阿拉拉特垃圾场翻新工程后空气及土壤样本中二恶英及呋喃排放量的减少

A. Aleksandryan, A. Khachatryan, P. Kukučka, P. Příbylová, P. Čupr, K. Sebková
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引用次数: 0

摘要

由于亚美尼亚缺乏卫生填埋场,一般未经分类的废物被处置到垃圾场。然后,为了减少它们的数量和体积,发生了不受控制的废物燃烧。众所周知,废物的低温燃烧会产生无意中产生的二恶英和呋喃。在选定的阿拉拉特(亚美尼亚共和国)试点垃圾场进行了翻新工程,然后进行了基础设施建设,并实施了现有的最佳技术和最佳环境做法。本文涉及通过两次监测活动获得的数据,包括对修复工程前后在垃圾场采集的空气和土壤样本的分析。对于pcdd /PCDFs的测定,采用安装在Ararat城市垃圾场改造工程前后选定地点的被动采样器进行被动采样。为评价环境状况收集了样本(2次监测活动)。在RECETOX实验室(捷克共和国布尔诺马萨里克大学)作为外部实验室对样品进行了PCDD/ pcdf分析。整个过程按照RECETOX提供的SOP执行。考虑到第一次和第二次监测活动的结果,我们确定了一些可以比较的抽样点。因此,10001、10002和10003的空气样本可以与20001、20002和20003进行比较。进行了以下观察。空气样本的多氯联苯/多氯联苯浓度由28%下降至65%。土壤样品PCDDs/PCDFs浓度降低304 ~ 393倍。
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Reduction of Dioxins and Furans Emission in Air and Soil Samples after Renovation Works at Ararat Dumpsite
Due to the lack of sanitary landfills in Armenia, general unseparated wastes are disposed to dumpsites. Then in order to reduce their amounts and volumes uncontrolled burning of wastes occurs. As known, low-temperature burning of waste generates emissions of unintentionally produced dioxins and furans. At the selected pilot dumpsite of Ararat (Republic of Armenia) renovation works were performed, then followed infrastructure development, as well as implementation of best available technique and best environmental practice. The paper deals with data obtained through 2 monitoring campaigns, including analyses of samples of air and soil taken at the dumpsite area before and after renovation works. For PCDDs/PCDFs determination passive sampling was arranged and done using passive samplers installed at the selected site of Ararat urban dumpsite before and after renovation works. Collection of samples was done for the evaluation of the environmental situation (2 monitoring campaigns). The samples were analysed for PCDD/PCDFs at the laboratory of RECETOX (Masaryk University, Brno, Czech Republic) as an external laboratory. The entire procedure was executed in accordance to SOP provided by the RECETOX. Considering findings of the First and Second Monitoring Campaigns, we identified some sampling points that can be compared. Thus, air samples 10001, 10002 and 10003 can be compared with 20001, 20002 and 20003 accordingly. The following observations were done. For air samples decrease of PCDDs/PCDFs concentration made from 28 to 65 times. For soil samples PCDDs/PCDFs concentration decreased 304-393 times.
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