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Merck
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Key Documents

45407

Supelco

Cyanazine

PESTANAL®, analytical standard

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About This Item

Fórmula empírica (Notação de Hill):
C9H13ClN6
Número CAS:
Peso molecular:
240.69
Beilstein:
615509
Número CE:
Número MDL:
Código UNSPSC:
41116107
ID de substância PubChem:
NACRES:
NA.24

grau

analytical standard

Nível de qualidade

linha de produto

PESTANAL®

prazo de validade

limited shelf life, expiry date on the label

técnica(s)

HPLC: suitable
gas chromatography (GC): suitable
solid phase extraction (SPE): suitable

aplicação(ões)

agriculture
environmental

formato

neat

cadeia de caracteres SMILES

CCNc1nc(Cl)nc(NC(C)(C)C#N)n1

InChI

1S/C9H13ClN6/c1-4-12-7-13-6(10)14-8(15-7)16-9(2,3)5-11/h4H2,1-3H3,(H2,12,13,14,15,16)

chave InChI

MZZBPDKVEFVLFF-UHFFFAOYSA-N

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Categorias relacionadas

Descrição geral

Standard for Supelco MIP SPE cartridges. For more information request Supelco Literature T407075, T706023

Aplicação

Refer to the product′s Certificate of Analysis for more information on a suitable instrument technique. Contact Technical Service for further support.

Informações legais

PESTANAL is a registered trademark of Merck KGaA, Darmstadt, Germany

Pictogramas

Skull and crossbonesEnvironment

Palavra indicadora

Danger

Frases de perigo

Classificações de perigo

Acute Tox. 3 Oral - Aquatic Acute 1 - Aquatic Chronic 1

Código de classe de armazenamento

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

212.0 °F - closed cup

Ponto de fulgor (°C)

100 °C - closed cup

Equipamento de proteção individual

dust mask type N95 (US), Eyeshields, Faceshields, Gloves


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Sabine Beulke et al.
Journal of environmental quality, 34(6), 1933-1943 (2005-10-14)
There is evidence that degradation of pesticides in simple laboratory systems may differ from that in the field, but it is not clear which of the simplifications inherent in laboratory studies present serious shortcomings. Laboratory experiments evaluated several simplifying assumptions
D W Kolpin et al.
Environmental science & technology, 35(6), 1217-1222 (2001-05-12)
A recently developed analytical method using liquid chromatography/mass spectrometry was used to investigate the occurrence of cyanazine and its degradates cyanazine acid (CAC), cyanazine amide (CAM), deethylcyanazine (DEC), and deethylcyanazine acid (DCAC) in groundwater. This research represents some of the
Ji-Guang Gu et al.
Chemosphere, 52(9), 1515-1521 (2003-07-18)
Persistence and degradation of the herbicides Atrazine, Cyanazine and Dicamba were measured in laboratory microcosms incubated under methanogenic condition using three soils of China. Results showed that Atrazine was more resistant to degradation than Cyanazine and Dicamba for the 300
Guowen Zhang et al.
Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 78(1), 238-242 (2010-10-27)
A spectrophotometric method for the simultaneous determination of two herbicides, atrazine and cyanazine, is described for the first time based on their reaction with p-aminoacetophenone in the presence of pyridine in hydrochloric acid medium. The absorption spectra were measured in
Mohammad Bagher Gholivand et al.
Analytica chimica acta, 713, 36-44 (2011-12-28)
A computational approach was used for screening functional monomers and polymerization solvent in the rational design of molecularly imprinted polymers (MIPs). It was based on the comparison of the binding energy of the complexes between the template and functional monomers.

Protocolos

Separation of Atrazine-desethyl; Metoxuron; Hexazinone; Simazine; Cyanazine; Methabenzthiazuron; Atrazine; Monolinuron; Diuron; Isoproturon; Metobromuron; Metazachlor; Sebuthylazin; Linuron; Metolachlor

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