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141.
通过两套大气细颗粒物(PM2.5)水溶性离子在线监测仪与蜂巢式固气分离器膜采样系统作对比,评估了在线监测仪器对主要水溶性组分SO24-、NO3-和NH4+的测定结果.美国URG公司生产的在线连续监测分析系统(AIM URG-9000B)对NH4+和NO3-的监测结果较好,但对SO24-的测定结果存在明显高估,其原因是AIM的平板溶蚀器系统无法完全去除大气中高浓度SO2,从而对SO24-的测定结果有干扰.为解决这一问题,进行了一系列实验,结果表明采用两个溶蚀器串联并用5 mmol.L-1H2O2+5 mmol.L-1NaOH混合溶液作吸收液时,高浓度的SO2(甚至达到260μg.m-3)可以被完全吸收而对SO24-的测定结果不产生影响.由荷兰能源研究所(ECN)、Metrohm和Applikon共同研制的在线气体组分及气溶胶监测系统(MARGA,ADI2080)对NH4+和SO24-的监测结果较好,可以满足实验要求;但NO3-的测定结果偏高,其准确性需作进一步评估.新型监测仪器在不同大气环境中投入使用前需进行对比测试,以确定其准确性和精确性. 相似文献
142.
Liu P.Wang Y.Su K. 《应用与环境生物学报》2018,(3):557-562
In order to solve the problem of poor treatment of phosphorus in membrane bioreactor (MBR) with long sludge retention time (SRT), a ferric salt was added to enhance phosphorus removal; FeCl36H2O (Fe/P = 2.0) was added to the reactor. The removal efficiency of nitrogen, organic matters, and phosphorus in the MBR was investigated systematically. Moreover, this study focused on the membrane performance, the change of active sludge flora, and the effect of adding a ferric salt on membrane fouling before and after the addition. It was seen that adding the ferric salt could not affect the removal of COD and NH4 +-N and the removal rate of COD and NH4 +-N reached over 90%. However, the average removal rate of phosphorus was 52%, while the removal rate increased by nearly 40% after adding the ferric salt. The effects of adding ferric salts on the dominant bacteria and biological phosphorus removal of activated sludge were further studied. The results showed that the addition of ferric salt (Fe/P = 2.0) decreased the diversity of active sludge flora and relative abundance of some phosphorusaccumulating organisms and had a negative effect on biological phosphorus removal. The analysis of transmembrane pressure difference (TMP) recording revealed that the concentration of iron salts did not exacerbate membrane fouling. The results showed that the concentration of iron salts entering the membrane bioreactor would reduce the relative abundance and phosphorus removal efficiency of the activated sludge in the system to a certain extent, but it had no obvious effect on membrane fouling. It allowed the effluent to attain acceptable standards, especially with respect to phosphorus removal efficiency. © 2018 Science Press. All rights reserved. 相似文献
143.
David A. Moore 《Journal of Loss Prevention in the Process Industries》2013,26(6):1685-1689
The American National Standards Institute (ANSI)/American Petroleum Institute (API) Standard 780 Security Risk Assessment (SRA) Methodology was published in June 2013 as a U. S. standard for security risk assessments on petroleum and petrochemical facilities. The standard represents a model standard for evaluating all security risks of petroleum and petrochemical infrastructure and operations and assists industries in more thoroughly and consistently conducting SRAs. The 2013 Standard is an update from the previous API/NPRA SRA Methodology (2004) and focuses on expanding functional utility without changing the basic methodology.The methodology can be applied to a wide range of assets even beyond the typical operating facilities of the industry. This includes refining and petrochemical manufacturing operations, pipelines, and transportation operations including truck, marine, and rail, as well as worker and executive security, housing compounds, and remote operational sites. The new standard describes the most efficient and thorough approach for assessing security risks widely applicable to the types of facilities operated by the industry and the security issues they face. It is voluntary but has been adopted by the Kingdom of Saudi Arabia Ministry of Interior High Commission for Industrial Security as the mandatory security risk assessment methodology for industrial facilities.This paper examines the key elements of the ANSI/API SRA process and discusses how forward thinking organizations may use risk-based performance metrics to systematically analyze facility security postures and identify appropriately scaled and fiscally responsible countermeasures based on current and projected threats. The AcuTech Consulting Group developed the methodology under contract to the API, and the author was the project manager for the project. 相似文献
144.
随着人们对水环境污染严重性的高度关注,人们越来越重视良好吸附材料的开发。活性炭是一种最有效的吸附剂,拥有较大比表面积,但再生过程中有大量的损失,因此人们开始开发新的可循环使用的无机吸附材料。本文介绍了三种介孔硅吸附材料的合成方法,以及介孔硅吸附材料的化学改性应用,并且提出对吸附材料应用前景的建议。 相似文献
145.
146.
炼焦过程排放挥发性有机物的排放特征和组成分布研究 总被引:1,自引:0,他引:1
为控制炼焦排放以及为预防城市大气污染提供可靠的污染源数据支持,利用不锈钢采样罐和全自动预浓缩/GC/MS系统,研究了58-Ⅱ型和JN43-80型焦炉在装煤时刻和炼焦过程(包括装煤时刻)中挥发有机物(VOCs)的排放特征及其组成分布,分析了焦化行业排放VOCs的反应活性。研究发现,在装煤时刻和炼焦过程中,58-Ⅱ型焦炉产生的总挥发性有机物(TVOCs)浓度分别为7022μg/m~3和6266μg/m~3;JN43-80型焦炉产生的TVOCs浓度分别为4185μg/m~3和3298μg/m~3。装煤时刻产生的TVOCs浓度明显高于炼焦过程产生的。炼焦过程无组织排放的VOCs包含烯烃、烷烃、芳香烃、卤代烃以及少量的醛和酮,其中乙烯、乙烷、丙烯、苯、甲苯等为主要成分。这些产生的VOCs反应活性各不相同,活性最大的是烯烃类物质,其活性占TVOCs反应活性比重为(86.2±2.1)%;其次是芳香烃类物质,其活性比重为(9.2±3.1)%;反应活性最大的5个物种分别是丙烯、乙烯、1,3-丁二烯、1-丁烯以及苯乙烯。 相似文献
147.
化工储罐爆炸后将产生大量碎片,这些抛射碎片一旦击中相邻罐体容易引发多米诺效应。碎片的抛射方位和抛射距离具有很大的随机性,已有研究多采用概率模型来描述碎片抛射的各分过程。通过总结和发展已有的分过程模型,建立了求取多米诺效应的综合概率模型,并基于蒙特卡罗算法编制了模拟软件,可对化工储罐多米诺效应的发生概率进行预测计算。选取若干常用化工球罐为相邻目标储罐进行实例分析,计算结果表明储罐间距和体积是影响多米诺效应发生概率的两个重要影响因素:随着距离的增大,多米诺效应发生概率不断减小;目标储罐体积越大,多米诺效应发生概率将越大。其中,爆炸碎片对目标储罐的击中概率受上述因素的影响程度更大。该文工作对化工储罐区的安全评价具有一定的参考价值。 相似文献
148.
149.
伊洛河流域河水来源及水化学组成控制因素 总被引:15,自引:13,他引:2
伊洛河是黄河中游南岸重要支流,由伊河和洛河在洛阳偃师汇合而成.流域上游矿产资源开采活动较多,下游城镇密集,工农业活动分布广泛.为探究不同类型人为活动对伊洛河流域河水水化学组成的影响,分别在丰水期(8月)和平水期(12月)采集伊洛河流域干流和支流河水样品,借助水体氢氧同位素组成和阴阳离子组成的时空分布特征,阐明水体来源以及水化学组成控制因素,说明人为活动的影响途径和方式.结果表明:①洛河干流河水丰水期和平水期δD和δ~(18)O均值分别为-56‰和-7.9‰以及-55‰和-8.1‰,伊河干流河水丰水期和平水期δD和δ~(18)O均值分别为-49‰和-6.9‰以及-53‰和-7.8‰,丰水期和平水期河水主要接受当地大气降水补给;②洛河及伊河干流河水水化学类型均为HCO_3-SO_4-Ca-Mg型,丰水期干流河水Ca~(2+)和HCO~-_3当量浓度占比低于平水期,而丰水期SO_4~(2-)当量浓度占比则高于平水期,显示丰水期较多硫酸盐输入;③碳酸和硫酸参与流域内碳酸盐岩和硅酸盐岩风化过程,洛河流域碳酸盐岩风化较明显,伊河流域硅酸盐岩风化较明显;④伊洛河流域人为输入影响表现在上游河水水化学组成受到金属矿产采选活动影响,下游河水水化学组成受工业废水和城镇生活污水的影响;⑤伊洛河流域上游和下游两种不同类型人为活动是河水硫酸盐硫同位素组成空间上变化的重要原因,上游河水硫酸盐硫同位素组成偏负,证实来自硫化物矿物氧化过程产生的硫酸盐贡献较大,进而间接证实硫酸参与岩石化学风化过程.下游河水硫酸盐硫同位素值偏正,与工业废水和城镇生活污水有关. 相似文献
150.
Chunxu Wu Lanfeng Li Hao Zhou Jing Ai Hongtao Zhang Jialin Tao Dongsheng Wang Weijun Zhang 《环境科学学报(英文版)》2021,33(2):340-352
This study aimed to explore the adsorption performance of sludge-based activated carbon (SBC) towards dissolved organic matters (DOMs) removal from sewage, and investigated the modification effect of different types of chemicals on the structure of synthesized SBC. Waste activated sludge (WAS) was used as a carbon source, and HCl, HNO3, and NaOH were used as different types of chemicals to modify the SBC. With the aid of chemical activation, the modified SBC showed higher adsorption performances on DOMs removal with maximum adsorption of 29.05 mg/g and second-order constant (k) of 0.1367 (L/mol/sec) due to the surface elution of ash and minerals by chemicals. The surface elemental composition of MSBC suggested that the content of C-C and C-O functional groups on the surface of modified sludge-based activated carbon (MSBC) played an important role on the adsorption capacities of MSBC towards DOMs removal in sewage. Additionally, the residual molecular weight of DOMs in sewage was investigated using a 3-dimension fluorescence excitation-emission matrix (3D-EEM) and high-performance size exclusion chromatography (HP-SEC). Results showed that the chemical modification significantly improved the adsorption capacity of MSBC on humic acids (HA) and aromatic proteins (APN), and both of NaOH-MSBC and HCl-MSBC were effective for a wide range of different AMW DOMs removal from sewage, while the HNO3-MSBC exhibited poorly on AMW organics of 2,617 Da and 409 Da due to the reducing content of macropore. In brief, this study provides reference values for the impact of the chemicals of the activation stage before the SBCs application. 相似文献