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δ13C and Water Use Efficiency in the Glucose of Annual Pine Tree Rings as Ecological Indicators of the Forests in the Most Industrialized Part of Poland

机译:年松树年轮糖的葡萄糖中δ13C和水分利用效率作为波兰工业化程度最高的森林的生态指标

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摘要

In this study, stable carbon isotope ratios in the glucose samples were extracted from annual pine tree rings as bio-indicators of contemporary environmental changes in heavily urbanized areas. The sampling sites were located in close proximity to point source pollution emitters, such as a heat and power plant “Łaziska” and steelworks “Huta Katowice” in Silesia (Poland). The analysed samples covered the time span from 1975 to 2012 AD, the time period of the development of industrialization and the modernization in the industrial sector in Poland, similarly as in Eastern Europe. This modernization was connected with EU legislation and the implementation of restrictive governmental regulations on emissions. The carbon isotope discrimination has been proposed as a method for evaluating water use efficiency. The measurements of carbon isotopes were carried out using the continuous flow isotope ratio mass spectrometer coupled to the elemental analyser. The δ13C values were calibrated relative to the C-3 and C-5 international standards. Diffuse air pollution caused the variation in δ13C and iWUE (the ratio between CO2 assimilation and stomatal conductance) dependency on the type of emitter and some local effects of other human activities. In this study, the first results of water use efficiency in glucose are presented. In the period of time from 1975 to 2012, the water use efficiency values increased from 98 to 122 μmol/mol.
机译:在这项研究中,葡萄糖样品中稳定的碳同位素比是从一年生的松树年轮中提取的,以此作为指示城市化地区当代环境变化的生物指标。采样地点靠近点源污染排放源,例如位于西里西亚(波兰)的热电厂“Łaziska”和钢铁厂“ Huta Katowice”。分析的样本涵盖了从1975年到2012年的时间跨度,波兰与东欧类似的工业化发展和工业化现代化的时期。这种现代化与欧盟立法以及政府关于排放的限制性法规的实施有关。已经提出碳同位素鉴别作为评估水利用效率的方法。碳同位素的测量是使用与元素分析仪耦合的连续流同位素比质谱仪进行的。相对于C-3和C-5国际标准校准了δ 13 C值。弥漫性空气污染导致δ 13 C和iWUE(CO2同化与气孔导度之比)的变化取决于排放物的类型以及其他人类活动的局部影响。在这项研究中,提出了葡萄糖中水分利用效率的第一个结果。在1975年至2012年期间,水的使用效率值从98μmol/ mol增加到122μmol/ mol。

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