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工业铸造条件下BTEX和多环芳烃组中危险化合物的释放研究

Research on the Release of Dangerous Compounds from the BTEX and PAHs Groups in Industrial Casting Conditions.

作者信息

Holtzer Mariusz, Dańko Rafał, Piasny Sylwester, Kubecki Michał, Drożyński Dariusz, Roczniak Agnieszka, Skrzyński Mateusz, Kmita Angelika

机构信息

Faculty of Foundry Engineering, AGH University of Science and Technology, Mickiewicza 30 Str., 30-059 Krakow, Poland.

HARDKOP Sp. z. o. o., Harcerska 12 Str., 32-540 Trzebinia, Poland.

出版信息

Materials (Basel). 2021 May 16;14(10):2581. doi: 10.3390/ma14102581.

Abstract

The assessment of the harmfulness of moulding and core sands is mainly based on investigations of compositions of gases emitted by liquid casting alloys during the mould pouring. The results of investigations of moulding sands obtained under industrial conditions are presented in this paper. A unique research stand was designed and built for this aim. It allowed us to determine emissions of gases at individual stages of casting a mass up to 50 kg. This approach enables simulation of foundry conditions. Moulding sands bound by organic binders (phenol-formaldehyde; furan), inorganic binders and green sand, were subjected to investigations. The composition of gases that evolved during the individual stages, pouring, cooling and knocking out, was tested each time, and the contents of Polycyclic Aromatic Hydrocarbons (PAHs) and benzene, toluene, ethylbenzene, and xylenes (BETX) were analysed. Investigations indicated that the emission of gases from sands with inorganic binders is negligible when compared with the emission of gases from sands with organic binders. The emission of gases from green sand is placed in the middle of the scale. As an example: the sand with furan resin emitted 84 mg of BTEX (in recalculation for 1 kg of sand) while from sands with inorganic binders there was a maximum of 2.2 mg (for 1 kg of sand). In the case of sands with inorganic binders, MI and MC sands indicated comparable and very low emissions of gases from the PAHs group, at the level of 0.018 mg and 0.019 mg for 1 kg of sand, respectively. The higher emission of PAHs from MG sand is the result of its different way of hardening (a binder was of an organic character) than of sands MI and MC.

摘要

型砂和芯砂有害性的评估主要基于对液态铸造合金在铸型浇注过程中释放气体成分的研究。本文介绍了在工业条件下获得的型砂研究结果。为此设计并建造了一个独特的研究平台。它使我们能够确定浇注质量达50千克铸件各个阶段的气体排放情况。这种方法能够模拟铸造条件。对用有机粘结剂(酚醛树脂;呋喃树脂)、无机粘结剂和湿型砂粘结的型砂进行了研究。每次都测试了在浇注、冷却和落砂各个阶段释放的气体成分,并分析了多环芳烃(PAHs)以及苯、甲苯、乙苯和二甲苯(BETX)的含量。研究表明,与有机粘结剂型砂的气体排放相比,无机粘结剂型砂的气体排放可忽略不计。湿型砂的气体排放处于中等水平。例如:呋喃树脂砂排放84毫克BTEX(按每千克砂重新计算),而无机粘结剂型砂最多排放2.2毫克(每千克砂)。对于无机粘结剂型砂,MI砂和MC砂的多环芳烃类气体排放相当且非常低,每千克砂分别为0.018毫克和0.019毫克。MG砂多环芳烃排放较高是由于其硬化方式(粘结剂具有有机性质)与MI砂和MC砂不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bdb/8156336/53e7400f109d/materials-14-02581-g001.jpg

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