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1.
Partially dicarboxylated alginic acids with degree of dicarboxylations from 13 to 61 mol% were prepared and their biodegradability, hydrolytic degradability, and builder performances in detergent formulations were measured. Also, the correlations between biodegradability and hydrolytic degradability were examined with respect to the degree of dicarboxylation. The biodegradability of dicarboxylated alginic acid sodium salt (DCAa), evaluated by biochemical oxygen demand with activated sludge, depended on the degree of dicarboxylation. DCAa containing more than 75 mol% remaining uronide residues in the polymer chain showed excellent biodegradation. Hydrolytic degradation of DCAa depended on the degree of dicarboxylation and the pH of the incubation media. After 30-day incubation at 30°C at pH 4–6, a significant molecular weight reduction by hydrolytic degradation was observed for highly dicarboxylated alginic acid. DCAa with a high degree of dicarboxylation showed excellent builder performance in detergent formulations based on the detergency and calcium sequestration capacity. 相似文献
2.
Novel malonate-type copolymers containing vinyl alcohol blocks as biodegradable segments and their builder performance in detergent formulations 总被引:1,自引:0,他引:1
Poly[(disodium methylene malonate)-co-(vinyl alcohol)] [P(DSMM-VA)] and poly[(disodium ethoxymethylene malonate)-co-(vinyl alcohol)] [P(DSEMM-VA)] containing a poly(vinyl alcohol) (PVA) block as a biodegradable segment were prepared and their biodegradability and functionality were evaluated and compared with those of the corresponding fumarate and maleate copolymers. It was found that the 1,1-dicarboxylate-type copolymers, P(DSMM-VA) and P(DSEMM-VA), showed better biodegradability than the corresponding 1,2-dicarboxylate-type copolymers, P(DSF-VA) and P(DSM-VA). This improved biodegradability of P(DSMM-VA) and P(DSEMM-VA) is probably attributable to their more expanded polymer chain in aqueous solution, which will be more accessible to the degrading enzymes. The minimum chain length of the PVA-block, which acts as a biodegradable segment in the polymer chain, is estimated to be 2–3 and 3–4 monomer units for P(DSMM-VA) and P(DSEMM-VA), respectively. On the other hand, the minimum PVA block is about 5 and 7 monomer units for the fumarate and maleate copolymers, respectively. It was confirmed that P(DSMM-VA) showed excellent builder performance compared to the corresponding fumarate copolymer.Paper presented at the Bio/Environmentally Degradable Polymer Society—Second National Meeting, August 19–21, 1993, Chicago, Illinois. 相似文献