Szczegóły publikacji

Opis bibliograficzny

Emission of BTEX and PAHs from molding sands with furan cold setting resins containing different contents of free furfuryl alcohol during production of cast iron / Mariusz HOLTZER, Sylwia ŻYMANKOWSKA-KUMON, Angelika KMITA, Rafał DAŃKO // China Foundry ; ISSN 1672-6421. — 2015 — vol. 12 no. 6, s. 446–450. — Bibliogr. s. 449–450, Abstr.

Autorzy (4)

Słowa kluczowe

BTEX and PAHsfoundryfuran resinsfree furyl alcoholenvironmental protection

Dane bibliometryczne

ID BaDAP94849
Data dodania do BaDAP2016-01-26
Tekst źródłowyURL
Rok publikacji2015
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaChina Foundry

Abstract

At present, furan resin is the largest selling no-bake system of moulding sands. The most commonly used furan no-bake binders (FNB) are condensation products of furfuryl alcohol(FA) urea, formaldehyde and phenol. They are generally cured by exposure to organic sulfonic acids. FNB provide excellent mold and core strength, cure rapidly and allow the sand to be reclaimed at fairly high yields, generally 75%-80%, especially in applications where due allowance is made for the need to keep total sulfur content below 0.1%. However, due to probable carcinogenic properties of furfuryl alcohol, the EU Directive limits the content of this substance (in a monomer form in resin) to 25%. The classification of furfuryl alcohol and the resulting furan resin products has changed from “harmful” to “toxic by inhalation”. The aim of this study was to determine the effect of free furfuryl alcohol content in the resin on the emission of harmful substances from the BTEX (Benzene Toluene Ethylbenzene & Xylene) and PAHs (polycyclic aromatic hydrocarbon) group exposed to high temperature and how it affects the emissions allowance of reclaimed sand in the matrix. Three resins from a leading manufacturer were examined, which contain a free furfuryl alcohol content of 71%-72%, about 50% and < 25%, respectively. The hardener for each resin was 65% aqueous solution of paratoluenesulfonic acid. Tests were carried out in semi-industrial conditions where liquid cast-iron was poured into sample sand mold at 1,350 °C. The matrix of the studied sands was reclaimed in the amount of 0, 50%, 100%, respectively. With the increase of free furfuryl alcohol content, the volume of evolved gases decreased. For all resins the main component from the BTEX group dominating in the emitted gases was benzene; however toluene also appeared in the amount of a few percentages. In contrast, ethylbenzene and xylenes occurred only in the gases emitted from resin-bonded sands with the largest furfuryl alcohol content. The increase in the share of reclaimed sands resulted in very significant increase in the volume of gas generated and participation of benzene in these gases. In terms of emission of compounds from the PAHs group virtually for all resins, the total content of these substances was comparable (within the limits of error). The main components were: fluoranthene, pyrene and benzo(a) anthracene.

Publikacje, które mogą Cię zainteresować

fragment książki
#94626Data dodania: 8.12.2015
Emission of BTEX and PAHs from molding sands with furan cold setting resins with different content of free furfuryl alcohol during production of cast iron / Mariusz HOLTZER, Sylwia ŻYMANKOWSKA-KUMON, Angelika KMITA, Rafał DAŃKO // W: Proceedings of the 2015 WFO international forum on Moulding materials and casting technologies : October 25–28, 2015, Changsha, China / WFO Moulding Materials Commission, Foundry Institution of Chinese Mechanical Engineering Society, Productivity Promotion Center of Foundry Industry of China. — [China : s. n.], [2015]. — S. 33–37. — Bibliogr. s. 37, Abstr.
artykuł
#81714Data dodania: 9.6.2014
The influence of reclaim addition on the emission of PAHs and BTEX from moulding sands with furfuryl resin with the average amount of furfuryl alcohol / M. HOLTZER, S. ŻYMANKOWSKA-KUMON, A. BOBROWSKI, R. DAŃKO, A. KMITA // Archives of Foundry Engineering / Polish Academy of Sciences. Commission of Foundry Engineering ; ISSN 1897-3310. — Tytuł poprz.: Archiwum Odlewnictwa. — 2014 — vol. 14 spec. iss. 1, s. 37–42. — Bibliogr. s. 41–42, Abstr.