Wasson E A, Nicholson J W
Laboratory of the Government Chemist, Teddington, UK.
J Dent. 1993 Apr;21(2):122-6. doi: 10.1016/0300-5712(93)90161-i.
The change in pH during setting has been studied for five different glass polyalkenoate (ionomer) cements and for two different zinc polycarboxylate cements using a flat-headed combination electrode on both the fresh cement and on a slurry of the set cement. The results show that the pH of the glass ionomers was slightly lower in the early stages of setting than was the pH of the zinc polycarboxylates and also that the pH of glass ionomers rises more slowly. For anhydrous cements (i.e. those formulated from dried polymer) pH was found to rise quicker than for hydrous cements (i.e. those prepared from aqueous solutions of polymer). Previous workers have assumed that anhydrous cements undergo slower rises in pH than hydrous ones. Our results clearly refute this assumption, and also suggest that the reported pulpal irritation associated with the use of anhydrous glass ionomers may be due to something other than low pH.
使用平头复合电极,对新鲜水泥以及凝固水泥的浆液,研究了五种不同的聚链烯酸玻璃(离聚物)水泥和两种不同的聚羧酸锌水泥在凝固过程中的pH变化。结果表明,在凝固初期,玻璃离聚物的pH略低于聚羧酸锌的pH,而且玻璃离聚物的pH上升得更慢。对于无水水泥(即由干燥聚合物配制的水泥),发现其pH上升速度比含水水泥(即由聚合物水溶液制备的水泥)更快。之前的研究人员曾认为无水水泥的pH上升速度比含水水泥慢。我们的结果清楚地反驳了这一假设,并且还表明,报告中与使用无水玻璃离聚物相关的牙髓刺激可能是由低pH以外的其他原因引起的。