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31.
底泥中营养物质及其他污染物释放机理综述   总被引:8,自引:0,他引:8  
水体底泥(沉积物)污染,是世界范围内的一个重要环境问题.其污染物主要通过大气沉降、废水排放、水土流失、雨水淋溶与冲刷进入水体,最后沉积到底泥中并逐渐富集,使底泥受到严重污染.总结了底泥中氨氮、重金属的影响因素及释放机理,也指明了持久性有机污染物释放机理研究不足的现状,提出对其释放机理研究的重要性.  相似文献   
32.
低温液氮与泡沫混合液直接接触产生氮气泡沫是一种新型的掺混形式,利用液氮高汽化比的特点,搭建液氮泡沫可视化实验装置,进行氮气-水两相流及液氮泡沫流动特性的研究。结果表明,液氮相变产生大量氮气,其与泡沫液混合产生泡沫,温度有所回升,最终趋于泡沫混合液温度;管路沿程压降较小;液氮射流破碎及流动过程可分为6个区域:低温液氮区、向上循环翻滚区、滞留区、泡沫与泡沫混合液混合区、致密泡沫区、泡沫混合液区。流体向下游流动过程中持续发泡;为防止管路结冰,需合理控制泡沫混合液与液氮流量。  相似文献   
33.
Many release problems involve two-phase releases of hazardous materials of superheated liquids with high energy into the atmosphere. Such accidents are accompanied by violent phase transition and form catastrophic flashing jets. In this work, experimental and theoretical analyses were conducted to investigate dynamic characteristics of flashing jet morphology and their dependence on pressure-decay dynamics under different storage pressures, superheats, and nozzle diameters. Flashing jet morphology and angle throughout two-phase releases were captured by a high-speed camera, and the corresponding source pressure in the superheated liquid tank was measured simultaneously. Results show that three typical phases, expansion, stabilization, and decay, are characterized throughout two-phase release based on the evolution of flashing jet morphology. The jet initially expands gradually due to the enhancement of phase transition intensity, and then keeps stable when the intensity reaches its maximum, and terminally decays rapidly due to the depletion of superheated liquid. Phase transition intensity at the nozzle exit is mainly controlled by the pressure-decay dynamics. Bubbles nucleation inception sites gradually move upstream of the nozzle during the pressure decay process increasing the phase transition intensity. The increase of storage pressure, superheat and nozzle diameter promotes the mechanical and thermodynamic effects on the jet breakup. The significant increase of mechanical and thermodynamic effects effectively accelerates droplets evaporation and further affects flashing jet morphology.  相似文献   
34.
In recent years, significant progress has been made to ensure that process industries are among the safest workplaces in the world. However, with the increasing complexity of existing technologies and new problems brought about by emerging technologies, a strong need still exists to study the fundamentals of process safety and predict possible scenarios. This is attained by conducting the corresponding consequence modeling and risk assessments. As a result of the continuous advancement of Computational Fluid Dynamics (CFD) tools and exponentially increased computation capabilities along with better understandings of the underlying physics, CFD simulations have been applied widely in the areas of process safety and loss prevention to gain new insights, improve existing models, and assess new hazardous scenarios. In this review, 126 papers from 2010 to 2020 have been included in order to systematically categorize and summarize recent applications of CFD for fires, explosions, dispersions of flammable and toxic materials from accidental releases, incident investigations and reconstructions, and other areas of process safety. The advantages of CFD modeling are discussed and the future of CFD applications in this research area is outlined.  相似文献   
35.
Abstract

A sudden increase in serum creatinine after paraquat intoxication has been reported in several clinical studies. However, this dramatic change of creatinine may be possibly due to an interconversion of creatine-creatinine in relation to paraquat toxicity. In order to investigate the creatine-creatinine relationship, a liquid chromatography tandem mass spectrometry in combination with electrospray ionization was developed and validated for simultaneous determination of creatine and creatinine in the serum. The chromatographic separation was achieved on a Gemini® C6-Phenyl column with a gradient elution consisting of 0.1% formic acid in ultrapure water and methanol as the mobile phase. The method yielded suitable levels of specificity and selectivity, and calibration curves of creatine and creatinine in serum were linear over the concentration range of 0.5–200?µg mL?1. The limit of quantification of both compounds was 0.5?µg mL?1, and the method was accurate within the recovery range of 96.23–102.75%, indicating the robustness of the method. The method was successfully applied to toxicological samples from paraquat-intoxicated patients, and the concentrations of creatine and creatinine were quantified. High creatine concentrations in serum samples were observed which may lead to high serum creatinine despite normal kidney function as creatine is converted to creatinine in proportion to its concentration.  相似文献   
36.
植物根系分解是养分元素进入土壤的重要途径之一.为了解径级对根系分解过程中养分元素释放的潜在影响,以川西亚高山针叶林中的粗枝云杉(Picea asperata)为对象,采用原位分解试验,研究云杉3个径级(0-2 mm,2-5 mm和5-10 mm)根系分解过程中钾(K)、钠(Na)、钙(Ca)和镁(Mg)元素的浓度、残留...  相似文献   
37.
某市给水管网中铁释放现象影响因素与控制对策分析   总被引:8,自引:4,他引:4  
针对某市管网水中铁浓度的变化规律进行了系统的研究,确定了管垢向管网水中释放出的铁是管网水中铁超标的主要原因.研究中发现铸铁管和镀锌钢管中管垢的主要化学组分为铁.在给水管网中,管网水的溶解氧和余氯浓度低时,对应的管网水中铁释放现象严重,其原因是还原条件使管垢表面的致密钝化层被破坏,造成二价铁的大量释放.根据试验结果提出了给水管网中铁释放和“红水”现象的控制对策.  相似文献   
38.
水源更换对给水管网水质的影响研究   总被引:3,自引:1,他引:2  
王洋  牛璋彬  张晓健  陈超  何文杰  韩宏大 《环境科学》2007,28(10):2275-2279
为了研究水源更换对给水管网水质的影响,对北方A市水源更换过程中管网水质理化指标进行了监测分析.通过33 h的监测发现,由于水源水质不同造成管网水质化学不稳定,管网水水质部分指标发生了明显的下降,pH从7.54降到7.18,碱度从188 mg·L-1降到117  mg·L-1,氯化物从310  mg·L-1降到132  mg·L-1(以Cl-计),电导率从0.176 S·m-1降到0.087  S·m-1,钙离子和镁离子略有下降分别为15  mg·L-1和11  mg·L-1,这些都是由于滦河水质与黄河水质不同造成的;余氯在换水过程中发生了较复杂的变化,主要是由于水源更换造成耗氯量增加以及夜间用水量少造成管网水输配时间长引起的;pH、碱度、余氯的变化使得管网水中铁的含量增加,最高达到0.4  mg·L-1,超出饮用水标准规定的0.3  mg·L-1.通过分析水源更换过程中水质的变化,提出了控制管网水质稳定的方法主要有提高pH、增加碱度、投加缓蚀剂和严格保证出厂水及管网水水质指标特别是余氯等.  相似文献   
39.
湖泊沉积物中磷化氢的释放动力学初探   总被引:1,自引:0,他引:1  
采用柱状芯样模拟法,研究了太湖沉积物-水界面磷化氢的释放动力学.结果表明:当沉积物-水界面磷化氢的释放达到动态平衡时,水界面中磷化氢的浓度基本不再增大,大约在0.34 pg·l-1左右,此时磷化氢的释放通量约为0.008 pg·dm-2·h-1.根据室内模拟结果,太湖沉积物每年的磷化氢释放量在13.81-49.62 g之间,从而使磷化氢在湖水中的平均浓度达到0.16 pmol·l-1.  相似文献   
40.
研究了潮间带沉积物中的Hg向大气的释放,结果表明光照造成沉积物中的Hg快速向大气释放.光照8 h后,海泊河口和黄河口沉积物释放到大气中的Hg分别占58%和51%,其释放通量总体上遵循先升高后降低的规律,前者在13:00~14:00达到最大值2 830μg/(m2·h),后者在12:00~13:00达到最大值73μg/(m2·h);海泊河口沉积物Hg的释放通量与大气温度、沉积物温度和光照强度的相关系数分别为0.83(P<0.05)、0.98(P<0.01)和0.73(P<0.05),黄河口沉积物Hg的释放通量与大气温度、沉积物温度和光照强度的相关系数分别为0.73(P<0.05)、0.80(P<0.05)和0.81(P<0.01),温度、光照对沉积物Hg的释放有重要的影响.  相似文献   
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