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231.
A new approach to predicting the maximum temperature in dry drilling based on a finite element model
A new analysis approach is developed to predict the temperature in dry drilling. The working rake angle and the working relief angle which the effect of feed is considered at an arbitrary point in the leading cutting edge of a twist drill are developed for the equivalent model. Then finite element models are developed to predict the drilling temperature based on the equivalent model. Commercial finite element codes Abaqus, Deform 2D and Third Wave Systems AdvantEdge have been used. In simulations, different chip separation models and material models are applied in the three codes. And the effect of the laws of drilling velocities and feed rates on the temperature are investigated by the finite element method. Predicted results of the maximum temperatures by three codes are compared with experiments, respectively. Results indicate that the drilling temperature results of simulations have good agreement to the experimental ones, and the errors are all less than 15%. 相似文献
232.
生物除磷系统启动期聚磷菌的FISH原位分析与聚磷特性 总被引:11,自引:4,他引:7
应用FISH对以乙酸钠为碳源的强化生物除磷 (EBPR) SBR反应器启动期的微生物进行原位分析,考察除磷生态系统形成过程中聚磷菌种群结构、空间分布关系动态变化及其聚磷特性.结果表明,以异养菌为主的活性污泥经过厌氧/好氧驯化后,聚磷菌大量富集,在全菌中的比例由11.5%增加到40.48%.启动过程中,生物系统内菌群竞争持续进行:首先,聚磷菌淘汰异养菌,历时5 d;聚磷菌种群内选择过程历时19 d;经过优势聚磷菌群的二次增长后,共计34 d完成生物除磷系统的启动.富集过程中快速增殖的聚磷菌不能立刻行使除磷能力,要有一段“积累期”形成一定的PHA和poly-P储备.表现为污染物去除效率滞后于聚磷菌的增殖,经过4~8 d的 “积累期”后上升出现峰值.二次增长的优势聚磷菌群也经过“积累期”后才发挥作用.FISH图片显示,快速增殖期的聚磷菌菌体小,菌群结构松散.经过“积累期”之后,菌体不断增大,并开始紧密聚集形成致密的团状,此时反应器处理效率较高. 相似文献
233.
The adsorption of six kinds of chlorophenols on pristine, hydroxylated and carboxylated single-walled carbon nanotubes(SWCNTs) has been investigated. Pseudo-first order and pseudo-second order models were used to describe the kinetic data. All adsorption isotherms were well fitted with Langmuir, Freundlich and Polanyi–Manes models, due to surface adsorption dominating the adsorption process. The close linear relationship between log Kowand log Kdsuggested that hydrophobicity played an important role in the adsorption. The SWCNTs' adsorption capacity for chlorophenols was weakened by addition of oxygen-containing functional groups on the surface, due to the loss of specific surface area, the increase of hydrophilicity and the reduction of π–π interaction. The best adsorption capacity of pristine SWCNTs, SWCNT-OH and SWCNT-COOH for six chlorophenols varied from 19 to 84 mg/g, from 19 to 65 mg/g and from 17 to 65 mg/g,respectively. The effect of pH on the adsorption of 2,6-dichlorophenol(2,6-DCP), was also studied. When p H is over the pK aof 2,6-dichlorophenol(2,6-DCP), its removal dropped sharply. When ionic strength increased(Na Cl or KCl concentration from 0 to 0.02 mmol/L),the adsorption capacity of 2,6-DCP on pristine SWCNTs decreased slightly. The comparison of chlorophenols adsorption by SWCNTs, MWCNTs and PAC was made, indicating that the adsorption rate of CNTs was much faster than that of PAC. The results provide useful information about the feasibility of SWCNTs as an adsorbent to remove chlorophenols from aqueous solutions. 相似文献
234.
We explored the feasibility and removal mechanism of removing 2-chlorobiphenyl(2-Cl BP)from soil–water system using granular activated carbon(GAC) impregnated with nanoscale zerovalent iron(reactive activated carbon or RAC).The RAC samples were successfully synthesized by the liquid precipitation method.The mesoporous GAC based RAC with low iron content(1.32%) exhibited higher 2-Cl BP removal efficiency(54.6%) in the water phase.The result of Langmuir–Hinshelwood kinetic model implied that the different molecular structures between 2-Cl BP and trichloroethylene(TCE) resulted in more difference in dechlorination reaction rates on RAC than adsorption capacities.Compared to removing2-Cl BP in the water phase,RAC removed the 2-Cl BP more slowly in the soil phase due to the significant external mass transfer resistance.However,in the soil phase,a better removal capacity of RAC was observed than its base GAC because the chemical dechlorination played a more important role in total removal process for 2-Cl BP.This important result verified the effectiveness of RAC for removing 2-Cl BP in the soil phase.Although reducing the total RAC removal rate of 2-Cl BP,soil organic matter(SOM),especially the soft carbon,also served as an electron transfer medium to promote the dechlorination of 2-Cl BP in the long term. 相似文献
235.
236.
2012年8月2日台风达维登陆青岛,青岛市降大到暴雨(平均降水量69.9 mm)。为研究此次强降雨对胶州湾浮游动物群落结构的影响,本文利用降雨前(7月17日)和暴雨后(8月5日)采集的浮游动物样品,分析了胶州湾海域大中型浮游动物的种类组成、优势种、丰度和生物多样性等群落结构特征变化。结果表明:强降雨前后胶州湾浮游动物的种类数均为51种,但受强降雨带来的剧烈物理冲击和海洋环境快速改变的影响,强降雨后胶州湾浮游动物的平均丰度由1003.4 ind/m3下降为659.4 ind/m3。受海域地形等因素影响,不同海域所受影响程度不同,海湾东部浮游动物丰度下降趋势较西部明显,中部较湾口下降明显。同时,强降雨后浮游动物优势种更替明显,生物多样性指数略有增长。本研究可为深入了解异常极端天气对浮游动物群落结构的影响等研究提供基础资料。 相似文献
237.
论文利用9省1 504个农户调研数据,实证检验了新一轮集体林改后林地面积增加对农户营林积极性的因果效应。考虑到农户对林地经营面积决策的内生性问题,采用倾向值匹配方法对选择性偏差进行控制。匹配后,处理组和控制组在多个标准上均通过了平衡性检验。结果显示,林地面积增加确实促进了农户营林积极性的提高,但这是一个缓慢的动态调整过程。其中,资本投入强度在2010年以后才逐步表现为显著增加,增长率约为25%~27%,2013年进一步强化为28%~34%。资本投入强度的增加主要是由化肥和农药投入增加引起的,对种苗的投入强度并没有显著改善。这种差异说明,新一轮林改提高了农户的森林经营和管护积极性,但对造林行为的影响有限。同时农户并没有因为林地面积增加而显著提高劳动力的投入强度。这种资本对劳动的替代与农户的非农就业行为密切相关。 相似文献
238.
Hong-Cheng Wang Hao-Yi Cheng Shu-Sen Wang Dan Cui Jing-Long Han Ya-Ping Hu Shi-Gang Su Ai-Jie Wang 《环境科学学报(英文版)》2016,28(1):198-207
In this study, a novel scaled-up hybrid acidogenic bioreactor(HAB) was designed and adopted to evaluate the performance of azo dye(acid red G, ARG) containing wastewater treatment. Principally, HAB is an acidogenic bioreactor coupled with a biocatalyzed electrolysis module. The effects of hydraulic retention time(HRT) and ARG loading rate on the performance of HAB were investigated. In addition, the influent was switched from synthetic wastewater to domestic wastewater to examine the key parameters for the application of HAB. The results showed that the introduction of the biocatalyzed electrolysis module could enhance anoxic decolorization and COD(chemical oxygen demand) removal. The combined process of HAB-CASS presented superior performance compared to a control system without biocatalyzed electrolysis(AB-CASS). When the influent was switched to domestic wastewater, with an environment having more balanced nutrients and diverse organic matters, the ARG, COD and nitrogen removal efficiencies of HAB-CASS were further improved, reaching 73.3% ± 2.5%, 86.2% ± 3.8% and 93.5% ± 1.6% at HRT of 6 hr, respectively, which were much higher than those of AB-CASS(61.1% ± 4.7%,75.4% ± 5.0% and 82.1% ± 2.1%, respectively). Moreover, larger TCV/TV(total cathode volume/total volume) for HAB led to higher current and ARG removal. The ARG removal efficiency and current at TCV/TV of 0.15 were 39.2% ± 3.7% and 28.30 ± 1.48 m A,respectively. They were significantly increased to 62.1% ± 2.0% and 34.55 ± 0.83 m A at TCV/TV of 0.25. These results show that HAB system could be used to effectively treat real wastewater. 相似文献
239.
It is widely accepted that urban plant leaves can capture airborne particles. Previous studies on the particle capture capacity of plant leaves have mostly focused on particle mass and/or size distribution. Fewer studies, however, have examined the particle density, and the size and shape characteristics of particles, which may have important implications for evaluating the particle capture efficiency of plants, and identifying the particle sources. In addition, the role of different vegetation types is as yet unclear. Here, we chose three species of different vegetation types, and firstly applied an object-based classification approach to automatically identify the particles from scanning electron microscope(SEM)micrographs. We then quantified the particle capture efficiency, and the major sources of particles were identified. We found(1) Rosa xanthina Lindl(shrub species) had greater retention efficiency than Broussonetia papyrifera(broadleaf species) and Pinus bungeana Zucc.(coniferous species), in terms of particle number and particle area cover.(2) 97.9% of the identified particles had diameter ≤10 μm, and 67.1% of them had diameter ≤2.5 μm. 89.8% of the particles had smooth boundaries, with 23.4% of them being nearly spherical.(3) 32.4%–74.1% of the particles were generated from bare soil and construction activities, and 15.5%–23.0% were mainly from vehicle exhaust and cooking fumes. 相似文献
240.