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首页> 外文期刊>Environmental Science & Technology >Test System To Establish Mass Balances for 14{sup left}C-Labeled Substances in Soil-Plant-Atmosphere Systems under Field Conditions
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Test System To Establish Mass Balances for 14{sup left}C-Labeled Substances in Soil-Plant-Atmosphere Systems under Field Conditions

机译:在田间条件下建立土壤植物-大气系统中14种C标记物质的质量平衡的测试系统

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A test system has been developed that allows the formation of mass balances for 14{sup left}C-labeled organic compounds in soil-plant-atrnosphere systems under field conditions. The main focus was the quantification of all different 14{sup left}C-labeled gaseous losses from soil and plant surfaces afterthe application of 14{sup left}C-labeled chemicals; therefore, a two-chamber system with specially designed trapping facilities was designed. Volatile 14{sup left}C-labeled compounds and 14{sup left}CO{sub}2 resulting from the total degradation of the applied 14{sup left}C-labeled chemical could be trapped separately, and 14{sup left}C gaseous losses from plant and soil surfaces could be determined separately as well. With this test system, it was feasible for the first time to distinguish between 14{sup left}C volatile and 14{sup left}CO{sub}2 losses from soil surfaces and from plant surfaces in soil monolith systems under real environmental conditions. The system itself was established on surfaces of soil monoliths (lysimeters)to study the above-mentioned processes along with the transport and leaching behavior of the chemicals in soil cores. With the new system, the behavior of organic chemicals was followed up for a whole vegetation period, and a mass balance for the applied chemical was established. Therefore, a better prediction of the long-term behavior of organic chemicals under real environmental climatic conditions was achieved. The first results for the fate of the model herbicide isoproturon in two different types of agricultural soils are presented and compared with results from an extensive laboratory study.
机译:已经开发了一种测试系统,该系统允许在田间条件下在土壤-植物-大气层系统中形成14 C标记的有机化合物的质量平衡。主要重点是在应用14 {C}标记的化学物质后,对土壤和植物表面所有14 C标记的气态损失的定量分析。因此,设计了带有专门设计的捕集设施的两室系统。挥发性的14 {sup left} C标记的化合物和14 {sup left} CO {sub} 2是由于所应用的14 {sup left} C标记的化学品的总降解所致,可以分别进行捕集,而14 {sup left} C植物和土壤表面的气体损失也可以分别确定。利用该测试系统,首次可以区分在实际环境条件下土壤表面和整料系统中植物表面的14 {C}挥发物损失和14 {CO} 2挥发分。该系统本身是建立在土壤块体(溶渗仪)的表面上,以研究上述过程以及土壤核中化学物质的运输和浸出行为。使用新系统,可以在整个植被期内跟踪有机化学物质的行为,并建立了所应用化学物质的质量平衡。因此,可以更好地预测有机化学物质在实际环境气候条件下的长期行为。给出了两种不同类型的农业土壤中模型除草剂异丙隆的最终结果的初步结果,并与大量实验室研究的结果进行了比较。

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