트리아이소프로판올아민

트리아이소프로판올아민
트리아이소프로판올아민 구조식 이미지
카스 번호:
122-20-3
한글명:
트리아이소프로판올아민
동의어(한글):
트리아이소프로판올아민;트라이아이소프로판올아민
상품명:
Triisopropanolamine
동의어(영문):
TPEA;AMIX TI;Tripropanolamine;Tri-2-propanolamine;Pharmaceutical Intermediate and Research Chemical 122-20-3;AMIX TI 85%;Trisisopropanol;78-96-61,1’,1’’-;Trisopropanolamine;Triisopropanolamin
CBNumber:
CB7677311
분자식:
C9H21NO3
포뮬러 무게:
191.27
MOL 파일:
122-20-3.mol
MSDS 파일:
SDS

트리아이소프로판올아민 속성

녹는점
48-52 °C (lit.)
끓는 점
190 °C/23 mmHg (lit.)
밀도
1.0
증기압
1 hPa (100 °C)
굴절률
1.4200 (estimate)
인화점
160 °C
저장 조건
Store below +30°C.
물리적 상태
결정질 저융점 고체
산도 계수 (pKa)
14.37±0.20(Predicted)
색상
흰색에서 약간 노란색
수소이온지수(pH)
10.8 (100g/l, H2O, 20℃)
폭발한계
0.8-5.8%(V)
수용성
녹는
어는점
52℃
감도
Hygroscopic
BRN
1071570
LogP
-0.015 at 23℃
CAS 데이터베이스
122-20-3(CAS DataBase Reference)
NIST
2-Propanol, 1,1',1''-nitrilotris-(122-20-3)
EPA
Triisopropanolamine (122-20-3)
안전
  • 위험 및 안전 성명
  • 위험 및 사전주의 사항 (GHS)
위험품 표기 Xi
위험 카페고리 넘버 36-52/53
안전지침서 26-61
유엔번호(UN No.) UN 3259 8/PG 2
WGK 독일 1
RTECS 번호 UB8750000
자연 발화 온도 275 °C
TSCA Yes
HS 번호 2922 19 00
위험 등급 8
포장분류 III
유해 물질 데이터 122-20-3(Hazardous Substances Data)
독성 LD50 orally in Rabbit: 4000 mg/kg LD50 dermal Rabbit 10000 mg/kg
기존화학 물질 KE-25956
그림문자(GHS): GHS hazard pictograms
신호 어: Warning
유해·위험 문구:
암호 유해·위험 문구 위험 등급 범주 신호 어 그림 문자 P- 코드
H319 눈에 심한 자극을 일으킴 심한 눈 손상 또는 자극성 물질 구분 2A 경고 GHS hazard pictograms P264, P280, P305+P351+P338,P337+P313P
H412 장기적 영향에 의해 수생생물에 유해함 수생 환경유해성 물질 - 만성 구분 3 P273, P501
예방조치문구:
P273 환경으로 배출하지 마시오.
P305+P351+P338 눈에 묻으면 몇 분간 물로 조심해서 씻으시오. 가능하면 콘택트렌즈를 제거하시오. 계속 씻으시오.
NFPA 704
1
3 0

트리아이소프로판올아민 C화학적 특성, 용도, 생산

개요

Triisopropanolamine (TIPA), a tertiary alkanolamine, is majorly used as a grinding chemical that reduces agglomeration in the ball milling process and changes the particle distribution of the finished cement.

화학적 성질

Triisopropanolamine is a white to slightly yellow crystalline that is almost odorless. It is fully soluble in water.
Triisopropanolamine is a corrosive and hygroscopic solid.

용도

Triisopropanolamine is an amine used for a variety of industrial applications including as an emulsifier, stabilizer, and chemical intermediate. It is also used to neutralize acidic components of some herbicides.
Triisopropanolamine is an aminoalcohol and belongs to the group of alkanolamines. It is majorly used as a grinding chemical that reduces agglomeration in the ball milling process and changes the particle distribution of the finished cement.

주요 응용

Triisopropanolamine (TIPA) can act as an interfacial transition zone (ITZ) to improve the mechanical properties of the mortar and the concrete. It can also be used to increase the compressive strength of the cement-fly ash system by accelerating the hydration of both the compounds.
1. Cement industry - TIPA is commonly used a cement grinding additives. It increases the strength of cement and other mixtures for cement.
2. Metallurgy - TIPA is used as antioxidants and coolant and prevent corrosion in metals.
3. Polyurethane industry - preliminary usage as a agent and catalyst to improve PU quality.
4. Textile industry - TIPA is used as refining agent and other dye specific agent properties.

일반 설명

White solid with slight odor of ammonia. Denser than water .

공기와 물의 반응

Water soluble

반응 프로필

Triisopropanolamine neutralizes acids to form salts plus water in exothermic reactions. May be incompatible with isocyanates, halogenated organics, peroxides, phenols (acidic), epoxides, anhydrides, and acid halides. Flammable gaseous hydrogen is generated by combination with strong reducing agents, such as hydrides.

위험도

Irritant to skin and eyes.

건강위험

Irritation of eyes and skin. May cause slight corneal injury or burn. Repeated contact may cause skin burn. Heated vapor may cause moderate respiratory irritation. Low to moderately toxic by oral routes.

주의 사항

Hygroscopic. Store away from oxidizing agents, water/moisture. Keep the container tightly closed and place it in a cool, dry and well ventilated condition. Store under inert gas.

참고 문헌

Pensri Piboonchaisit, et al. Novel Route to Tris(silatranyloxy-i-propyl)amine Directly from Silica and Triisopropanolamine, Part I.ScienceAsia.1999,25113-119.
Paul J. Sandberg.; F. Doncaster. On the mechanism of strength enhancement of cement paste and mortar with triisopropanolamine.Cem. Concr. Res.2004,34(6), 973-976.

트리아이소프로판올아민 준비 용품 및 원자재

원자재

준비 용품


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