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铸造砂树脂的热解:通过质谱法测定有机产物

Pyrolysis of foundry sand resins: a determination of organic products by mass spectrometry.

作者信息

Dungan Robert S, Reeves James B

机构信息

USDA-ARS, Animal Manure & Byproducts Laboratory, Beltsville, Maryland 20705, USA.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2005;40(8):1557-67. doi: 10.1081/ese-200060630.

Abstract

Pyrolysis-gas chromatography-mass spectrometry (MS) was used to identify the major organic products produced by pyrolysis of three foundry sand resins: (i) Novolac and (ii) phenolic urethane (PU) (both phenol-formaldehyde based resins) and (iii) furan (furfuryl alcohol based resin). These resins are used in the metal casting industry as a "sand binder" for making cores (used to produce cavities in molds) and molds for nonferrous castings. During the casting process, the cores and molds are subjected to intense heat from the molten metal. As a result, the organic resins undergo thermal decomposition and produce a number of complex organic compounds. In this study, the organics were tentatively identified by MS after pyrolysis of the resins at 750 degrees C. The major thermal decomposition products from the Novolac, PU, and furan resins were derivatives of phenol, benzene, and furan, respectively. Compounds identified that are of potential environmental concern were benzene, toluene, phenol, o- and p-xylene, o- and m-cresol, and polycyclic aromatic hydrocarbons. Pyrolysis of the Novolac resin resulted in the generation of the most compounds of environmental concern. Because there is interest in beneficially using foundry molding sands in manufactured soils and other agricultural products, it is necessary that organic thermal decomposition products be identified to ensure environmental protection.

摘要

热解气相色谱 - 质谱联用(MS)技术被用于鉴定三种铸造用砂树脂热解产生的主要有机产物:(i)酚醛清漆和(ii)酚醛聚氨酯(PU)(均为酚醛基树脂)以及(iii)呋喃(糠醇基树脂)。这些树脂在金属铸造行业中用作“砂粘结剂”,用于制造型芯(用于在模具中产生型腔)和有色金属铸件的模具。在铸造过程中,型芯和模具会受到来自熔融金属的高温作用。结果,有机树脂发生热分解并产生许多复杂的有机化合物。在本研究中,在750摄氏度下对树脂进行热解后,通过质谱对有机物进行了初步鉴定。酚醛清漆、PU和呋喃树脂的主要热分解产物分别是苯酚、苯和呋喃的衍生物。已鉴定出的具有潜在环境影响的化合物有苯、甲苯、苯酚、邻二甲苯和对二甲苯、邻甲酚和间甲酚以及多环芳烃。酚醛清漆树脂的热解产生了最多的具有环境影响的化合物。由于人们对在人造土壤和其他农产品中有益地使用铸造型砂感兴趣,因此有必要鉴定有机热分解产物以确保环境保护。

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