KR870001107A - 혼합 금속 수산화물의 제조방법 - Google Patents

혼합 금속 수산화물의 제조방법 Download PDF

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KR870001107A
KR870001107A KR1019860005435A KR860005435A KR870001107A KR 870001107 A KR870001107 A KR 870001107A KR 1019860005435 A KR1019860005435 A KR 1019860005435A KR 860005435 A KR860005435 A KR 860005435A KR 870001107 A KR870001107 A KR 870001107A
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엘.버바 Iii세 죤
엘. 버바 Iii세 죤
더블유.스트로더 그린
더블유. 스트로더 그린
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더 다우 케미칼 캄파니
리챠드 지. 워터맨
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Abstract

내용 없음.

Description

혼합 금속 수산화물의 제조방법
본 내용은 요부공개 건이므로 전문내용을 수록하지 않았음

Claims (15)

  1. 목적하는 예정량의 Li,D,T, 및 A 이온을 제공하는 화합물의 예정량의 용액을 제조하고, 제조된 용액을, 전단 교반을 사용하지 않고 신속, 균일 및 순간침전이 이루어지는 방식으로, 하이드록실 이온의 공급원을 제공하는 알칼리성 용액과 혼합하여, 음이온으로서 하이드록실 이온과 A이온을 함유하는 결정성 혼합금속 화합물로 Li, D, 및 T금속을 공침시키며, 여기에서 결정은 단일 분산되고, 결정 구조분석에 의해 측정된 것으로 단층 단위 겨자 구조를 나타냄을 특징으로 하여, 일반식(I)의 수산화물 화합물을 제조하는 방법.
    상기식에서 D는 2가 금속 이온이고; T는 3가 금속이온이며; A는 OH-이온을 제외한, 1각 또는 다가음 이온 또는 음의 원자가를 갖는 라디칼을 나타내고; m은 0 내지 약 1이며; d는 0 내지 약 4이고; a는 A의 이온수이며; (m+d)는 0보다 크고; n은 A의 원자가이며; na는 0 내지 약 -3이고; q는 0 내지 약 6이며; (m+2d+3+na)는 3이상이다.
  2. 제1항에 있어서, 반응대에서 측정 또는 계측량의 금속 양이온-함유 공급용액과 예정량의 하이드록실 이온-함유 공급용액을, 혼합하는 동안에 반응대에서 일어나는 반응의 결과로 형성되는 응집과를 파괴하는 전단 교반을 실질적으로 피하면서 반응대에서 신속하고 균일한 혼합이 이루어지도록 하는 방법으로 합하고, 이렇게 하여 생성된 반응 혼합물을 후속의 측정 또는 계측량의 공급용액을 가하기 전에 반응대로부터 회수함으로써, 반응대에서 후속량의 공급용액이 먼저번 양의 공급용액과 혼합되는 것을 실질적으로 피하며, 여기에서 이 방법은 반응대에서 온도, pH, 및 반응물 비의 거의 일정한 조건을 사용하는 거의 정류상태 조건하에서 수행함을 특징으로 하여, 일반식(I)의 수산화물 화합물을 제조하는 방법.
  3. 제1항 또는 2항에 있어서, m이 0.5 내지 0.75의 범위인 방법.
  4. 제1항 또는 2항에 있어서, d가 1 내지 3의 범위인 방법.
  5. 제1항 또는 2항에 있어서, D가 Mg, Ca, Ba, Sr, Mn, Fe, CO, Ni, Cu 및 Zn 중의 적어도 하나인 방법.
  6. 제5항 있어서, D가 Mg 및 Ca 중의 적어도 하나인 방법.
  7. 제1항 또는 2항에 있어서, T가 Al, Ga, Cr 또는 Fe인 방법.
  8. 제7항에 있어서, T가 Fe 또는 Al인 방법.
  9. 제1항 또는 2항에 있어서, 음이온 A가 1가, 2가, 3가 또는 다가이며 na의 값이 0이 아닌 방법.
  10. 제1항 또는 2항에 있어서, 음이온 A가 할라이드, 설페이트, 니트레이트, 포스페이트, 카보네이트, 글리콜레이트, 리그노설페이트 및 폴리카복실레이트중의 적어도 하나인 방법.
  11. 제1항 또는 2항에 있어서, D가 Mg이고, T가 Al이며 A가 무기음이온인 방법.
  12. 제1항 또는 2항에 있어서, 제조된 화합물이 MgAl(OH)4.7Cl0.3인 방법.
  13. 제1항 또는 2항에 있어서, 단층 단위격자 결정이 8내지 16Å의 두께를 갖는 방법.
  14. 제1항에 있어서, 용액이 수용액인 방법.
  15. 공정중의 유체와 양립하거나 혼화할 수 있는 액체 대량과, 제1항 내지 14항중의 어느 한 항에 의해 제조된 화합물과 실질적으로 일치하는 겔화제 소량으로 이루어지며 요변성 및 유체감량에 대한 내성의 특징을 갖는, 공정중의 유체를 농후화하기 위한 액상 겔화제.
    ※ 참고사항 : 최초출원 내용에 의하여 공개하는 것임.
KR1019860005435A 1985-07-05 1986-07-05 혼합 금속 수산화물의 제조방법 KR900004487B1 (ko)

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EP0207811A3 (en) 1988-11-17
CN1063266A (zh) 1992-08-05
BR8603134A (pt) 1987-02-24
DK320386A (da) 1987-01-06
CN86104606A (zh) 1987-02-04
IE64505B1 (en) 1995-08-09
IL79304A (en) 1990-07-12
ATE93815T1 (de) 1993-09-15
DE3688954T2 (de) 1993-12-23
JPS6236007A (ja) 1987-02-17
AU595214B2 (en) 1990-03-29
CN1016352B (zh) 1992-04-22
ZA864992B (en) 1988-03-30
ES2000647A6 (es) 1988-03-16
NO862726D0 (no) 1986-07-04
NO862726L (no) 1987-01-06
MY101976A (en) 1992-02-29
AR247532A1 (es) 1995-01-31
EP0207811A2 (en) 1987-01-07
US4990268A (en) 1991-02-05
EP0207811B1 (en) 1993-09-01
DK320386D0 (da) 1986-07-04
DE3688954D1 (de) 1993-10-07
IL79304A0 (en) 1986-10-31
JP2993640B2 (ja) 1999-12-20
AU5975486A (en) 1987-01-22
IE861792L (en) 1987-01-05
KR900004487B1 (ko) 1990-06-28

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