JPS62223011A - Production of tribasic calcium phosphate - Google Patents

Production of tribasic calcium phosphate

Info

Publication number
JPS62223011A
JPS62223011A JP6782386A JP6782386A JPS62223011A JP S62223011 A JPS62223011 A JP S62223011A JP 6782386 A JP6782386 A JP 6782386A JP 6782386 A JP6782386 A JP 6782386A JP S62223011 A JPS62223011 A JP S62223011A
Authority
JP
Japan
Prior art keywords
water
calcium phosphate
insoluble
suspension
phosphate salt
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP6782386A
Other languages
Japanese (ja)
Other versions
JPH0463805B2 (en
Inventor
Naokuni Satogami
里神 尚邦
Minoru Wakana
若菜 穣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Taihei Chemical Industrial Co Ltd
Original Assignee
Taihei Chemical Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Taihei Chemical Industrial Co Ltd filed Critical Taihei Chemical Industrial Co Ltd
Priority to JP6782386A priority Critical patent/JPS62223011A/en
Publication of JPS62223011A publication Critical patent/JPS62223011A/en
Publication of JPH0463805B2 publication Critical patent/JPH0463805B2/ja
Granted legal-status Critical Current

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  • Materials For Medical Uses (AREA)
  • Water Treatment By Sorption (AREA)

Abstract

PURPOSE:To obtain tribasic calcium phosphate which is not converted to ceramics and has high adsorption capacity, by suspending a water-insoluble calcium phosphate and water-insoluble CaCO3 is water at specific ratios and reacting the components with each other. CONSTITUTION:One or more kinds of water-insoluble calcium phosphates selected from CaHPO4.2H2O, CaHPO4, Ca2P2O7, Ca8H2(PO4)6.5H2O and Ca3(PO4)2 are prepared beforehand and suspended in water. Water-insoluble CaCO3 is added to the suspension at a Ca/P molar ratio of 1.5. The components are made to react with each other by heating the suspension under stirring.

Description

【発明の詳細な説明】 産業上の利用分野 この発明は、示性式Ca3 (PO4)2で示される第
三リン酸カルシウムの製造方法に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application This invention relates to a method for producing tricalcium phosphate having the formula Ca3 (PO4)2.

発明の背景 第三リン酸カルシウムは、人工骨、人工歯根などの生体
硬111織用成形材料として極めて有用な物質である。
Background of the Invention Tricalcium phosphate is an extremely useful substance as a molding material for bio-hard 111 fabrics such as artificial bones and artificial tooth roots.

またこれはタンパク質や核酸などの有機高分子物質の分
離に用いられるクロマトグラフィー用充填材としても有
用な物質である。そのため、近年、第三リン酸カルシウ
ムを安価にかつ高収率でa産することのできる製造方法
が望まれている。
It is also a useful substance as a chromatography packing material used to separate organic polymer substances such as proteins and nucleic acids. Therefore, in recent years, there has been a desire for a manufacturing method that can produce tricalcium phosphate at low cost and in high yield.

従来技術およびその問題点 一般に、第三リン酸カルシウムは、リン酸化合物とカル
シウム化合物とを混合し800〜1500℃の温度範囲
でこれらを焼成して固相反応を行なわせる乾式合成法に
よって[造されていた。
Prior Art and Its Problems In general, tricalcium phosphate is produced by a dry synthesis method in which a phosphoric acid compound and a calcium compound are mixed and baked in a temperature range of 800 to 1500°C to perform a solid phase reaction. Ta.

しかしながら、上記のような乾式合成法では原料の混合
磯や焼成炉などの装置を使用するために、実験室的規模
ではともかくも、工業的な大量生産では多大な設備費お
よび燃料費と複雑な操作とが必要となり、また収率も満
足いくものではなかった。したがって、この方法は第三
リン酸カルシウムの工業的大量生産方法としては実用的
なものではなかった。
However, the dry synthesis method described above uses equipment such as a mixing rock and a firing furnace for raw materials, and therefore, although it may be performed on a laboratory scale, industrial mass production requires a large amount of equipment and fuel costs and is complicated. Further, the yield was not satisfactory. Therefore, this method was not practical as a method for industrial mass production of tricalcium phosphate.

さらに、乾式合成法で得られた製品は、焼成によってセ
ラミック化したものであるため、上述した生体硬組織用
成形材料としては使用できないうえに、焼成によって吸
着力を喪失しているため、上述したクロマトグラフィー
用充填材としても使用できないうらみがあった。
Furthermore, products obtained by the dry synthesis method cannot be used as the above-mentioned molding materials for biological hard tissue because they are made into ceramics by firing, and they also lose their adsorption power due to firing, so There was also a problem that it could not be used as a packing material for chromatography.

この発明は、以上の点に鑑み、化学量論的組成を有しか
つ焼成されていない第三リン酸カルシウムを簡単な操作
で大量生産することができる第三リン酸カルシウムの新
規製造方法を提供することを目的とする。゛ 問題点の解決手段 この発明による第三リン酸カルシウムの製造方法は、水
に不溶性のリン酸カルシウム塩を水中に懸濁させ、懸濁
液に水に不溶性であるCaCO3を添加し、懸濁液を撹
拌下に加熱してリン酸カルシウム塩にCaC0aを反応
させることを特徴とする。
In view of the above points, an object of the present invention is to provide a new method for producing tribasic calcium phosphate that has a stoichiometric composition and can mass-produce uncalcined tribasic calcium phosphate with simple operations. shall be.゛Means for solving problems The method for producing tricalcium phosphate according to the present invention involves suspending a water-insoluble calcium phosphate salt in water, adding water-insoluble CaCO3 to the suspension, and stirring the suspension. It is characterized by heating the calcium phosphate salt to react with CaC0a.

水に不溶性のリン酸カルシウム塩の代表例としては、C
a日PO4・2HzO1CaHPO4、Ca2 P2O
7およびCan H2(PO4)8 ・5日2Oよりな
る群から選ばれた1または2以上の化合物が挙げられる
A typical example of a water-insoluble calcium phosphate salt is C
a day PO4・2HzO1CaHPO4, Ca2 P2O
7 and Can H2(PO4)8.5day2O.

リン酸カルシウム塩とCaCo3の割合は、これらの混
合物のCa/Pモル比が約1.50になるように設定さ
れる。
The proportions of calcium phosphate salt and CaCo3 are set such that the Ca/P molar ratio of the mixture is approximately 1.50.

懸濁液の加熱は、大気圧下に50〜100℃、好ましく
は80〜100℃の温度範囲で行なわれる。
Heating of the suspension is carried out under atmospheric pressure in a temperature range of 50 to 100°C, preferably 80 to 100°C.

反応装置としては、通常の撹拌機付きステンレス鋼製反
応器を用いることができる。
As the reaction device, a common stainless steel reactor equipped with a stirrer can be used.

発明の作用・効果 この発明の第三リン酸カルシウムの製造方法は以上のと
おり構成されているので、化学量論的組成を有する第三
リン酸カルシウムを簡単な操作で製造することができる
Functions and Effects of the Invention Since the method for producing tribasic calcium phosphate of the present invention is configured as described above, tribasic calcium phosphate having a stoichiometric composition can be produced by simple operations.

またこの発明の方法によれば、水に不溶性のリン酸カル
シウム塩と水に不溶性のCaCO3とをともに水に懸濁
状態で反応させるので、原料の結晶系をそのまま保持す
ることができる。
Furthermore, according to the method of the present invention, since the water-insoluble calcium phosphate salt and the water-insoluble CaCO3 are reacted together in a suspended state in water, the crystalline system of the raw materials can be maintained as is.

したがって得られた第三リン酸カルシウムはセラミック
化されていないうえに、大きな吸着容置を有しており、
生体硬組織用成形材料およびりOマドグラフィー用充填
材としてそれぞれ浸れた性能を備えている。
Therefore, the obtained tricalcium phosphate is not ceramicized and has a large adsorption capacity.
It has excellent performance as a molding material for biological hard tissues and as a filler for O-mography.

またこの発明の方法では通常の湿式合成法で用いる反応
装置をそのまま使用できるので、設備費の点でも有利で
ある。
Furthermore, the method of the present invention is advantageous in terms of equipment costs, since the reaction equipment used in conventional wet synthesis methods can be used as is.

こうしてこの発明の方法によれば、生体硬組織用成形材
料およびクロマトグラフィー用充填材として有用であり
、かつ化学量論的組成を有する第三リン酸カルシウムを
、簡単な操作で大量生産することができる。
Thus, according to the method of the present invention, tricalcium phosphate, which is useful as a molding material for biological hard tissue and a filler for chromatography and has a stoichiometric composition, can be mass-produced with simple operations.

実  施  例 つぎに、上記効果を実証するためにこの発明の実施例を
挙げる。
Examples Next, examples of the present invention will be given to demonstrate the above effects.

実施例1 水に不溶性のリン酸カルシウム塩としてCaHPO4・
2H2Oを用い、その10−339を内容12O/の撹
拌機付きステンレス鋼製反応器にとり、水161を加え
てCaHPO4・2H2Oを懸濁させた。
Example 1 CaHPO4 as a water-insoluble calcium phosphate salt
Using 2H2O, the 10-339 was placed in a stirred stainless steel reactor with a content of 12O/, and 161 of water was added to suspend CaHPO4.2H2O.

懸濁液にCaCO3300gを少ffiずつ添加し、懸
濁液を撹拌下に加熱して温度を徐々に85℃まで上昇せ
しめ、さらに温度85〜90℃で4時間撹拌を続けた。
3300 g of CaCO3 was added little by little to the suspension, and the suspension was heated with stirring to gradually raise the temperature to 85°C, and stirring was continued for 4 hours at a temperature of 85-90°C.

冷却後、生成した沈澱物を濾取し、洗浄後乾燥し、92
7gの製品を得た。
After cooling, the generated precipitate was collected by filtration, washed, and dried.
7g of product was obtained.

こうして得られた製品は、化学分析の結果、Ca含有1
37.60%およびP含有但19゜37%、したがって
Ca/Pモル比1.50の化学量論的組成を有する第三
リン酸カルシウムであることが確認された。またX線回
折解析の結果、この物質は第三リン酸カルシウムの結晶
構造の典型的な回折図形を有する物質であることが確認
された。
As a result of chemical analysis, the product thus obtained contained 1
It was confirmed to be tricalcium phosphate having a stoichiometric composition of 37.60% and P content of 19.37%, thus a Ca/P molar ratio of 1.50. Further, as a result of X-ray diffraction analysis, it was confirmed that this substance had a diffraction pattern typical of the crystal structure of tricalcium phosphate.

実施例2 水に不溶性のリン酸カルシウム塩としてCaHPO42
O0gと Cae H2(PO4)8  ”5H2O491!Jの
組合わせを用い、かつCaCO32O0gを用いた点を
除いて、実施例1と同じ操作を繰返し、製品9259を
得た。
Example 2 CaHPO42 as a water-insoluble calcium phosphate salt
Product 9259 was obtained by repeating the same operation as in Example 1, except that a combination of O0g and Cae H2(PO4)8''5H2O491!J was used, and CaCO32O0g was used.

化学分析およびX線回折解析の結果、この製品も、Ca
/Pモル比1.50を有し、かつ第三リン酸カルシウム
の結晶構造の典型的な回折図形を有する化学量論的組成
の第三リン酸カルシウムであることが確認された。
As a result of chemical analysis and X-ray diffraction analysis, this product also contains Ca.
/P molar ratio of 1.50 and a stoichiometric composition of tricalcium phosphate having a typical diffraction pattern of the crystal structure of tricalcium phosphate.

実施例3 水に不溶性のリン酸カルシウム塩としてCa2P2O7
762SFを用い、かっCaCO330(lを用いた点
を除いて、実施例1と同じ操作を繰返し、製品927g
を得た。
Example 3 Ca2P2O7 as water-insoluble calcium phosphate salt
Using 762SF, the same operation as in Example 1 was repeated, except that CaCO330 (l) was used, and 927 g of product was obtained.
I got it.

化学分析およびX線回折解析の結果、この製品も、Ca
/Pモル比1.51を有し、かつ第三リン酸カルシウム
の結晶構造の典型的な回折図形を有する化学m論的組成
の第三リン酸カルシウムであることが確認された。
As a result of chemical analysis and X-ray diffraction analysis, this product also contains Ca.
/P molar ratio of 1.51 and a diffraction pattern typical of the crystal structure of tricalcium phosphate, which was confirmed to be a stoichiometric composition of tricalcium phosphate.

以  上that's all

Claims (4)

【特許請求の範囲】[Claims] (1)水に不溶性のリン酸カルシウム塩を水中に懸濁さ
せ、懸濁液に水に不溶性であるCaCO_3を添加し、
懸濁液を撹拌下に加熱してリン酸カルシウム塩にCaC
O_3を反応させることを特徴とする第三リン酸カルシ
ウムの製造方法。
(1) Suspending a water-insoluble calcium phosphate salt in water, adding water-insoluble CaCO_3 to the suspension,
The suspension is heated under stirring to convert CaC into calcium phosphate salt.
A method for producing tribasic calcium phosphate, which comprises reacting O_3.
(2)水に不溶性のリン酸カルシウム塩がCaHPO_
4・2H_2O、CaHPO_4、Ca_2P_2O_
7およびCa_8H_2(PO_4)_6・5H_2O
よりなる群から選ばれた1または2以上の化合物である
特許請求の範囲第1項記載の方法。
(2) Water-insoluble calcium phosphate salt is CaHPO_
4・2H_2O, CaHPO_4, Ca_2P_2O_
7 and Ca_8H_2(PO_4)_6・5H_2O
The method according to claim 1, wherein the compound is one or more compounds selected from the group consisting of:
(3)リン酸カルシウム塩とCaCO_3の割合をこれ
らの混合物のCa/Pモル比が約1.50になるように
設定する特許請求の範囲第1または2項記載の方法。
(3) The method according to claim 1 or 2, wherein the ratio of calcium phosphate salt and CaCO_3 is set so that the Ca/P molar ratio of the mixture thereof is about 1.50.
(4)加熱温度が50〜100℃好ましくは80〜10
0℃である特許請求の範囲第1、2または3項記載の方
法。
(4) Heating temperature is 50-100℃, preferably 80-10℃
The method according to claim 1, 2 or 3, wherein the temperature is 0°C.
JP6782386A 1986-03-25 1986-03-25 Production of tribasic calcium phosphate Granted JPS62223011A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP6782386A JPS62223011A (en) 1986-03-25 1986-03-25 Production of tribasic calcium phosphate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP6782386A JPS62223011A (en) 1986-03-25 1986-03-25 Production of tribasic calcium phosphate

Publications (2)

Publication Number Publication Date
JPS62223011A true JPS62223011A (en) 1987-10-01
JPH0463805B2 JPH0463805B2 (en) 1992-10-13

Family

ID=13356047

Family Applications (1)

Application Number Title Priority Date Filing Date
JP6782386A Granted JPS62223011A (en) 1986-03-25 1986-03-25 Production of tribasic calcium phosphate

Country Status (1)

Country Link
JP (1) JPS62223011A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008501643A (en) * 2004-05-06 2008-01-24 イノフォス インコーポレーテッド Novel hydroxyapatite calcium phosphate, its preparation and use

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6287406A (en) * 1985-10-11 1987-04-21 Agency Of Ind Science & Technol Production of beta-tricalcium phosphate

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6287406A (en) * 1985-10-11 1987-04-21 Agency Of Ind Science & Technol Production of beta-tricalcium phosphate

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008501643A (en) * 2004-05-06 2008-01-24 イノフォス インコーポレーテッド Novel hydroxyapatite calcium phosphate, its preparation and use

Also Published As

Publication number Publication date
JPH0463805B2 (en) 1992-10-13

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