Claims
- 1. Compound of the formula: ##STR6## in which: n is an integer varying from about 1-8, inclusively;
- X and Y are independently selected from the group consisting of H, SO.sub.3 H, SO.sub.3 M, NO.sub.2, and CO.sub.2 H, CO.sub.2 M;
- where M represents a metal selected from the group consisting of alkali metals and alkaline earth metals,
- R.sub.1 and R.sub.2 are selected from the group consisting of alkyl and aralkyl hydrocarbon radicals and the benzamide moiety: ##STR7## where m is an integer varying from 1-8, inclusively and can be the same or different than n;
- Z is selected from the same group as X and Y;
- R is selected from the same group as R.sub.1 and R.sub.2.
- 2. A compound according to claim 1 wherein at least one of R.sub.1 and R.sub.2 are one or more benzamide moieties of the formula: ##STR8## which moieties total at least three in number.
- 3. A compound according to claim 1 wherein the benzamide moieties present comprise a plurality of at least 5.
- 4. A compound according to claim 2 wherein X, Y and Z are --CO.sub.2 H.
- 5. A compound according to claim 2 wherein X, Y and Z are --CO.sub.2 M.
- 6. A compound according to claim 4 wherein the hydrocarbon radicals contain from 1-10 carbon atoms and are the same.
- 7. A compound according to claim 5 wherein the hydrocarbon radicals contain from 1-10 carbon atoms and are the same.
- 8. A compound according to claim 4 wherein the plurality of benzamide moieties is sufficient to provide a molecular weight as high as about 40,000.
- 9. Process for the preparation of a compound of the formula: ##STR9## in which: n is an integer varying from about 1-8, inclusively;
- X and Y are independently selected from the group consisting of H, SO.sub.3 H, SO.sub.3 M, NO.sub.2, CO.sub.2 H and CO.sub.2 M;
- where M represents a metal selected from the group consisting of alkali metals and alkaline earth metals;
- R.sub.1 and R.sub.2 are selected from the group consisting of alkyl and aralkyl hydrocarbon radicals and the benzamide moiety: ##STR10## where m is an integer varying from 1-8, inclusively and can be the same or different than n;
- Z is selected from the same group as X and Y;
- R is selected from the same group as R.sub.1 and R.sub.2
- with the proviso that:
- said compound contains a total of at least three said benzamide moieties; which process comprises:
- selective, reductive alkylation of terminal nitrogens in a polyamine corresponding to the number of nitrogens in the compound above by reacting same with an aldehyde or ketone and hydrogenating the product of the foregoing reaction;
- benzamidating the polyalkylated polyamine by reacting same with a 2,3-dimethoxy or 2,3-dioxomethylene benzoyl chloride corresponding to the benzoyl, moiety in the formula above; and,
- demethylating the 2,3-dimethoxy benzoyl moieties of the polybenzamide so formed.
- 10. A process according to claim 9 where the reductive alkylation is carried out in a solvent selected from the group consisting of water, an alcohol or an aqueous solution, at a temperature of about 20.degree.-50.degree. C. and a pressure of about 1 to 4 atmospheres.
- 11. A method of selectively sequestering an actinide (IV) ion from a mammal comprising administering a chelating polybenzamide of the formula set forth in claim 1.
- 12. A method according to claim 11 wherein said actinide (IV) ion is Pu(IV) and said mammal is a human.
- 13. A method of selectively sequestering actinide (IV) ions from a liquid containing same comprising mixing a polybenzamide chelating agent as set forth in claim 1 with a fluid containing activide (IV) ions and recovering the so chelated actinide (IV) ions.
- 14. A process according to claim 13 wherein said actinide (IV)-ions-containing fluid is radioactive waste solution and said ions are Pu (IV).
BACKGROUND OF THE INVENTION
The invention described herein was made at Lawrence Berkeley Laboratory in the course of or under U.S. Department of Energy Contract No. W-7405-ENG-48 with the University of California.
US Referenced Citations (3)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1529150 |
Oct 1978 |
GBX |
Non-Patent Literature Citations (2)
Entry |
J. L. Corbin et al., Biochemistry 8, 757-762, (1969). |
G. H. Tait, Biochem. J. 146, 191, (1975). |