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781.
Environmental Science and Pollution Research - Considerable advances have been made in the substrate design and operation strategies of constructed wetlands to facilitate nitrogen elimination....  相似文献   
782.
针对高填方路堤回填料分层碾压施工中呈现出超固结、剪胀和时间相依等复杂变形特征,以高填方多级挡墙路堤为例,通过现场勘查、室内试验以及变形监测获得回填土石料的力学性质,分别采用摩尔库仑、修正剑桥以及基于下负荷面的弹粘塑性二次开发本构模型,逐步表征路堤回填料的超固结、剪胀以及时间相依变形行为,并结合单元试验以及现场沉降监测数据反演综合确定三种本构模型材料,对比分析三种本构模型模拟高填方路堤施工及工后变形的差异,最后利用有限元强度折减法分析该高填方多级挡墙路堤的稳定性。计算结果表明:在路堤填筑初期(21 d),基于下负荷面的弹粘塑性模型和修正剑桥模型相比摩尔库仑模型考虑了先期固结应力,计算沉降量结果稍小;随着施工填筑的进行(100 d),一旦超过先期固结应力后,三种模型的沉降量变化逐渐接近;随着时间的增长,仅基于下负荷面的弹粘塑性模型能计算路堤的长期沉降,预测该路堤顶10 a工后沉降17 cm,满足工后沉降要求;同时发现路堤水平侧移呈“S”型内倾的变化特点,且通过有限元法强度折减计算得到边坡稳定性最小安全系数和最危险滑动面,均满足边坡稳定性要求,路堤边坡的失稳预警位移为4.6 cm。  相似文献   
783.
稠油热采注汽锅炉节能减排措施实践   总被引:1,自引:0,他引:1  
提高注汽锅炉系统热率是节能降耗、降本增效的主要挖潜方向。为此开展了一系列节能技术的研究,先后开展了热管空气换热器、高温辐射涂料的节能、硬度在线检测、对流段翅片管硬垢清洗技术的推广应用,通过这些技术的实施应用,取得一定的社会效益和经济效益。  相似文献   
784.
Yu  Zhiang  Ma  Yuxia  Zhang  Yifan  Cheng  Bowen  Feng  Fengliu  Ma  Bingji  Jiao  Haoran  Zhou  Ji 《Environmental geochemistry and health》2021,43(10):4123-4138
Environmental Geochemistry and Health - Recently, particulate matter pollution has been worsening, which has been affecting the asthma visits in children. In this study, we assessed the short-term...  相似文献   
785.
环境内分泌干扰物对环境影响十分严重,绝大部分进入水环境,危害水生生物健康,进而影响人类健康.17α-甲基睾酮(17α-methyltestosterone,MT)是一种常见的环境雄激素,但在鱼体内的作用机制尚不明确.为了探究MT对鱼类肝脏脂质代谢的影响,采用不同浓度的MT(0、25、50和100 ng·L-1)处理864尾稀有鮈鲫(Gobiocypris rarus),分别在7、14和21 d取肝脏样品.用石蜡组织切片(H-E染色)研究MT对稀有鮈鲫肝脏组织的影响;用RT-qPCR检测4个内参基因的稳定性及5个脂质代谢相关基因(acaca、acacb、fasn、gpat1和cpt1α)的mRNA表达;用ELISA法测定肝脏中甘油三酯的含量.结果 表明,MT会对稀有鮈鲫肝脏造成一定程度的影响,50 ng·L-1 MT处理14 d,肝脏组织损伤最明显.25 ng·L-1和50 ng·L-1 MT处理14 d,相关基因的表达均显著变化(P<0.05).mRNA表达与组织学结果均表明50 ng·L-1 MT对稀有鮈鲫肝脏影响最为显著.100ng·L-1 MT处理21 d,acaca、cpt1α和gpat1基因表达量显著下降(P<0.05).MT对雌鱼肝脏甘油三酯影响较雄鱼大.综上,MT通过影响肝脏脂质代谢相关基因mRNA的表达,干扰了稀有鮈鲫肝脏脂质代谢过程,进而对肝脏产生不同程度的损伤.由于MT在不同性别鱼体内的代谢途径不同,推测MT在稀有觞鲫体内可能被芳香化为雌激素(ME),从而发挥部分雌激素作用.  相似文献   
786.
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   
787.
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   
788.
• The inhibition of the main organic pollutions in CMW was demonstrated. • Variations of AK and BK showed a high correlation with the SAA of Ac and n-Bu. • The inhibitory degree was in the order of Ac>n-Bu for individual toxicants. • Biodegradation products of the main toxicants were analyzed. This work aims to investigate the inhibitory effect of crotonaldehyde manufacture wastewater (CMW) on biological acidification. To reveal the inhibitory effect of wastewater to the anaerobic granular sludge (AnGS), variations of the specific acidogenic activity (SAA) and activities of key enzymes were investigated. The results indicated that the dosage of CMW causing a 50% effect concentration (EC50) on the activity of total volatile fatty acids (TVFA) production was 380 mg COD/g VSS. The inhibitory effect of individual toxicants in CMW on the activity of TVFA production were in the order of crotonaldehyde>ethyl sorbate>(E,E)-2,4-hexadienal, and their inhibitory degrees on individual VFA products were acetic acid (Ac)>n-butyric acid (n-Bu), which could correspond to the variations in the activities of acetate kinase (AK) and butyrate kinase (BK). Furthermore, the combined effect of three toxicants on the activity of TVFA production was significantly higher than that of any individual toxicant, and the contribution of the relative toxicity to CMW was 77.27%. Additionally, the biodegradation products of the main toxicants indicated that the removal of crotonaldehyde and (E,E)-2,4-hexadienal was primarily due to the hydrogenation of alkene and aldehyde and the oxidation of aldehyde. Nevertheless, the removal of ethyl sorbate was primarily based on adsorption. In conclusion, biological acidification has a limited ability to treatment CMW, therefore, a further pretreatment technology should be used to remove the main toxicant of wastewater.  相似文献   
789.
• 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   
790.
The residual levels of organochlorine pesticides (OCPs) were examined in soils covering five types of land use along a salinity gradient on the Yellow River Delta. The most prominent OCPs were dichlorodiphenyltrichloroethane (∑DDT, arithmetic mean = 5.11 μg kg?1), hexachlorocyclohexane (∑HCH, 1.69 μg kg?1) and ∑endosulfan (10.4 μg kg?1). The spatial variability of OCPs composition shifted from γ-HCH and o,p′-DDT dominated pesticides in coastal soils to p,p′-DDE dominated pesticides in inland soils. In different land-use types, the percentages of β-HCH and p,p′-DDE are characterized by more recalcitrant components in decreasing order of vegetable fields, cereal fields, cotton fields, wetlands and tidal flats with increasing soil salinity. However, the less recalcitrant components, γ-HCH and o,p′-DDT, showed an opposite trend. Endosulfan sulfate predominated in all land-use types. Residual levels of β-HCH were affected by soil organic matter. The correlations between γ-HCH and clay content and between p,p′-DDE, o,p′-DDT and salinity might associate with the influence of sediment cotransport by the Yellow River and the density of anthropogenic activities in coastal region. Depth distribution of the OCPs in typical soil profiles also implied that local historical usage and sediment transport by the Yellow River both affected the OCPs residual in this region.  相似文献   
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