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1.
综述了工业废水毒性的化学评估方法、生物毒性评估方法、毒性鉴定评估(TIE)程序以及效应引导的毒物鉴别分析(EDA)中污染物提取、分离、毒性测试、致毒物质识别等技术。指出,工业废水毒害风险评估方法正逐渐向化学分析与生物毒性测试相结合的关键致毒物质鉴别方法转变,便捷、高通量是致毒物质鉴别技术的发展方向,质谱技术及替代定性监测技术的发展将提供更为准确、便捷的致毒物质鉴别方法,为工业废水潜在风险防控提供依据。  相似文献   

2.
烟气排放连续监测技术的发展及应用前景   总被引:1,自引:0,他引:1  
回顾了烟气排放连续监测系统及其分析技术的发展与应用历程,对直接测量法、抽取测量法和遥感测量法等3种主要连续监测技术的应用情况、技术特点进行了介绍和对比分析。指出烟气连续监测技术有由抽取测量法向直接测量法发展的趋势,进而向遥感测量法发展;分析技术则以光学技术为主导,向全谱分析和线状光谱技术方向发展;测量范围逐渐向低浓度发展,追求更高的准确度和精密度;监测因子更多,除常规烟尘、SO2、NOx外,CO2、H2S、HC l、HF、Hg等物质也将逐步纳入监测范围;技术可靠、系统简洁、操作简便是连续监测技术的发展方向,具有广阔的应用前景。  相似文献   

3.
传统环境污染物生物化学分析技术通常依赖于实验室设备和专业的操作技术人员,限制了此类技术在环境应急等现场分析中的应用。以手机内置光学功能模块作为信号接收器的智能手机光学传感器,通过分析光信号可实现对目标物的定性或定量分析,其开发和应用是当前环境污染物现场快速生物化学分析检测领域的研究热点。综述了比色、荧光和化学发光3种智能手机环境监测光学传感器的传感原理、实现路径、监测指标、研究现状以及所面临的挑战,探讨了其在环境监测领域的典型应用,展望了未来的发展前景,以期为智能手机光学传感技术在环境监测领域的进一步发展提供参考。  相似文献   

4.
姜娜 《中国环境监测》2014,30(2):118-124
电感耦合等离子体质谱技术(ICP-MS)是目前发展最快的痕量元素分析测试技术之一。由于该技术提供了极低的检出限、极宽的动态线性范围,干扰少、分析精密度高,可进行多元素同时快速分析,可与多种分离技术及样品前处理方法和进样方法相结合等优点,得到了迅速的发展。介绍了ICP-MS的基本原理及仪器构造、与其他分析测试技术的比较及发展趋势,并着重介绍了其在环境监测和环境科学研究领域的应用。  相似文献   

5.
在环境监测中,生物监测已扩展到利用生物(动、植物)对环境进行监测。在生物监测中应用和发展质量保证尤为重要。本文就生物监测的质量保证发展概况、标准物质、回归效应控制图、生物样品分析技术的进步等问题进行了阐述。  相似文献   

6.
随着质谱质量精度的不断提高和物质数据库的扩大,高通量非靶向筛查技术快速发展,为组成复杂的环境介质中污染物的识别分析提供了有效手段。综述了环境分析中非靶向筛查技术[气相色谱-高分辩率质谱法(GC-HRMS)和液相色谱-高分辨率质谱法(LC-HRMS)]的研究进展,包括样品的前处理方法、非靶向分析平台、数据分析及存在的问题。简述了非靶向筛查技术在分析环境水样、沉积物样品及土壤样品中的应用,并提出该技术存在的问题和应用前景。  相似文献   

7.
阐述了水体中常见的异味、异味来源及致嗅物质的检测分析技术,详细介绍了各种检测技术的原理、适用范围及优缺点,指出我国在致嗅物质检测方面存在的不足及今后努力的方向。  相似文献   

8.
介绍了水体异味现象及异味物质组分,综述了闭环捕集、吹扫捕集、液液萃取、固相萃取、固相微萃取、搅拌棒吸附萃取等样品前处理技术。指出气相色谱/质谱联用具有很强的分离和定性定量能力,与上述前处理技术联用是目前水体异味物质分析应用最广泛的方法。  相似文献   

9.
<正>全国各地邮局均可订阅,邮发代号24-138《化学分析计量》是中国兵器工业集团第五三研究所(国防科技工业应用化学一级计量站)主办的全国性分析测试、化学计量专业技术刊物。主要报道分析测试、化学计量行业的技术、学术论文;标准物质的研制与应用;分析、计量仪器的研制、开发、检定、维修经验;相关专业的法规、政策、标准,管理经验,技术发展动态,综述和技术经济信息等。主要栏目有分  相似文献   

10.
<正>全国各地邮局均可订阅,邮发代号24-138《化学分析计量》是中国兵器工业集团第五三研究所(国防科技工业应用化学一级计量站)主办的全国性分析测试、化学计量专业技术刊物。主要报道分析测试、化学计量行业的技术、学术论文;标准物质的研制与应用;分析、计量仪器的研制、开发、检定、维修经验;相关专业的法规、政策、标准,管理经验,技术发展动态,综述和技术经济信息等。主要栏目有分  相似文献   

11.
Laser-induced breakdown spectroscopy (LIBS) was applied for the detection of toxic metals in oil spill contaminated soil (OSCS). The OSCS samples were collected from Khursania Saudi Arabia along the coast of Persian Gulf exposed to oil spills in 1991 Gulf war. Environmentally important elements like Aluminum Magnesium, Calcium, Chromium, Titanium, Strontium, Iron, Barium, Sodium, potassium, Zirconium and Vanadium from the contaminated soil have been detected. Optimal experimental conditions for analysis were investigated. The LIBS system was calibrated using standard samples containing these trace elements. The results obtained using Laser-Induced Breakdown Spectroscopy (LIBS) were compared with the results obtained using Inductively Coupled Plasma Emission Spectroscopy (ICP). The concentrations of some elements (Ba and Cr) were found higher than permissible safe limits. Health risks associated with exposure to such toxic elements are also discussed.  相似文献   

12.
Water quality monitoring is a critical part of environmental management and protection, and to be able to qualitatively and quantitatively determine contamination and impurity levels in water is especially important. Compared to the currently available water quality monitoring methods and techniques, laser-induced breakdown spectroscopy (LIBS) has several advantages, including no need for sample pre-preparation, fast and easy operation, and chemical free during the process. Therefore, it is of great importance to understand the fundamentals of aqueous LIBS analysis and effectively apply this technique to environmental monitoring. This article reviews the research conducted on LIBS analysis for liquid samples, and the article content includes LIBS theory, history and applications, quantitative analysis of metallic species in liquids, LIBS signal enhancement methods and data processing, characteristics of plasma generated by laser in water, and the factors affecting accuracy of analysis results. Although there have been many research works focusing on aqueous LIBS analysis, detection limit and stability of this technique still need to be improved to satisfy the requirements of environmental monitoring standard. In addition, determination of nonmetallic species in liquid by LIBS is equally important and needs immediate attention from the community. This comprehensive review will assist the readers to better understand the aqueous LIBS technique and help to identify current research needs for environmental monitoring of water quality.  相似文献   

13.
Laser-induced breakdown spectroscopy (LIBS) has been applied for the determination of nutrients in the green house soil samples. We determined appropriate spectral signatures of vital nutrients and calibrated the method to measure the nutrients in a naturally fertilized plot, cultivated with tomato and cucumber plants. From the calibration curves we predicted the concentrations of important nutrients such as Ca, K, P, Mg, Fe, S, Ni and Ba in the soil. Our measurements proved that the LIBS method rapidly and efficiently measures soil nutrients with excellent detection limits of 12, 9, 7, 9, 7, 10, 8 and 12~mg/kg for Ca, K, P, Mg, Fe, S, Ni and Ba respectively with a precision of 2%, The unique features of LIBS for rapid sample analysis demonstrated by this study suggests that this method offers promise for precision measurements of soil nutrients as compared to conventional methods in short span of time.  相似文献   

14.
Industrial waste is one of the main causes of environmental pollution. Laser-induced breakdown spectroscopy (LIBS) was applied to detect the toxic metals in the sludge of industrial waste water. Sludge on filter paper was obtained after filtering the collected waste water samples from different sections of a water treatment plant situated in an industrial area of Kanpur City. The LIBS spectra of the sludge samples were recorded in the spectral range of 200 to 500 nm by focusing the laser light on sludge. Calibration-free laser-induced breakdown spectroscopy (CF-LIBS) technique was used for the quantitative measurement of toxic elements such as Cr and Pb present in the sample. We also used the traditional calibration curve approach to quantify these elements. The results obtained from CF-LIBS are in good agreement with the results from the calibration curve approach. Thus, our results demonstrate that CF-LIBS is an appropriate technique for quantitative analysis where reference/standard samples are not available to make the calibration curve. The results of the present experiment are alarming to the people living nearby areas of industrial activities, as the concentrations of toxic elements are quite high compared to the admissible limits of these substances.  相似文献   

15.
Rapid measurement of heavy metals in soil is an important factor in modeling the effect of industrial pollution on agricultural soil. Conventional methods of heavy metal analysis are relatively slow in terms of measurement/analysis time and sample preparation time with the requirement of skilled manpower. Our results highlight the quantitative analysis of toxic metal lead (Pb), for the first time, in an Indian agricultural soil, in the vicinity of brick-kiln area, Phaphamau, near Allahabad, India, by using a novel technique named as Laser-induced breakdown spectroscopy (LIBS). LIBS spectra of soil has been recorded in the wavelength range from ultraviolet (UV) to infrared region (200-1,100 nm). The suitability of Pb lines for drawing the calibration curve is checked and realized, for the first time, that 220.3 nm, which is observed in the UV region of LIBS spectra, is completely interference free and best suited for the quantification of trace amount of Pb in soil instead of any other Pb lines, because it has best linear regression coefficient and smallest standard deviation of the background signal. In the present work the detection limit for Pb in soil is found to be 45 ppm. Based on the present work the concentration of Pb in agricultural soil of brick-kiln area in Phaphamau is found to be congruent with 570 ppm, which is more than the regulatory standards imposed by US Environmental Protection Agency (400 ppm) for the presence of lead in soil, therefore, it is of great concern to us.  相似文献   

16.
Laser Induced Breakdown Spectroscopy (LIBS) is a fast and multi-elemental analytical technique particularly suitable for the qualitative and quantitative analysis of heavy metals in solid samples, including environmental ones. Although LIBS is often recognised in the literature as a well-established analytical technique, results about quantitative analysis of elements in chemically complex matrices such as soils are quite contrasting. In this work, soil samples of various origins have been analyzed by LIBS and data compared to those obtained by Inductively Coupled Plasma-Optical Emission Spectroscopy (ICP-OES). The emission intensities of one selected line for each of the five analytes (i.e., Cr, Cu, Pb, V, and Zn) were normalized to the background signal, and plotted as a function of the concentration values previously determined by ICP-OES. Data showed a good linearity for all calibration lines drawn, and the correlation between ICP-OES and LIBS was confirmed by the satisfactory agreement obtained between the corresponding values. Consequently, LIBS method can be used at least for metal monitoring in soils. In this respect, a simple method for the estimation of the soil pollution degree by heavy metals, based on the determination of an anthropogenic index, was proposed and determined for Cr and Zn.  相似文献   

17.
分析仪器联用技术的发展动向   总被引:1,自引:0,他引:1  
赵宏 《干旱环境监测》2006,20(3):158-163
分析仪器联用技术已在环境样品分析中得到应用,并有广阔的发展前景。本文介绍了色谱-色谱、色谱-原子光谱、离子色谱联用技术、色谱-质谱、色谱-傅立叶变换红外光谱、色谱-核磁共振波谱(NMR)联用技术在分析环境样品方面的应用。  相似文献   

18.
采用场发射带能谱扫描电镜(FESEM/EDS)法分析北京怀柔地区PM10与秸秆燃烧排放颗粒的形貌特征和成分差异。结果显示:秸秆燃烧后排放颗粒物多为大粒径颗粒,成分上都含S、Cl和K元素。含有生物质燃烧标志元素K的PM10颗粒物多为含Si、Al和Na元素的燃煤飞灰和矿物颗粒,与秸秆燃烧排放颗粒组成化学元素差异明显。据此推断,北京区域PM10受秸秆燃烧排放影响相对较弱,化石燃料燃烧来源影响仍然显著。  相似文献   

19.
土壤重金属快速监测技术研究与应用进展   总被引:3,自引:1,他引:2  
土壤重金属污染已经日益成为社会的主要环境污染问题之一,土壤重金属快速监测技术对于土壤重金属污染的快速有效筛查与监控具有重要意义。介绍了近年来国内外土壤重金属快速监测方法,并阐述了相关土壤重金属快速监测仪器的研究现状。在土壤重金属快速监测领域,X射线荧光光谱技术优势明显,激光诱导击穿光谱技术亦发展迅速,基于免疫学、酶抑制原理的快速监测技术正处于发展阶段。随着快速监测技术理论和方法的不断完善,土壤重金属快速监测仪器朝着高精度、小型化、智能化的方向发展,在区域性土壤重金属含量评估方面的应用将逐步拓展。  相似文献   

20.
“双碳”目标下,温室气体在线长期稳定监测技术是全面掌握温室气体排放及其环境、气候效应,并预测未来变化趋势的重要保障。为了实时在线监测工业生产现场等环境温室气体浓度及其变化趋势,及时采取相应措施,在分析光声光谱信号产生机理及多组分气体混合监测原理的基础上,根据温室气体的主要成分,分析其吸收光谱特性,基于光声光谱的多组分温室气体的定性和定量监测技术,搭建温室气体光声光谱在线监测实验平台,分析监测器内部噪声和环境温度、湿度等外部影响因素,并通过现场测试,分析试验数据,应用吸附法降低内外部因素的影响。结果表明,对称安装传声器和非共振式光声腔能有效削弱外部噪声对测试结果的影响;空气净化器能降低空气中水蒸气和其他气体对测试结果的影响;低、高浓度混合气体监测结果偏差均小于0.5,与GC测试结果偏差小于10%。应用光声光谱技术的环境温室气体监测技术监测范围宽,选择性好,且监测精度达10-6,适用于环境温室气体浓度在线监测。  相似文献   

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