一种监测堆肥中微塑料质量的有前途的方法

Yosri Wiesner, Marius Bednarz, Ulrike Braun, Claus Gerhard Bannick, Mathias Ricking, Korinna Altmann
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摘要

在德国和欧盟,通过施用肥料向环境中输入的塑料杂质受到法规的管制。稳健和快速的分析方法是法律法规的基础。目前,只测量宏观和大微塑料含量(1毫米)。微塑料(1 - 1000µm)尚未被监测。热分析方法适用于此目的,它可以确定质量含量,也可以在常规模式下全自动操作。热萃取解吸-气相色谱/质谱(TED-GC/MS)可以识别聚合物和测定自然环境中固体样品的质量含量。根据德国或欧盟委员会(EC)肥料条例,堆肥厂将来应该用这种方法监测微塑料颗粒。在这种情况下,对一个堆肥工厂进行了取样。在腐烂过程结束时,堆肥被筛选并分成粗(> 1mm)和细(< 1mm)。采用密度分离法对细粒组分进行处理,比较NaCl和NaI作为可能的盐替代品,并通过TED-GC/MS筛选微塑料团块,并进行验证和质量保证实验。用TED-GC/MS可检测出成品堆肥中总微塑料质量含量为1.1 ~ 3.0 μg/mg,以聚乙烯为主。粗粒中塑料的总质量高达60 μg/mg,通过目测搜索,通过ATR-FTIR识别,并进行重量加权,差异很大。
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A promising approach to monitor microplastic masses in composts
Inputs of plastic impurities into the environment via the application of fertilizers are regulated in Germany and the EU by means of ordinances. Robust and fast analytical methods are the basis of legal regulations. Currently, only macro- and large microplastic contents (&gt;1 mm) are measured. Microplastics (1–1,000 µm), are not yet monitored. Thermal analytical methods are suitable for this purpose, which can determine the mass content and can also be operated fully automatically in routine mode. Thermal extraction desorption-gas chromatography/mass spectrometry (TED-GC/MS) allows the identification of polymers and the determination of mass contents in solid samples from natural environments. In accordance with the German or European Commission (EC) Fertiliser Ordinance, composting plants should be monitored for microplastic particles with this method in the future. In this context a compost plant was sampled. At the end of the rotting process, the compost was sieved and separated in a coarse (&gt;1 mm) and a fine fraction (&lt;1 mm). The fine fraction was processed using density separation comparing NaCl and NaI as possible salt alternative and screened for microplastic masses by TED-GC/MS with additional validation and quality assurance experiments. With TED-GC/MS total microplastics mass contents of 1.1–3.0 μg/mg in finished compost could be detected with polyethylene mainly. What differs much to the total mass of plastics in the coarse fraction with up to 60 μg/mg, which were visually searched, identified via ATR-FTIR and gravimetrically weighted.
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