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991.
介绍了弹性滑移支座的原理、构造和特点;通过对其在不同工况下的性能试验,研究了竖向荷载、位移幅值以及加载频率对弹性滑移支座力学性能的影响,并给出了试验值与理论计算值之间的对比。研究结果表明:弹性滑移支座具有良好的工作性能,滞回曲线饱满,耗能能力强;竖向荷载和加载频率对弹性滑移支座的力学性能有一定的影响,而位移幅值对其影响较小;弹性滑移支座的恢复力模型,可以用考虑速度的指数摩擦力模型来描述,并且模拟得较为准确。  相似文献   
992.
通过对边坡稳定分析方法中的条分理论和响应面法的研究,针对边坡可靠性计算往往没有明确的解析表达式,以及稳定性系数计算方法和响应面法(RSM)的特点,将响应面法中的有限元数值模拟以条分模式中的稳定性系数隐式方程的迭代计算方法代替,建立了条分模式下的边坡可靠性计算的极限状态方程,从而形成了一种新的边坡稳定可靠性响应面分析方法。本文提出的改进的响应面法原理简单,计算效率较高并具有一定的精度,适用于对边坡可靠度的近似计算。  相似文献   
993.
为研究下蜀土边坡的地震稳定性,选用天然下蜀土,按照Meymand的相似法则,对一坡高为0.5m、宽度为1.05m、坡角为45°的模型边坡进行了几何相似常数为20的1g大型振动台模型试验详细设计。首先,运用数值模拟的方法确定了模型边坡尺寸适当的边界范围,模型边坡地基厚度、坡脚前缘和坡肩后缘长度均取为0.5m;其次,按照确定的模型几何尺寸设计了符合试验要求的模型箱,其内壁净尺寸(长×宽×高)为1500mm×1050mm×1100mm,属刚性模型箱,且不会与模型边坡发生共振;最后,制定了包括加速度和位移在内的数据量测策略,运用拟静力法求得下蜀土边坡平均屈服加速度为0.561g,综合确定了地震动峰值(PGA)按0.1g、0.3g、0.6g和0.9g的顺序逐级加载的原则,并制定了详细的试验步骤,从而可保障试验得到可靠的结果。  相似文献   
994.
吡虫啉和啶虫脒是目前使用较广的2种新烟碱类杀虫剂,它们在环境、食品和人体样品中的普遍残留,对人体健康构成威胁,但目前关于其对人的神经毒性仍知之甚少.本文以人神经母细胞瘤SK-N-SH细胞为模型,采用体外细胞实验,研究不同浓度吡虫啉和啶虫脒暴露对细胞活力、细胞形态、烟碱型乙酰胆碱受体(nAChRs)α7亚基的mRNA和蛋白表达、乙酰胆碱酯酶活性以及氧化应激的影响,为这2种杀虫剂的健康风险评价提供依据.实验中,先将SK-N-SH细胞分别暴露于不同浓度的吡虫啉和啶虫脒24 h,通过测定细胞活力,确定2种杀虫剂的10%抑制浓度(IC10)值.在此基础上,设定3个梯度的低暴露浓度(0.01、0.1和1 mmol· L-1)和溶剂对照,研究吡虫啉和啶虫脒对SK-N-SH细胞其他指标的影响(暴露24 h后).细胞活力、氧化损伤和乙酰胆碱酯酶活性分别用相应的试剂盒测定,细胞形态用倒置光学显微镜观察,nAChRs α7亚基的mRNA和蛋白表达分别用RT-qPCR和Western Blot测定.结果 表明,吡虫啉和啶虫脒的IC10值分别约为1.5 mmol· L-1和2.0 mmol· L-1.1 mmo1·L-1吡虫啉对nAChR α7的mRNA表达和蛋白表达均显著提高,对乙酰胆碱酯酶活性有显著抑制,并引起细胞显著的氧化应激(P<0.05).0.1 mmol· L-1吡虫啉对乙酰胆碱酯酶活性有显著抑制(P<0.05).1 mmol· L-1啶虫脒对nAChR α7的mRNA表达和蛋白表达均有显著提高(P<0.05).为进一步揭示吡虫啉的影响,对0.1 mmol· L-1吡虫啉暴露组和溶剂对照组细胞进行了转录组分析,发现吡虫啉暴露对一些神经退行性疾病相关基因及其他一些重要通路相关基因有显著影响.本研究证明,吡虫啉和啶虫脒在非致死浓度条件下会对细胞产生一系列显著影响,吡虫啉的影响大于啶虫脒.  相似文献   
995.
为明确75%戊唑·嘧菌酯可溶性粉剂对意大利蜜蜂、玉米螟赤眼蜂和家蚕的急性毒性和初级风险.采用国标《化学农药环境安全评价试验准则》(GB/T 31270—2014)中的4种方法,包括饲喂法(蜜蜂经口)、点滴法(蜜蜂接触)、药膜法(赤眼蜂)和浸叶法(家蚕),分别测定了该农药对上述3种非靶标昆虫的急性毒性,并根据国标《农药登记环境风险评估指南》(NY/T 2882—2016)把这些结果用于该药的初级风险评估.结果表明,75%戊唑·嘧菌酯可溶性粉剂对意大利蜜蜂的急性接触毒性48 h半致死剂量(48 h-LD50)为>105μg·蜂-1,急性经口毒性48 h-LD50为65.9μg·蜂-1,对蜜蜂的风险可接受(风险商(RQ)=0.135≤1).对玉米螟赤眼蜂的急性毒性24 h半致死用量(24 h-LR50)为2.81×10-6 mg·cm-2,对玉米螟赤眼蜂的农田内和农田外喷雾场景风险均不可接受(危害商HQin=1199>5,HQoff=24.2>5).对家蚕的急性毒性96 h半致死浓度(96 h-LC50)为596 mg·L-1,对家蚕的喷雾场景下的最外围桑树风险不可接受(RQ=7.47>1),次外围桑树风险可接受(RQ=0.457≤1).对不可接受的风险,宜采取风险减轻措施,如喷雾施药期间禁止释放赤眼蜂,避免在桑园周围喷雾法施药等,以达到保护非靶标环境生物的目的.  相似文献   
996.
• N-doped activated carbon was prepared for catalytic pyrolysis of walnut shell. • Alkylphenols were selectively produced from catalytic pyrolysis process. • The alkylphenols yield increased by 8.5 times under the optimal conditions. • Formation mechanism of alkylphenols was proposed. Alkylphenols are a group of valuable phenolic compounds that can be derived from lignocellulosic biomass. In this study, three activated carbons (ACs) were prepared for catalytic fast pyrolysis (CFP) of walnut shell to produce alkylphenols, including nitrogen-doped walnut shell-derived activated carbon (N/WSAC), nitrogen-doped rice husk-derived activated carbon (N/RHAC) and walnut shell-derived activated carbon (WSAC). Pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) experiments were carried out to reveal the influences of AC type, pyrolytic temperature, and AC-to-walnut shell (AC-to-WS) ratio on the product distributions. Results showed that with nitrogen doping, the N/WSAC possessed stronger capability than WSAC toward the alkylphenols production, and moreover, the N/WSAC also exhibited better effects than N/RHAC to prepare alkylphenols. Under the catalysis of N/WSAC, yields of alkylphenols were significantly increased, especially phenol, cresol and 4-ethylphenol. As the increase of pyrolytic temperature, the alkylphenols yield first increased and then decreased, while high selectivity could be obtained at low pyrolytic temperatures. Such a trend was also observed as the AC-to-WS ratio continuously increased. The alkylphenols production achieved a maximal yield of 44.19 mg/g with the corresponding selectivity of 34.7% at the pyrolytic temperature of 400°C and AC-to-WS ratio of 3, compared with those of only 4.67 mg/g and 6.1% without catalyst. In addition, the possible formation mechanism of alkylphenols was also proposed with the catalysis of N/WSAC.  相似文献   
997.
5R (Recover, Reduce, Recycle, Resource and Reuse) approaches to manage urban water. 5R harvests storm water, gray water and black water in several forms. 5R offers promise for moving solutions for urban water scarcity in practice. Demand for water is expanding with increases in population, particularly in urban areas in developing countries. Additionally, urban water system needs a novel perspective for upgradation with urbanization. This perspective presents a novel 5R approach for managing urban water resources: Recover (storm water), Reduce (toilet flushing water), Recycle (gray water), Resource (black water), and Reuse (advanced-treated wastewater). The 5R generation incorporates the latest ideas for harvesting storm water, gray water, and black water in its several forms. This paper has briefly demonstrated each R of 5R generation for water treatment and reuse. China has the chance to upgrade its urban water systems according to 5R principles. Already, a demonstration project of 5R generation has been installed in Qingdao International Horticultural Exposition, and Dalian International Convention Center (China) has applied 5R, achieving over 70% water saving. The 5R offers promise for moving solutions for urban water scarcity from “hoped for in the future” to “realistic today”.  相似文献   
998.
• Aerosol transmission is an indispensable route of COVID-19 spread. • Different outbreak sites have different epidemiologic feature. • SRAS-CoV-2 can exist for a long time in aerosol. • SRAS-CoV-2 RNA can be detected in aerosol in diverse places. • Some environmental factors can impact SARS-CoV-2 transportation in aerosol. Patients with COVID-19 have revealed a massive outbreak around the world, leading to widespread concerns in global scope. Figuring out the transmission route of COVID-19 is necessary to control further spread. We analyzed the data of 43 patients in Baodi Department Store (China) to supplement the transmission route and epidemiological characteristics of COVID-19 in a cluster outbreak. Incubation median was estimated to endure 5.95 days (2–13 days). Almost 76.3% of patients sought medical attention immediately upon illness onset. The median period of illness onset to hospitalization and confirmation were 3.96 days (0–14) and 5.58 days (1–21), respectively. Patients with different cluster case could demonstrate unique epidemiological characteristics due to the particularity of outbreak sites. SRAS-CoV-2 can be released into the surrounding air through patient’s respiratory tract activities, and can exist for a long time for long-distance transportation. SRAS-CoV-2 RNA can be detected in aerosol in different sites, including isolation ward, general ward, outdoor, toilet, hallway, and crowded public area. Environmental factors influencing were analyzed and indicated that the SARS-CoV-2 transportation in aerosol was dependent on temperature, air humidity, ventilation rate and inactivating chemicals (ozone) content. As for the infection route of case numbers 2 to 6, 10, 13, 16, 17, 18, 20 and 23, we believe that aerosol transmission played a significant role in analyzing their exposure history and environmental conditions in Baodi Department Store. Aerosol transmission could occur in some cluster cases when the environmental factors are suitable, and it is an indispensable route of COVID-19 spread.  相似文献   
999.
• Pore structure affects biologically activated carbon performance. • Pore structure determines organic matter (OM) removal mechanism. • Microbial community structure is related to pore structure and OM removal. Optimizing the characteristics of granular activated carbon (GAC) can improve the performance of biologically activated carbon (BAC) filters, and iodine value has always been the principal index for GAC selection. However, in this study, among three types of GAC treating the same humic acid-contaminated water, one had an iodine value 35% lower than the other two, but the dissolved organic carbon removal efficiency of its BAC was less than 5% away from the others. Iodine value was found to influence the removal of different organic fractions instead of the total removal efficiency. Based on the removal and biological characteristics, two possible mechanisms of organic matter removal during steady-state were suggested. For GAC with poor micropore volume and iodine value, high molecular weight substances (3500–9000 Da) were removed mainly through degradation by microorganisms, and the biodegraded organics (soluble microbial by-products,<3500 Da) were released because of the low adsorption capacity of activated carbon. For GAC with higher micropore volume and iodine value, organics with low molecular weight (<3500 Da) were more easily removed, first being adsorbed by micropores and then biodegraded by the biofilm. The biomass was determined by the pore volume with pore diameters greater than 100 μm, but did not correspond to the removal efficiency. Nevertheless, the microbial community structure was coordinate with both the pore structure and the organic removal characteristics. The findings provide a theoretical basis for selecting GAC for the BAC process based on its pore structure.  相似文献   
1000.
当代中国环境治理的权利观   总被引:3,自引:3,他引:0       下载免费PDF全文
侯健 《中国环境管理》2021,13(1):162-169
当代中国环境治理的权利观是指从权利的角度去考察、理解当代中国的环境治理,推进当代中国的生态文明建设事业。从这一角度来看,环境相关权利是当代中国环境治理的基本价值目标,也是重要的治理工具。所谓环境相关权利,是指环境治理有助于保障的环境权、生存权和发展权、生命权和健康权,以及在环境治理中可以运用到的知情、表达、参与、监督等权利。当代中国环境治理的权利观,在理论上符合生态文明建设的以人为本原则,符合国家治理体系和能力现代化的方针和取向,在实践上也能够揭示当代中国生态文明建设和环境治理的基本特征、精神实质和发展方向,既具有阐释性,也具有建构性。  相似文献   
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