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4-Dimethylaminopyridine | CAS:1122-58-3
4-Dimethylaminopyridine
  • 名称:4-二甲氨基吡啶 | 4-Dimethylaminopyridine
  • CAS号:1122-58-3
  • 别名:N,N-Dimethylpyridin-4-amine; DMAP
  • 分子式:C7H10N2
  • 分子量:122.17
  • EINESC号:214-353-5

产品描述

物理化学性质

熔点 108-113 ºC
水溶性 76 g/L (25 ºC)
沸点 162 ºC (50 mmHg)
闪点 110 ºC

安全数据

危险品标志 T
危险类别码 R24/25;R34
安全说明书 S26;S28A;S36/37/39;S45

SDS

来源 SDS样本
Alfa-Aesar 浏览或下载
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Immunotoxicity in ascidians: antifouling compounds alternative to organotins: III--the case of copper(I) and Irgarol 1051.Francesca Cima et al.Chemosphere, 89(1), 19-29 (2012-05-01) Embryotoxic and genotoxic effects of heavy metals and pesticides on early life stages of Pacific oyster (Crassostrea gigas).Huong Mai et al.Marine pollution bulletin, 64(12), 2663-2670 (2012-11-06) Antifouling biocides in German marinas: Exposure assessment and calculation of national consumption and emission.Dagmar Daehne et al.Integrated environmental assessment and management, 13(5), 892-905 (2017-01-28) Environmentally friendly procedure based on VA-MSPD for the determination of booster biocides in fish tissue.Augusto A Vieira et al.Food chemistry, 242, 475-480 (2017-10-19) Effects of seven antifouling compounds on photosynthesis and inorganic carbon use in sugar kelp Saccharina latissima (Linnaeus).Per Johansson et al.Archives of environmental contamination and toxicology, 63(3), 365-377 (2012-06-30) Study on the new antifouling compounds in Korean coasts.Seong Eon Lee et al.Bulletin of environmental contamination and toxicology, 85(5), 538-543 (2010-11-12) Risk assessment of herbicides and booster biocides along estuarine continuums in the Bay of Vilaine area (Brittany, France).Th Caquet et al.Environmental science and pollution research international, 20(2), 651-666 (2012-09-18) A new, sensitive marine microalgal recombinant biosensor using luminescence monitoring for toxicity testing of antifouling biocides.Sophie Sanchez-Ferandin et al.Applied and environmental microbiology, 79(2), 631-638 (2012-11-13) ROI-scavenging enzyme activities as toxicity biomarkers in three species of marine microalgae exposed to model contaminants (copper, Irgarol and atrazine).Pablo Lozano et al.Ecotoxicology and environmental safety, 104, 294-301 (2014-04-15) Probabilistic risk assessment of common booster biocides in surface waters of the harbours of Gran Canaria (Spain).Alvaro Sánchez-Rodríguez et al.Marine pollution bulletin, 62(5), 985-991 (2011-03-15) Comparative toxicity of antifouling compounds on the development of sea urchin.Fernando Cesar Perina et al.Ecotoxicology (London, England), 20(8), 1870-1880 (2011-06-29) Organotins and new antifouling biocides in water and sediments from three Korean Special Management Sea Areas following ten years of tributyltin regulation: Contamination profiles and risk assessment.Nguyen Hoang Lam et al.Marine pollution bulletin, 121(1-2), 302-312 (2017-06-18) Acute toxicities of five commonly used antifouling booster biocides to selected subtropical and cosmopolitan marine species.Vivien W W Bao et al.Marine pollution bulletin, 62(5), 1147-1151 (2011-03-23) Determination of diffusion coefficients of biocides on their passage through organic resin-based renders.Katarzyna Styszko et al.Chemosphere, 160, 273-279 (2016-07-09) Acute and chronic toxicities of Irgarol alone and in combination with copper to the marine copepod Tigriopus japonicus.Vivien W W Bao et al.Chemosphere, 90(3), 1140-1148 (2012-10-17) Toxicity evaluation of single and mixed antifouling biocides using the Strongylocentrotus intermedius sea urchin embryo test.Heng Wang et al.Environmental toxicology and chemistry, 30(3), 692-703 (2010-12-15) Physiological and biochemical responses of Synechococcus sp. PCC7942 to Irgarol 1051 and diuron.Xiangyuan Deng et al.Aquatic toxicology (Amsterdam, Netherlands), 122-123, 113-119 (2012-07-14) Leaching of biocides from façades under natural weather conditions.M Burkhardt et al.Environmental science & technology, 46(10), 5497-5503 (2012-04-25) Antifouling biocides in water and sediments from California marinas.Yelena Sapozhnikova et al.Marine pollution bulletin, 69(1-2), 189-194 (2013-03-05) Integrated photocatalytic-biological treatment of triazine-containing pollutants.Cho Yin Chan et al.Chemosphere, 222, 371-380 (2019-02-04) Applicability of microwave-assisted extraction combined with LC-MS/MS in the evaluation of booster biocide levels in harbour sediments.Alvaro Sánchez-Rodríguez et al.Chemosphere, 82(1), 96-102 (2010-10-16) Environmental risks associated with booster biocides leaching from spent anti-fouling paint particles in coastal environments.Chowdhury K Hasan et al.Water environment research : a research publication of the Water Environment Federation, 86(12), 2330-2337 (2015-02-07) Optimization and comparison of ESI and APCI LC-MS/MS methods: a case study of Irgarol 1051, Diuron, and their degradation products in environmental samples.Niki C Maragou et al.Journal of the American Society for Mass Spectrometry, 22(10), 1826-1838 (2011-09-29) Concentration and degradation of alternative biocides and an insecticide in surface waters and their major sinks in a semi-enclosed sea, Japan.Chikumbusko Chiziwa Kaonga et al.Chemosphere, 145, 256-264 (2015-12-22) In vitro reactive oxygen species production by mitochondria from the rabbitfish Siganus fuscessens livers and the effects of Irgarol-1051.Bo Liang et al.Environmental toxicology and pharmacology, 35(2), 154-160 (2013-01-19) Fast pesticide pre-screening in marine environment using a green microalgae-based optical bioassay.Laura Moro et al.Marine pollution bulletin, 129(1), 212-221 (2018-04-24) Effects of organotin alternative antifoulants on oyster embryo.N Tsunemasa et al.Archives of environmental contamination and toxicology, 61(1), 128-134 (2010-09-23) Induction of HepG2 cell apoptosis by Irgarol 1051 through mitochondrial dysfunction and oxidative stresses.Li Wang et al.Toxicology in vitro : an international journal published in association with BIBRA, 27(6), 1771-1779 (2013-06-01) Occurrence and distribution of antifouling biocide Irgarol-1051 in coastal waters of Peninsular Malaysia.Hassan Rashid Ali et al.Marine pollution bulletin, 70(1-2), 253-257 (2013-03-16) Concentrations of Irgarol in selected marinas of Oahu, Hawaii and effects on settlement of coral larval.Sean Knutson et al.Ecotoxicology (London, England), 21(1), 1-8 (2011-08-13) Overlapping and unique toxic effects of three alternative antifouling biocides (Diuron, Irgarol 1051®, Sea-Nine 211®) on non-target marine fish.Young-Sun Moon et al.Ecotoxicology and environmental safety, 180, 23-32 (2019-05-07) Antifouling biocides in discarded marine paint particles.Rachel Parks et al.Marine pollution bulletin, 60(8), 1226-1230 (2010-04-13) Acute toxicity of organic antifouling biocides to phytoplankton Nitzschia pungens and zooplankton Artemia larvae.S M Jung et al.Marine pollution bulletin, 124(2), 811-818 (2016-12-07) Microfunnel-supported liquid-phase microextraction: application to extraction and determination of Irgarol 1051 and diuron in the Persian Gulf seawater samples.Abolfazl Saleh et al.Journal of chromatography. A, 1356, 32-37 (2014-07-14) Distribution of antifouling biocides and perfluoroalkyl compounds in sediments from selected locations in Indonesian coastal waters.Hiroya Harino et al.Archives of environmental contamination and toxicology, 63(1), 13-21 (2012-05-10) Comparative toxicity of single and combined mixtures of selected pollutants among larval stages of the native freshwater mussels (Unio elongatulus) and the invasive zebra mussel (Dreissena polymorpha).Melissa Faria et al.The Science of the total environment, 408(12), 2452-2458 (2010-03-30) Screening of antifouling biocides around a pleasure boat marina in the Baltic Sea after legal restrictions.Henrik Kylin et al.Bulletin of environmental contamination and toxicology, 85(4), 402-406 (2010-08-07) Leaching of biocides used in façade coatings under laboratory test conditions.Ute Schoknecht et al.Environmental science & technology, 43(24), 9321-9328 (2009-11-26)
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