α-피콜린

α-피콜린
α-피콜린 구조식 이미지
카스 번호:
109-06-8
한글명:
α-피콜린
동의어(한글):
2-메틸피리딘;2-피콜린;α-피콜린
상품명:
2-Picoline
동의어(영문):
2-METHYLPYRIDINE;α-picoline;o-Picoline;a-Picoline;2-Methylpyidine;pyridine,2-methyl-;ALPHAP;NSC-3409;ai3-2409;aPicolin
CBNumber:
CB3237870
분자식:
C6H7N
포뮬러 무게:
93.13
MOL 파일:
109-06-8.mol
MSDS 파일:
SDS

α-피콜린 속성

녹는점
-70 °C (lit.)
끓는 점
128-129 °C (lit.)
밀도
0.942-0.946 at 20 °C 0.943 g/mL at 25 °C (lit.)
증기 밀도
3.2 (vs air)
증기압
10 mm Hg ( 24.4 °C)
굴절률
n20/D 1.500(lit.)
인화점
79 °F
저장 조건
Store below +30°C.
용해도
H2O: 자유롭게 용해됨
물리적 상태
액체
산도 계수 (pKa)
5.97(at 20℃)
색상
맑은 연한 노란색
냄새
불쾌한 냄새
수소이온지수(pH)
8.5 (100g/l, H2O, 20℃)
폭발한계
1.4-8.6%(V)
?? ??
습기
수용성
혼용 가능
감도
Hygroscopic
Merck
14,7400
BRN
104581
Dielectric constant
9.8000000000000007
안정성
안정적인. 가연성. 강한 산화제, 황산, 산, 금속, 황산철(II), 과산화수소와 호환되지 않습니다. 흡습성.
InChIKey
BSKHPKMHTQYZBB-UHFFFAOYSA-N
LogP
1.11 at 20℃
CAS 데이터베이스
109-06-8(CAS DataBase Reference)
NIST
Pyridine, 2-methyl-(109-06-8)
EPA
2-Methylpyridine (109-06-8)
안전
  • 위험 및 안전 성명
  • 위험 및 사전주의 사항 (GHS)
위험품 표기 Xn,T
위험 카페고리 넘버 10-20/21/22-36/37-24-20/22
안전지침서 26-36-45-36/37
유엔번호(UN No.) UN 2313 3/PG 3
WGK 독일 1
RTECS 번호 TJ4900000
자연 발화 온도 995 °F
TSCA Yes
위험 등급 3
포장분류 III
HS 번호 29333999
유해 물질 데이터 109-06-8(Hazardous Substances Data)
독성 LD50 orally in rats: 1.41 g/kg (Smyth)
기존화학 물질 KE-25315
그림문자(GHS): GHS hazard pictogramsGHS hazard pictogramsGHS hazard pictograms
신호 어: Danger
유해·위험 문구:
암호 유해·위험 문구 위험 등급 범주 신호 어 그림 문자 P- 코드
H226 인화성 액체 및 증기 인화성 액체 구분 3 경고
H311 피부와 접촉하면 유독함 급성 독성 물질 - 경피 구분 3 위험 GHS hazard pictograms P280, P302+P352, P312, P322, P361,P363, P405, P501
H314 피부에 심한 화상과 눈에 손상을 일으킴 피부부식성 또는 자극성물질 구분 1A, B, C 위험 GHS hazard pictograms P260,P264, P280, P301+P330+ P331,P303+P361+P353, P363, P304+P340,P310, P321, P305+ P351+P338, P405,P501
H335 호흡 자극성을 일으킬 수 있음 특정 표적장기 독성 - 1회 노출;호흡기계 자극 구분 3 경고 GHS hazard pictograms
예방조치문구:
P210 열·스파크·화염·고열로부터 멀리하시오 - 금연 하시오.
P280 보호장갑/보호의/보안경/안면보호구를 착용하시오.
P301+P312 삼켜서 불편함을 느끼면 의료기관(의사)의 진찰을 받으시오.
P303+P361+P353 피부(또는 머리카락)에 묻으면 오염된 모든 의복은 벗거나 제거하시오 피부를 물로 씻으시오/샤워하시오.
P305+P351+P338 눈에 묻으면 몇 분간 물로 조심해서 씻으시오. 가능하면 콘택트렌즈를 제거하시오. 계속 씻으시오.
NFPA 704
3
3 0

α-피콜린 MSDS


2-Picoline

α-피콜린 C화학적 특성, 용도, 생산

화학적 성질

colourless to yellow liquid with an unpleasant smell

출처

2-Methylpyridine is released in atmospheric emissions from coal during processing into tar, pitch and coke (Windholz et al 1983; Naizer and Mashek 1974). It is also a byproduct of coal gasification and liquefaction processes (Pellizzori et al 1979; Stuermer et al 1982) and oil shale retorting (Pellizzari et al 1979). It is present in coal and is released in stack emissions (Opresko 1982). 2-Methylpyridine has been identified in effluences from the following industries: timber products, organic chemicals, pharmaceuticals and public waste treatment facilities (Schackleford and Cline 1983). 2-Methylpyridine also is a constituent of tobacco smoke (Brunneman 1978).
2-Methylpyridine is biodegradable. A 1 mM solution of 2-methylpyridine exposed in soil microorganism was completely degraded in 14-33 d under aerobic conditions, but not degraded after 97 d in anaerobic conditions (Naik et al 1972).

용도

2-Picoline is used as an intermediate in agrochemicals and pharmaceuticals. It serves as a solvent as well as to prepare dyes and resins. It finds application as a constituent in cigarette smoke, bone oil, coal tar and coke oven emissions. Further, it acts as a precursor of 2-vinylpyridine, picolinic acid and nitrapyrin. It is also employed to study the electron and proton transfer reactions of lumiflavin. In addition, it is used in the synthetic pathway for the preparation of dearomatized, allylated and carbon-hydrogen bond activated pyridine derivatives.

생산 방법

2-Methylpyridine is synthesized by distillation of coal tar or bone oil or by vapor phase reaction of acetaldehyde and ammonia in a 3:1 ratio followed by isolation of 2-methylpyridine from the reaction mixture (Considine 1974). It also can be synthesized from cyclohexylamine with excess ammonia and ZnCl2 at 350°C, resulting in a 40-50% yield; or prepared from ethylene-mercuric acetate adduct with ammonia water with a 70% yield (Windholz et al 1983). Production in 1977 probably exceeded one million pounds (Opresko 1982).

일반 설명

Colorless liquid with a strong, unpleasant odor. Floats on water. Poisonous vapor is produced.

공기와 물의 반응

Highly flammable. Water soluble.

반응 프로필

2-Picoline is hygroscopic. 2-Picoline reacts with hydrogen peroxide, iron(II) sulfate, sulfuric acid, oxidizing agents, acids, and metals.

건강위험

INHALATION, INGESTION OR SKIN ABSORPTION: Narcosis, headache, nausea, giddiness, vomiting. EYES: Severe irritation. SKIN: Causes burns. INGESTION: Irritation and gastric upset.

공업 용도

2-Methylpyridine is used as a solvent, or as a chemical intermediate in the dye and resin industries (Windholz et al 1983) or for pharmaceuticals and rubber (Hawley 1981). It is used to make 2-vinylpyridine which is in turn made into a terpolymer with styrene and butadiene. The latexes of these terpolymers are extensively employed in adhesives for bonding textiles to elastomers (Reinhart and Britelli 1981). It is also a chemical intermediate for 2-chloro-6-(trichloromethyl)pyridine and 2-vinylpyridine.

Safety Profile

Poison by intraperitoneal route. Moderately toxic by ingestion and skin contact. Mildly toxic by inhalation. A skin and severe eye irritant. Mutation data reported. Flammable liquid when exposed to heat or flame. To fight fire, use CO2, dry chemical. Mixtures with hydrogen peroxide + iron(II) sulfate + sulfuric acid may igmte and then explode. When heated to decomposition it emits toxic fumes of NOx.

잠재적 노출

(o-isomer); Suspected reprotoxic hazard, Primary irritant (w/o allergic reaction), (m-isomer): Possible risk of forming tumors, Primary irritant (w/o allergic reaction). Picolines are used as intermediates in pharmaceutical manufacture, pesticide manufacture; and in the manufacture of dyes and rubber chemicals. It is also used as a solvent.

Carcinogenicity

No reliable studies in mammals to evaluate the carcinogenic potential of any of the three methylpyridines were found. None of the methylpyridines is listed as a carcinogen by IARC, NTP, OSHA, or ACGIH.

신진 대사

Methylpyridines are absorbed by inhalation, ingestion or percutaneous absorption (Parmeggiana 1983). 2-Methylpyridine was rapidly absorbed and penetrated to the liver, heart, spleen, lungs and muscle during the first 10-20 min following oral administration of 0.5 g/kg to rats (Kupor 1972). The percentage uptake of 2-methylpyridine by rats increased with dosage and its elimination occurred in two phases which also were dose dependent (Zharikov and Titov 1982).
Data on the biotransformation of 2-methylpyridine have been summarized by Williams (1959) and DeBruin (1976). In rabbits and dogs, the compound is oxidized to α-picolinic acid and then conjugated with glycine to form α-picolinuric acid which is excreted in the urine. In hens, it is excreted partially as α-pyridinornithuric acid. About 96% of a 100 mg/kg oral dose of 2-methylpyridine in rats was excreted in the urine as picolinuric acid (Hawksworth and Scheline 1975). There also is evidence that 2-methylpyridine forms an 2-methylated derivative in dogs (Williams 1959). Since 3-methylpyridine is converted to its N-oxide in various species (Gorrod and Damani 1980), it is likely that 2-methyl-pyridine also is similarly oxidized.

운송 방법

UN2313 Picolines, Hazard Class: 3; Labels: 3-Flammable liquid.

Purification Methods

Biddiscombe and Handley [J Chem Soc 1957 1954] steam distilled a boiling solution of the base in 1.2 equivalents of 20% H2SO4 until about 10% of the base had been carried over, along with non-basic impurities. Excess aqueous NaOH is then added to the residue, the free base is separated, dried with solid NaOH and fractionally distilled. 2-Methylpyridine can also be dried with BaO, CaO, CaH2, LiAlH4, sodium or Linde type 5A molecular sieves. An alternative purification is via the ZnCl2 adduct, which is formed by adding 2-methylpyridine (90mL) to a solution of anhydrous ZnCl2 (168g) and 42mL conc HCl in absolute EtOH (200mL). Crystals of the complex are filtered off, recrystallised twice from absolute EtOH (to give m 118.5-119.5o), and the free base is liberated by addition of excess aqueous NaOH. It is steam distilled, and solid NaOH is added to the distillate to form two layers, the upper one of which is then dried with KOH pellets, stored for several days with BaO and fractionally distilled. Instead of ZnCl2, HgCl2 (430g in 2.4L of hot water) can be used. The complex, which separates on cooling, can be dried at 110o and recrystallised from 1% HCl (to m 156-157o). The hydrochloride has m 78-79o, and the picrate has m 165.5o(from EtOH) and 180o(from H2O). [Beilstein 20 III/IV 2679, 20/5 V 464.]

비 호환성

Vapors may form explosive mixture with air. Incompatible with oxidizers (chlorates, nitrates, peroxides, permanganates, perchlorates, chlorine, bromine, fluorine, etc.); contact may cause fires or explosions. Keep away from alkaline materials, strong bases, strong acids, oxoacids, epoxides. Attacks copper and its alloys.

α-피콜린 준비 용품 및 원자재

원자재

준비 용품


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