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41.
The authors have recently undertaken a major review of LNG consequence modeling, compiling a wide range of historical information with more recent experiments and modeling approaches in a book entitled “LNG Risk-Based Safety: Modeling and Consequence Analysis”. All the main consequence routes were reviewed – discharge, evaporation, pool and jet fire, vapor cloud explosions, rollover, and Rapid Phase Transitions (RPT’s). In the book, experimental data bases are assembled for tests on pool spread and evaporation, burn rates, dispersion, fire and radiation and effects on personnel and structures. The current paper presents selected highlights of interest: lessons learned from historical development and experience, comparison of predictions by various models, varying mechanisms for LNG spread of water, a modeling protocol to enable acceptance of newer models, and unresolved technical issues such as cascading failures, fire engulfment of a carrier, the circumstances for a possible LNG BLEVE, and accelerated evaporation by LNG penetration into water.  相似文献   
42.
石化废水深度处理用臭氧催化氧化体系的研究*   总被引:1,自引:0,他引:1  
文章就臭氧催化氧化体系在石化废水处理中的作用进行了深入研究,对催化剂载体、催化剂配伍体系以及臭氧的投加方式进行了优化筛选。根据实验,多元催化掺杂体系较一元催化体系氧化效果好,CODCr的去除率可由一元催化时的20%提高到多元催化时的33%;在臭氧的投加方式上,分段投加要优于单级投加,臭氧投加分配比例为6∶3∶1时,CODCr的去除率可由单一投加时的9%提高到分级投加时的19%。  相似文献   
43.
结合工程实际,介绍了太阳能产业用多晶硅片切割过程中产生的割液废液的处理工艺及回收工艺,并分析了它的投资成本和经济效益。  相似文献   
44.
Material recovery processes are presented as the optimum option for recycling plastic wastes as a means of recovering hydrocarbon resources. There exist a large variety of automated material recovery processes for recycling of such wastes but each with significant limitations. Of these, the separation based on differences in densities is advocated as the optimum process either for producing recycled products or preparing wastes for subsequent recovery processing.Density separation processes based on cyclone type density media separation (DMS) is presented as an important, potential method for increasing plastics recycling process capacities. It is demonstrated to have the capacity to separate a significantly larger range of particle sizes than those presently processed industrially. The mathematical relationship for the prediction of quality of typical LARCODEMS type density media separations by particle size and density as expressed by the Ecart Probable is presented.A proposed device configuration is presented for density media separation to optimize the recovery and purity of both density fractions produced. It is also suggested that to be economically viable, a large scale of operation is required for industrial plastics recycling operations recovering and producing a number of different plastics with a purity to be used as a substitute for virgin material.  相似文献   
45.
生态沟渠和生物滞留池因其良好的径流污染控制能力和生态效益,日益受到广泛关注和应用,但单一的生态沟渠或生物滞留池在农村径流污染控制中常存在氮磷去除效果不稳定和基质易堵塞等问题.将两者串联构建组合系统,利用生态沟渠预处理去除部分污染物,可降低生物滞留池污染负荷和减轻基质堵塞;同时在生物滞留池中设置淹没区并添加天然载体碳源提升系统脱氮效果.研究了载体碳源、降雨强度和干湿交替等条件对生态沟渠-生物滞留池组合系统控制农村径流污染的影响.结果表明,投加稻草和木屑两种天然载体碳源分别将生物滞留池段的TN去除率提升19.9%和20.4%.模拟降雨强度从小雨增至大雨时,外加碳源组合系统COD、 NH+4-N、 TN和TP去除率平均下降17.0%、 16.8%、 20.4%和17.2%,其中生态沟渠段对4种污染物的去除贡献平均降低16.3%、 13.0%、 24.2%和22.1%.干湿交替运行可提高系统的污染物去除效果,相较连续进水,干旱3周后木屑组TN平均去除率提升12.3%.微生物群落分析结果显示,木屑组和稻草组生物滞留池样品的α多样性高于对照组;投加载体碳...  相似文献   
46.
本文利用低温等离子体技术,使用介质阻挡放电反应器气化杨木屑、纤维素、木聚糖和木质素,用控制变量法研究了频率、载气对反应系统产气能力的影响以及生物质化学组成的气化特性.结果表明,频率越小、载气电离能越低,气化率越高,杨木的最佳气化率为64.11%;木聚糖和纤维素气化产物相似,较纤维素和木质素产气率更高并且能够产生更多CO;木质素主要生成气化炭.同时,利用SEM、BET对原料及气化炭进行了表征研究得出碱金属在高温下发生结晶;木聚糖在气化过程中会发生熔融;等离子体的高功率以及更多的氧化性物质能够使气化炭比表面积显著增加,达到150.71m2/g.  相似文献   
47.
骆苑蓉  钱义谦  齐雅楠 《环境科学》2022,43(11):4869-4875
现代工业的发展使得塑料制品的使用量急剧增加,由此产生的大量废旧塑料垃圾在环境中裂解形成粒径更小的微塑料(<5 mm).由于微塑料结构稳定,分布广泛且生物可利用性低,在环境中长期存在,已经逐渐成为对海洋生态和环境造成巨大影响的重要污染物.近年的研究表明,自然环境中存在一些能降解这些难降解微塑料的微生物,微生物降解无二次污染且对环境扰动少,在微塑料的去除中具有很好地应用潜力,但亦有一些局限性.综述了环境中数量最多的聚乙烯微塑料的微生物降解研究现状,着重探讨了降解效果和量化方法.基于微塑料生物分解效率普遍较低的现状,开展进一步的研究还非常有必要.  相似文献   
48.
Different bacterial strains able to attack polyoxyethylene-type nonionic surfactants were isolated by enrichment procedure from the surface waters of the Arno River. Alkylphenol polyethoxylates and alkyl polyethoxylates, as well as polyethylene glycols, were degraded and assimilated by bacterial strains in axenic cultures. Degradative routes of polyethyleneoxide chains were investigated by matching each bacterial isolate with several types of nonionic surfactants and polyethers and by the identification of their degradation products isolated during aerobic digestion experiments. In accordance with previous reports, the first attack led to the shortening of the poly(oxyethylene) chains of the nonionic surfactants. It was found that the strains able to degrade PEG segments of nonionic surfactants possess enzymatic systems unable to degrade free PEGs, whereas those degrading the latter substrates cannot degrade PEG segments coupled to hydrophobic moieties.  相似文献   
49.
为了研究聚乙烯(PE)管道热熔孔洞缺陷与寿命之间的关系,基于Ansys软件对埋地状态下的含有热熔孔洞缺陷的PE管道进行应力分析,得到了含热熔孔洞缺陷的PE管道在不同内压下的最大Mises应力、环向应力和径向应力的变化数据;依据应力分析数据,使用Matlab编写程序,根据Suleiman双曲本构模型对PE管道进行了寿命预测。研究结果表明:含有热熔孔洞缺陷的PE管道,其最大应力随管道内压的增大而增大,寿命随着管道内压和缺陷体积的增大而减少,含缺陷管道寿命和内压关系可使用双对数函数来进行描述;使用应力分析和寿命预测相结合的方法,可以得到不同缺陷的PE管道寿命-内压关系式。  相似文献   
50.
To reveal the effects of different inert gases on explosion characteristics during low density polyethylene (LDPE) dust explosion and optimize the explosion-proof process, eight N2 (CO2)/air mixed inerting conditions were experimentally studied. Typical inerting conditions with 12 L cylindrical explosive tank were used to study the characteristics on the flame propagation. The thermogravimetric analysis with related theories were used to further explain the mechanism and quantities in low density polyethylene (LDPE) dust explosion with different inert gases. The results showed that the reduction of O2 concentration could effectively delay the progress of flame growth process and weaken the effect of dust combustion reaction. The flame growth process of condition (N2/air (18% O2)) was 2.05 times slower than that of the non-inert condition. The explosion strength was obviously reduced, and the characteristic parameters such as explosion pressure and flame propagation speed were also affected by the decrease of O2 concentration. For LDPE powder, the smaller the median diameter, the greater the explosion intensity and the lower the limiting oxygen content (LOC). The LOC with CO2 was usually higher than that with N2 and the effect of CO2 was significantly better than N2 in inerting.  相似文献   
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