{"id":23376,"date":"2024-07-10T09:58:02","date_gmt":"2024-07-10T09:58:02","guid":{"rendered":"https:\/\/stopcarcinogensatwork.eu\/good-practice\/substitution-von-22-dichlor-44-methylendianilin-moca-bei-der-herstellung-von-polyurethanen\/"},"modified":"2025-09-04T11:10:48","modified_gmt":"2025-09-04T11:10:48","slug":"substitution-von-22-dichlor-44-methylendianilin-moca-bei-der-herstellung-von-polyurethanen","status":"publish","type":"good-practice","link":"https:\/\/stopcarcinogensatwork.eu\/de\/good-practice\/substitution-von-22-dichlor-44-methylendianilin-moca-bei-der-herstellung-von-polyurethanen\/","title":{"rendered":"Substitution von 2,2&#8242;-Dichlor-4,4&#8242;-methylendianilin (MOCA) bei der Herstellung von Polyurethanen"},"content":{"rendered":"<p>Eines der Ziele der europ\u00e4ischen <a href=\"https:\/\/environment.ec.europa.eu\/topics\/chemicals\/reach-regulation_en\">REACH-Verordnung<\/a> ist die schrittweise Ersetzung von besonders besorgniserregenden Stoffen (z. B. Kanzerogene) durch sicherere Alternativen. Unternehmen, die diese Stoffe verwenden, suchen aktiv nach sichereren Alternativen (weniger gef\u00e4hrliche Stoffe, neue Technologien und Verfahren) und berichten \u00fcber diese Alternativen. Im Folgenden finden Sie Informationen \u00fcber m\u00f6gliche Alternativen f\u00fcr Chromtrioxid, die in den verschiedenen Zulassungsantr\u00e4gen enthalten sind, die bisher bei der ECHA eingegangen sind. Um weitere Details zu erhalten, folgen Sie bitte dem Link zum vollst\u00e4ndigen Dossier.   <\/p>\n<div id=\"wp-content-editor-tools\" class=\"wp-editor-tools hide-if-no-js\">\n<div class=\"wp-editor-tabs\">\n<p>Nachstehend finden Sie m\u00f6gliche Alternativen f\u00fcr 2,2&#8242;-Dichlor-4,4&#8242;-methylendianilin (MOCA) bei der Herstellung von Polyurethanen.<\/p>\n<h2>2,2&#8242;-Dichlor-4,4&#8242;-methylendianilin (MOCA)<\/h2>\n<\/div>\n<div class=\"wp-editor-tabs\">\n<ul>\n<li><strong>EG-Nummer<\/strong>: 202-918-9<\/li>\n<li><strong>CAS-Nummer<\/strong>: 101-14-4<\/li>\n<li><strong>Verwendung<\/strong>: Herstellung von Polyurethanprodukten<\/li>\n<li><strong>Technische Funktion: <\/strong>Aush\u00e4rtungsmittel\/Kettenverl\u00e4ngerer<\/li>\n<\/ul>\n<\/div>\n<p><strong>Die vielversprechendste Alternative:<\/strong><\/p>\n<ul>\n<li>Kombinationen der in die engere Wahl gezogenen Alternativen<\/li>\n<\/ul>\n<p><strong>Andere Alternativen:<br \/>\n<\/strong><em>Verschiedene (Gruppen von) Unternehmen haben m\u00f6gliche Alternativen zum Ersatz von Chromtrioxid erforscht. Auch wenn diese Alternativen nicht f\u00fcr ihren speziellen Fall ausgew\u00e4hlt wurden, k\u00f6nnen sie f\u00fcr andere F\u00e4lle eine geeignete Option sein. <\/em><\/p>\n<ul>\n<li>4,4&#8242;-Diphenylmethandiisocyanat<\/li>\n<li>1,5-Naphthalin-Diisocyanat<\/li>\n<li>1,4-Phenylendiisocyanat<\/li>\n<li>6-Methyl-2,4-bis(methylthio)phenylen-1,3-diamin; 2-Methyl-4,6-bis(methylthio)phenylen-1,3-diamin<\/li>\n<li>2-Methylpropyl-3,5-diamino-4-chlorbenzoat<\/li>\n<li>4-[(4-Amino-2-chlor-3,5-diethylphenyl)methyl]-3-chlor-2,6-diethylanilin<\/li>\n<li>Ethan-1,2-diol und 3-Aminomethyl-3,5,5-trimethylcyclohexylamin<\/li>\n<li>2,2&#8242;-p-Phenylendioxydiethanol<\/li>\n<li>Butan-1,4-diol<\/li>\n<li>TDI-Pr\u00e4polymere in Kombination mit DMTDA und M-CDEA<\/li>\n<li>MDI-Pr\u00e4polymere in Kombination mit BDO und HQEE<\/li>\n<\/ul>\n<\/div>\n<h2>Ausf\u00fchrlichere Informationen<\/h2>\n<p>Alle Forschungsanstrengungen der Unternehmen sind in Berichten dokumentiert worden. Die folgenden ECHA-Dossiers sind \u00fcber m\u00f6gliche Alternativen f\u00fcr Chromtrioxid f\u00fcr ECCS verf\u00fcgbar: <\/p>\n<ul>\n<li> <a href=\"https:\/\/echa.europa.eu\/nl\/applications-for-authorisation-previous-consultations\/-\/substance-rev\/58208\/del\/50\/col\/synonymDynamicField_1512\/type\/asc\/pre\/8\/view\">0225-01<\/a><\/li>\n<li><a href=\"https:\/\/echa.europa.eu\/nl\/applications-for-authorisation-previous-consultations\/-\/substance-rev\/58207\/del\/50\/col\/synonymDynamicField_1512\/type\/asc\/pre\/8\/view\">0225-02<\/a><\/li>\n<li><a href=\"https:\/\/echa.europa.eu\/nl\/applications-for-authorisation-previous-consultations\/-\/substance-rev\/67806\/del\/50\/col\/synonymDynamicField_1512\/type\/asc\/pre\/9\/view\">0246-01<\/a><\/li>\n<\/ul>\n","protected":false},"template":"","sector":[1159,1226],"carcinogens":[306,1043],"stop":[1057,302],"country":[],"class_list":["post-23376","good-practice","type-good-practice","status-publish","hentry","sector-herstellung-von-anstrichmitteln-und-beschichtungen","sector-malerei-und-verglasung","carcinogens-asbest","carcinogens-dichlormethan","stop-personlicher-schutz","stop-substitutionsmasnahme"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.0 (Yoast SEO v27.3) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>Substitution von 2,2&#039;-Dichlor-4,4&#039;-methylendianilin (MOCA) bei der Herstellung von Polyurethanen<\/title>\n<meta name=\"description\" content=\"Alternativen f\u00fcr 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