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101.
社区尺度绿色基础设施暴雨径流消减模拟研究   总被引:8,自引:5,他引:3  
刘文  陈卫平  彭驰 《生态学报》2016,36(6):1686-1697
当前快速的城市化进程导致了城市地区内涝事件频繁发生。绿色基础设施是减轻城市洪涝的有效措施之一。SWMM(Storm Water Management Model)等模型的复杂性使得规划管理者对模型的操作和应用存在困难,而且缺乏对绿色基础设施径流消减机制的展现。目前的研究中,比较单个与综合绿色基础设施配置径流消减效果的研究相对较少。基于水量平衡和城市水文过程,开发了社区尺度绿色基础设施消减作用的暴雨径流模型,并以北京市一典型社区为例,模拟研究了一年一遇和五年一遇两种暴雨条件下不同绿色基础设施配置对暴雨径流流量和峰值的消减效率。结果表明:用两场野外监测的降雨和径流数据验证模型得到的决定系数分别为0.68和0.71,纳什效率系数分别达到0.99和0.96,表明模型是可靠的。在一年一遇和五年一遇两种暴雨条件下,将常规绿地改造成5 cm深度的下凹式绿地,径流量分别减少了8.23%和23.30%,径流峰值分别减少了20.31%和29.11%;在建造300 m3调蓄池的情景下,径流量分别减少了84.90%和20.97%,径流峰值分别减少了88.99%和0.10%;在50%的不透水地表铺装透水砖情景下,径流量分别减少了46.51%和38.52%,径流峰值分别减少了39.96%和35.48%。3种绿色基础设施都可以较好的消减社区暴雨径流,但是随着暴雨强度的增强,下凹式绿地的消减效果略增强,调蓄池的消减效果变差,透水砖铺装的消减效果较稳定。综合3种措施对暴雨径流具有显著消减效果,可以100%消减一年一遇暴雨产生的径流,在五年一遇设计暴雨条件下,分别消减75.47%的总径流量和64.52%的径流峰值。  相似文献   
102.
【目的】在无机三态氮(氨氮、亚硝氮和硝氮)共存的模拟海水水体中,阐明有机碳尤其是海藻寡糖对海洋着色菌(Marichromatium gracile)YL28生长及去除无机三态氮的影响规律。【方法】采用次溴酸钠氧化法、N-(1-萘基)-乙二胺分光光度法和紫外分光光度法分别测定水体中氨氮、亚硝氮和硝氮的含量,菌体生物量采用比浊法测定。【结果】在光照厌氧环境中,小分子有机酸盐(乙酸钠、丙酮酸钠、琥珀酸钠和柠檬酸钠)是YL28生长和去除无机三态氮的良好有机碳,亚硝氮、硝氮和氨氮去除率分别达到97.92%、99.98%、73.23%-87.15%。单糖(葡萄糖和果糖)、双糖(麦芽糖和蔗糖)和寡糖(壳寡糖和海藻寡糖)是YL28可利用的有机碳,亚硝氮和硝氮去除率分别达到99%和87%以上,氨氮去除率在44.82%-54.53%之间。多糖(β-环糊精、淀粉、黄原胶、琼脂粉、海藻酸钠和卡拉胶)不是菌体利用和去除无机三态氮的有机碳。酵母提取物可作为菌体生长、去除硝氮和亚硝氮的良好有机碳,但严重抑制氨氮去除。海藻酸钠、β-环糊精和卡拉胶分别与乙酸钠共存时,YL28生长和对无机三态氮去除能力与乙酸钠为唯一有机碳的水平相当。乙酸钠体系中添加海藻寡糖,YL28生长速率、最大生物量以及氨氮的去除速率和最大去除率均升高,添加酵母提取物时,生长速率和最大生物量升高,但氨氮去除速率和最大去除率降低。黑暗厌氧环境下,以乙酸钠和氨氮为唯一有机碳和氮源时,YL28不生长,但在无机三态氮共存时,则能良好生长并去除无机三态氮。【结论】在无机三态氮共存海水体系和厌氧条件下,无论是光照还是黑暗环境,YL28均能良好地生长和去除无机三态氮,小分子有机酸盐(乙酸钠、丙酮酸钠、琥珀酸钠、柠檬酸钠)是其良好的有机碳,相对而言,乙酸钠和丙酮酸钠更好。海藻寡糖与乙酸钠复合可提高菌体生长和脱氮能力。本研究为研制开发高效脱氮微生物制剂及其合理性应用提供了指导。  相似文献   
103.
血清浓度及溶氧对培养rCHO细胞生产尿激酶原的影响   总被引:7,自引:1,他引:7  
在30L搅拌式反应器中用多孔微载体培养分泌尿激酶原的DNA重组中国仓鼠卵巢细胞(rCHO),研究了血清浓度及溶氧对细胞生长和表达的影响.结果表明,在2×105/ml低密度接种条件下,使用低(无)血清培养基会延长细胞生长延滞期并降低比生长速率,而细胞密度大于106/ml时,血清浓度对细胞生长和产物表达的影响没有显著差别.溶氧(DO)维持在20%~45%时,对细胞表达产物和葡萄糖代谢无明显影响,但溶氧降至7%~9%时,细胞表达水平明显降低,葡萄糖代谢转化为乳酸的比例上升.  相似文献   
104.
免疫亲和层析法纯化单链尿激酶型纤溶酶原激活剂   总被引:1,自引:0,他引:1  
尿激酶原 (Pro urokinase ,pro UK) ,也称单链尿激酶型纤溶酶原激活剂 (Single chainurokinase typeplasminogenactivator,scu PA) ,与t PA一样是第二代溶栓药物。给药时 ,保持无活性的酶原状态 ,只激活被纤维蛋白吸附的纤溶酶原 ,而对游离的纤溶酶原没有作用 ,即只在血栓表面才能活化转变为双链尿激酶 (Two chainurokinase typeplasminogenactivator,tcu PA或UK) ,因而具有较高的特异性溶血栓作用[1 ] 。尿激酶原…  相似文献   
105.
采用两步阳极氧化法制备出孔径为75nm的多孔阳极氧化铝(PAA75),并使用交流电沉积技术在PAA75孔道内装载纳米Cu。采用场发射扫描电镜(FESEM)观察样品微观形貌,进一步采用X射线衍射(XRD)、X射线光电子能谱分析(XPS)对材料化学组成及晶型进行了表征和分析。选用大肠杆菌(E.coli ATCC 8099)和金黄色葡萄球菌(S.aureus ATCC6538)测试Cu/PAA的抗菌性能。研究结果表明,本方法制备的Cu/PAA中Cu主要以Cu0存在,并且Al和Cu所占原子比为17.77∶0.71。体外抗菌测试表明,Cu(10s)/PAA对E.coli的1d、2d和3d抑菌率分别为82%±11%、78%±7%和45%±4%,对S.aureus的1d、2d和3d抑菌率分别为89%±4%、75%±8%和56%±11%。  相似文献   
106.
107.
Gut microbiota of the gastrointestinal tract provide health benefits to the human host via bacterial metabolites. Bacterial butyrate has beneficial effects on intestinal homeostasis and is the preferred energy source of intestinal epithelial cells, capable of inducing differentiation. It was previously observed that changes in the expression of specific proteins as well as protein glycosylation occur with differentiation. In this study, specific mucin O-glycans were identified that mark butyrate-induced epithelial differentiation of the intestinal cell line CaCo-2 (Cancer Coli-2), by applying porous graphitized carbon nano–liquid chromatography with electrospray ionization tandem mass spectrometry. Moreover, a quantitative proteomic approach was used to decipher changes in the cell proteome. It was found that the fully differentiated butyrate-stimulated cells are characterized by a higher expression of sialylated O-glycan structures, whereas fucosylation is downregulated with differentiation. By performing an integrative approach, we generated hypotheses about the origin of the observed O-glycome changes. These insights pave the way for future endeavors to study the dynamic O-glycosylation patterns in the gut, either produced via cellular biosynthesis or through the action of bacterial glycosidases as well as the functional role of these patterns in homeostasis and dysbiosis at the gut–microbiota interface.  相似文献   
108.
A phenomenological model has been developed to describe biomass distribution and substrate depletion in porous diatomaceous earth (DE) pellets colonized by Pseudomonas aeruginosa. The essential features of the model are diffusion, attachment and detachment to/from pore walls of the biomass, diffusion of substrate within the pellet, and external mass transfer of both substrate and biomass in the bulk fluid of a packed bed containing the pellets. A bench-scale reactor filled with DE pellets was inoculated with P. aeruginosa and operated in plug flow without recycle using a feed containing glucose as the limiting nutrient. Steady-state effluent glucose concentrations were measured at various residence times, and biomass distribution within the pellet was measured at the lowest residence time. In the model, microorganism/substrate kinetics and mass transfer characteristics were predicted from the literature. Only the attachment and detachment parameters were treated as unknowns, and were determined by fitting biomass distribution data within the pellets to the mathematical model. The rate-limiting step in substrate conversion was determined to be internal mass transfer resistance; external mass transfer resistance and microbial kinetic limitations were found to be nearly negligible. Only the outer 5% of the pellets contributed to substrate conversion. (c) 1993 Wiley & Sons, Inc.  相似文献   
109.
In this article, the results from a theoretical and experimental investigation of enzyme immobilization in porous membranes are reported. A theoretical model of the immobilization process, which accounts for restricted diffusion of enzyme in the pores of the membrane, has been developed. The model predicts the effect of immobilization kinetics and time of immobilization on the enzyme distribution in the pores of the membrane. The immobilization of glucose oxidase and glucose oxidase-biotin conjugate on porous alumina membranes was experimentally investigated. Enzyme uptake data was correlated to the theory to determine the rate constant of imobilization and the distribution of the enzyme in the pore. Immobilization studies were carried out for enzyme adsorption and for enzyme attachment by covalent coupling. The distribution of enzyme was experimentally studied by assembling five membranes in the diffusion cell. Following immobilization, the membranes were separated and each was assayed for activity. The amount of active enzyme present in each membrane yielded a discrete distribution that compared well with that predicted by theory. (c) 1992 John Wiley & Sons, Inc.  相似文献   
110.
Fluid mechanics of a spinner-flask bioreactor   总被引:9,自引:0,他引:9  
Spinner-flask bioreactors have been used for the production of articular cartilage in vitro. The dynamic environment within bioreactors is known to significantly affect the growth and development of the tissue. The present research focuses on the experimental and numerical characterization of the flow field within a spinner flask operating under conditions used to produce cartilage. Laboratory experiments carried out in a scaled-up model bioreactor employ particle-image velocimetry (PIV) to determine velocity and shear-rate fields in the vicinity of the construct closest to the stir bar, in addition to turbulence properties. Numerical computations calculated using FLUENT, a commercial software package, simulate the flow field in the same model bioreactor under similar operating conditions. In the computations, scaffolds were modeled as both solid and porous media with different permeabilities and flow rates through various faces of the construct nearest the stir bar were examined.  相似文献   
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