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"Investigation of the relationship between the composition of wa

"Investigation of the relationship between the composition of wa」於資料集「EPQSummary_EnvironmentalMonitoringAndTesting」由單位「行政院環境保護署」的陳先生所提供,聯繫電話是02-2311-7722#2386,最近更新時間為:2023-07-30 01:01:45。 欄位Project Title的內容是"Investigation of the relationship between the composition of waste streams in flare stacks and their" , 欄位Project Subject的內容是"This project was to study the relationship between the composition of waste streams in flare stacks and their heating values for EPA establishing the standard method. In this study, ethylene (with low carbon number), xylene (with high carbon number), dichloro ethane (with halogen atom), hydrogen sulfide, and ammonia were selected for a serious of experiments, including individual composition experiments, mixed composition experiments, and moisture interference experiments. Based on our results, the ratios of measured values to their theoretical values were within 0.8~1.2. In addition, the real-time monitor system of heating value was established. The optimal measurement conditions, such as analytical parameters, scopes, and interference, were studied. The data obtained were qualified with the quality specification, including multi-point calibration, accuracy and precision tests.The restriction and interference of this stoichiometric combustion method were also studied. To compare this stoichiometric combustion system with the GC system, 12 field experiments were carried out in petrochemical plants. The ratios of the data obtained from stoichiometric combustion system to GC system were within 0.9-1.1 in 11 field experiments, except to one due to the unusual emission. Furthermore, the auto-sampling system for high heating value emission gases was developed, and the technology diffusion was completed. In summary, this project has established analytical method for heating value in flare stacks using stoichiometric combustion system for EPA to establish the standard operation procedure, and to audit the flare stacks in petrochemical plants. For unusual emissions, the emission gases will be sampled by the auto-sampling system, and further be analyzed to identify species. For the plants using GC system, this stoichiometric combustion system can be used to check the accuracy." , 欄位Project Year的內容是2014 , 欄位Organizer的內容是"Environmental Analysis Laboratory" , 欄位Executive Unit的內容是"工業技術研究院綠能所" , 欄位Reporting download URL的內容是https://epq.epa.gov.tw/project/filedownload.aspx?fid=72717 , 欄位Publish Date的內容是20150201

Project Title

"Investigation of the relationship between the composition of waste streams in flare stacks and their"

Project Subject

"This project was to study the relationship between the composition of waste streams in flare stacks and their heating values for EPA establishing the standard method. In this study, ethylene (with low carbon number), xylene (with high carbon number), dichloro ethane (with halogen atom), hydrogen sulfide, and ammonia were selected for a serious of experiments, including individual composition experiments, mixed composition experiments, and moisture interference experiments. Based on our results, the ratios of measured values to their theoretical values were within 0.8~1.2. In addition, the real-time monitor system of heating value was established. The optimal measurement conditions, such as analytical parameters, scopes, and interference, were studied. The data obtained were qualified with the quality specification, including multi-point calibration, accuracy and precision tests.The restriction and interference of this stoichiometric combustion method were also studied. To compare this stoichiometric combustion system with the GC system, 12 field experiments were carried out in petrochemical plants. The ratios of the data obtained from stoichiometric combustion system to GC system were within 0.9-1.1 in 11 field experiments, except to one due to the unusual emission. Furthermore, the auto-sampling system for high heating value emission gases was developed, and the technology diffusion was completed. In summary, this project has established analytical method for heating value in flare stacks using stoichiometric combustion system for EPA to establish the standard operation procedure, and to audit the flare stacks in petrochemical plants. For unusual emissions, the emission gases will be sampled by the auto-sampling system, and further be analyzed to identify species. For the plants using GC system, this stoichiometric combustion system can be used to check the accuracy."

Project Year

2014

Organizer

"Environmental Analysis Laboratory"

Executive Unit

"工業技術研究院綠能所"

Publish Date

20150201

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