, chemical evolution, limiting factors), coding constraints (environmental vs. genetic coding), network and pathway constraints (connectivity), and natural selection constraints (fitting to the biosphere). Consideration of how the world would look without constraints suggests how fundamental these are in ecosystem emergence, and how the next property in this series, differentiation, would be unmotivated without them. We conclude that constraints as a category are under-studied in ecology, poorly understood in ecological phenomenology, and (our hypothesis) comprise a ubiquitous organizing force in nature. 相似文献
90.
喜马拉雅山中段北坡地表水体主要离子特征及其控制因素——以叶如藏布流域为例 总被引:3,自引:0,他引:3
为调查喜马拉雅山中段北坡地表水环境特征,2015年9月在叶如藏布流域采集24个地表水体水样并对其水化学特征分析测定,研究结果表明:(1)叶如藏布流域水化学特征存在显著空间差异.随着海拔升高,地表水体p H值、TDS值呈微弱的减小趋势.24个水样中23个水样属于淡水,1个为微咸水.(2)叶如藏布流域内地表水阳离子主要为Ca~(2+),阴离子以SO_4~(2-)为主,其次为HCO_3~-,即地表水为Ca~(2+)-SO_4~(2-)型.(3)叶如藏布流域地表水中各离子之间具有不同程度的相关性.其中Cl~-、HCO_3~-、Na~+和K~+4种离子共源性好;阳离子的来源不同,Na~+和K~+主要来源于碳酸氢盐,Ca~(2+)主要来源于硫酸盐,而Mg~(2+)的来源比较广泛.(4)叶如藏布流域大部分离子主要来源于陆地,受陆源影响从小到大排列顺序为:Na~+Mg~(2+)SO_4~(2-)Ca~(2+)K~+HCO_3~-.流域水文化学过程主要受岩石风化作用控制,特别是受到碳酸盐风化影响.以强木村为界,流域下游地区地表水化学特征受人类活动影响逐渐变大,特别是畜牧活动及人类施肥的影响. 相似文献