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51.
In this study, in order to research the synergistic inhibition effect of nitrogen and ultrafine water mist on gas explosion in a vented duct, a semi-confined transparent chamber was designed with the size of 120 × 120 × 840 mm, and the experiments were carried out with stoichiometric methane/air premixed mixture (fraction of methane: 9.5%), adding different fractions of nitrogen and ultrafine water mist. The experimental results showed the following: The combination of nitrogen and ultrafine water mist had a synergistic inhibiting effect on methane/air explosion, which was preferable to the single use of any kind. With the increase of spraying time of water mist and fraction of nitrogen, the initial shape of the explosion flame became snakelike, and at the same time the peak flame propagation speed and peak overpressure decreased significantly. When the nitrogen fraction was increased to 10% and the mist spraying time was increased to 2min, synergistic inhibiting effect on overpressure was high efficient. However, with the increase of spraying time of water mist and fraction of nitrogen going on, the amount of increase of explosion inhibition efficiency was gradually reduced.  相似文献   
52.
The inhibition effect of heptafluoropropane (CF3CHFCF3) on methane explosions under different inhibitor concentrations in a closed vessel was studied. A high-speed camera and a pressure sensor were adopted respectively to record flame propagation characteristics and pressure data. Results indicate that the relationship between flame propagation and pressure rising was correlated. As the equivalent ratio (ϕ)≤1, the pressure presented a trend of rising firstly and then decreasing with increasing CF3CHFCF3 concentration, and it was found that there existed a critical concentration for pressure decrease. As ϕ > 1, the pressure exhibited a decreasing trend. Although the pressure appeared to seemingly increase, the moment that the pressure began to rise (trise) and the moment that the maximum explosion overpressure appeared (tPmax) were obviously delayed. The average rate of pressure rise ((dP/dt)ave) was decreased as the concentration of CF3CHFCF3 increased. It indicates that CF3CHFCF3 can effectively reduce the explosion reaction rate. The critical concentration of CF3CHFCF3 for complete inhibition was determined. Meanwhile, the synergy of CF3CHFCF3-inert gas can improve the inhibition effect. Compared with CF3CHFCF3–N2, the synergy of CF3CHFCF3–CO2 presented a better inhibition effect, and the inhibition effect was increased with increasing inert gas concentration. And the mechanisms of physical and chemical effects on explosion inhibition were analyzed.  相似文献   
53.
Azo compounds are widely involved in the industrial processes of dyes, pigments, initiators, and blowing agents. Unfortunately, these compounds have a bivalent unstable –NN– composition, which can be readily broken when the ambient temperature is elevated. Self-accelerating decomposition might cause a runaway reaction and lead to a fire, explosion, or leakage when the cooling system fails or other events occur. This study investigated the explosion properties, thermal stability parameters, and thermal hazard and mechanism of 2,2′–azobisisobutyronitrile (AIBN) and 2,2′–azobis–2–methylbutyronitrile (AMBN). We used a 20-L apparatus, vent sizing package 2, synchronous thermal analysis, and differential scanning calorimetry under explosive, adiabatic, and dynamic conditions to acquire the explosive curves, thermal curves, and thermodynamic parameters of the substances. Moreover, the differential isoconversional method (Friedman method) and ASTM E698 equation were employed to obtain the apparent activation energy Ea. All the experimental results revealed that AIBN is more dangerous than AMBN. The Ea of AIBN was lower than that of AMBN. The results can be used to construct an azo compound thermal hazard database for use for searches and reference examples by industry and related research areas.  相似文献   
54.
Explosion characteristics of micron- and nano-size magnesium powders were determined using CSIR-CBRI 20-L Sphere, Hartmann apparatus and Godbert-Greenwald furnace to study influence of particle size reduction to nano-range on these. The explosion parameters investigated are: maximum explosion pressure (Pmax), maximum rate of pressure-rise (dP/dt)max, dust explosibility index (KSt), minimum explosible concentration (MEC), minimum ignition energy (MIE), minimum ignition temperature (MIT), limiting oxygen concentration (LOC) and effect of reduced oxygen level on explosion severity. Magnesium particle sizes are: 125, 74, 38, 22, 10 and 1 μm; and 400, 200, 150, 100, 50 and 30 nm. Experimental results indicate significant increase in explosion severity (Pmax: 7–14 bar, KSt: 98–510 bar·m/s) as particle size decreases from 125 to 1 μm, it is maximum for 400 nm (Pmax: 14.6 bar, KSt: 528 bar·m/s) and decreases with further decrease of particle size to nano-range 200–30 nm (Pmax: 12.4–9.4 bar, KSt: 460–262 bar·m/s) as it is affected by agglomeration of nano-particles. MEC decreases from 160 to 30 g/m3 on decreasing particle size from 125 to 1 μm, its value is 30 g/m3 for 400 and 200 nm and 20 g/m3 for further decrease in nano-range (150–30 nm). MIE reduces from 120 to 2 mJ on decreasing the particle size from 125 to 1 μm, its value is 1 mJ for 400, 200, 150 nm size and <1 mJ for 50 and 30 nm. Minimum ignition temperature is 600 °C for 125 μm magnesium, it varies between 570 and 450 °C for sizes 38–1 μm and 400–350 °C for size range 400–30 nm. Magnesium powders in nano-range (30–200 nm) explode less violently than micron-range powder. However, likelihood of explosion increases significantly for nano-range magnesium. LOC is 5% for magnesium size range 125–38 μm, 4% for 22–1 μm, 3% for 400 nm, 4% for 200, 150 and 100 nm, and 5% for 50 and 30 nm. Reduction in oxygen levels to 9% results in decrease in Pmax and KSt by a factor of 2–3 and 4–5, respectively, for micron as well as nano-sizes. The experimental data presented will be useful for industries producing or handling similar size range micron- and nano-magnesium in order to evaluate explosibility of their magnesium powders and propose/design adequate safety measures.  相似文献   
55.
Long-term changes, from 1984 to 2010, in the indicators of microbial pollution (total viable count, coliforms, Escherichia coli, enterococci, and Clostridium perfringens) are analysed in the Riga Hydropower Plant Reservoir, an essential source of drinking water for Riga, the capital of Latvia. Counts in microbial indicators fluctuated seasonally and were related to physicochemical parameters (nitrogen compounds, turbidity, temperature, and pH). The changes in microbial pollution were brought about by two major socio-economic developments. Firstly, Latvia’s independence from the USSR in 1991 which facilitated a distinct reduction in most microorganism counts due to a sharp decline in industrial and agricultural production. This resulted in a significant drop in point and nonpoint pollution in the river basin. A further development was Latvia joining the European Union in 2004. The corresponding focus on water management, including wastewater treatment, was a major priority of environmental investment and lead to improvements in microbial water quality.Electronic supplementary materialThe online version of this article (10.1007/s13280-020-01470-1) contains supplementary material, which is available to authorized users.  相似文献   
56.
对羟基苯甲酸酯(parabens)作为防腐剂、防霉剂和杀菌剂等被广泛应用于食品、化妆品和药品中.近年来的研究表明,该类化合物能够在地表水体中检出,对水生生态环境存在潜在的危害.本研究于2016年秋季和冬季,对哈尔滨某典型城市污水处理厂进水进行了24 h连续采集,对6种parabens的质量浓度和4种常规水质指标进行了分析.结果表明,parabens普遍存在于城市污水中,对羟基苯甲酸甲酯、对羟基苯甲酸乙酯和对羟基苯甲酸丙酯是主要目标物,总有机碳、总溶解固体和酸碱度与parabens的浓度具有相关性;城市污水中parabens的质量浓度具有明显的日变化趋势,但是季节差异性不大.本研究结果为城市污水处理系统中parabens的深入研究和污染控制提供了重要理论依据.  相似文献   
57.
不同国家基于健康风险的土壤环境基准比较研究与启示   总被引:15,自引:7,他引:8  
20世纪90年代以来,许多发达国家颁布了基于健康风险的土壤环境标准及基准背景技术文件,为发展中国家启动标准制订和开展基准研究提供了重要的方法学参考.然而,由于各国在环境立法框架、基准推导过程、环境气候特征、土壤类型、人群生活方式与习惯等方面的不同,导致其基准名称、基准功能、保护受体以及基准取值等存在较大的差异.本文在综述基于健康风险的土壤环境基准科学内涵与基本特征的基础上,对不同国家场地土壤环境基准的名称、功能及基准值的差异进行了比较研究,从土地利用类型划分、暴露情景和暴露途径设定、致癌物可接受风险水平选择以及人体暴露参数确定等4个方面,对不同国家制定场地土壤环境基准的关键技术和影响因素进行了总结分析,探讨了借鉴国外经验考虑区域差异制定我国土壤环境基准的对策与方略,并指出了当前我国制定场地土壤环境基准和标准面临的困难和挑战.  相似文献   
58.
为了探讨芽孢杆菌B1分泌的胞外溶藻活性物质对球形棕囊藻的溶藻特性和藻毒素物质脂肪酸的影响,比较了模拟自然水体中叶绿素a、p H、溶解氧DO、高锰酸盐指数和营养元素N、P浓度在溶藻前后的变化,并利用GC-MS检测了球形棕囊藻脂肪酸的成分和含量.用体积比1∶100的芽孢杆菌B1胞外活性物质处理模拟水体14 d,发现水体中叶绿素a、p H值和高锰酸盐指数随处理时间的增加而降低,DO和N、P浓度随处理时间的增加而增加.在第14 d时,处理组水体中p H值由8.50降低到7.51,叶绿素a降低82.3%(P0.05),DO增加29.5%(P0.05),高锰酸盐指数降低55.2%(P0.01).NH+4-N、NO-2-N、NO-3-N和PO3-4-P浓度分别增加了0.46、1.50、6.24和1.30倍.投加活性物质处理14 d后,球形棕囊藻藻毒素中的主要3种脂肪酸C18:2、C16:0和C18:1分别降低了100%、97.7%和85.4%(P0.01),总脂肪酸含量降低83.4%(P0.01).结果表明,芽孢杆菌B1胞外溶藻活性物质在模拟自然水体中能有效抑制球形棕囊藻的生长,并降低藻毒素脂肪酸的含量.研究结果为芽孢杆菌B1胞外活性物质的生态安全性应用提供理论基础.  相似文献   
59.
对全国12个省份72个典型村镇进行了生活垃圾采样调查,系统分析了我国农村生活垃圾的基本理化特性、养分含量与重金属特征及其农用潜力。研究表明:我国典型村镇生活垃圾含水率为(53.68±8.84)%,p H为7.11±0.56,有机质含量为(49.04±10.49)%,C/N约为43∶1,C/P约为144∶1。除C/N略高外,其余特性均适合进行堆肥化处置。我国典型村镇生活垃圾中重金属As、Hg、Pb、Cd、Cr,Cu和Zn含量分别为(7.645±8.729),(0.737±0.480),(21.798±17.606),(3.356±11.012),(108.632±84.011),(36.834±10.905),(80.093±42.237)mg/kg。与国内相关标准相比,只有Hg、Cd超标,最大超标率分别为29.17%、43.75%;与欧美相关标准相比,仅有Cd、Cr超标,最大超标率分别为25.69%、37.50%。  相似文献   
60.
为了揭示喷播基质中土壤菌对植物的影响机制、筛选出优势土壤菌配置模式,以适应性极强的紫穗槐(Amorpha fruticosa)为试验材料,将筛选鉴定的3种土壤菌--细菌苏云金杆菌(nl11,专利号nl-11)、真菌卵形孢球托霉(nl15,专利号nl-15)和放线菌嗜热一氧化碳链霉菌(nl1,专利号nl-1),配制成无菌(CK)、单菌(nl11、nl15、nl1)、两种菌混合(nl11+nl15、nl11+nl1、nl15+nl1)和3种菌混合(nl11+nl15+nl1),共8种配置方式等比例混入基质中进行温室盆栽试验,分别观测其对紫穗槐幼苗的光合色素含量、光合特性以及叶绿素荧光参数的影响.结果表明:与无菌苗相比,其他7种处理的紫穗槐幼苗w(Chlb)显著高于对照,除nl15+nl1和nl15+nl1+nl11外,其他处理的幼苗w(Chla)和w(Chl)均显著高于对照;除nl15+nl1处理外,其他处理的幼苗w(Car)显著高于对照.相比对照,nl11+nl15处理的幼苗净光合速率(Pn)显著提高123.5%,nl11处理的幼苗净光合速率(Pn)、水分利用效率(WUE)和光系统Ⅱ(PSⅡ)最大光化学量子产量(Fv/Fm)显著提高148.72%、156.21%和5.74%,nl15处理的幼苗PSⅡ实际光化学效率(ΦPSⅡ)显著提高,nl11+nl15+nl1处理的幼苗净光合速率、光化学淬灭系数(qP)与电子传递速率(ETR)显著提高173.59%、12.58%和5.13%,nl1处理的紫穗槐幼苗初始荧光(Fo)与最大荧光(Fm)显著低于无菌幼苗10.05%和19.86%.通过土壤菌施用,显著促进了紫穗槐幼苗的光合色素的合成,提高气孔导度、水分利用效率、蒸腾速率和净光合速率,降低气孔限制值,增强了植株对有效光的利用,并且防止过剩光能对光合机构的进一步伤害,提高抗逆性和适应性,并以nl11、nl11+nl15和nl11+nl15+nl1这3种配置模式效果最为显著.   相似文献   
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