探索聚合多异氰酸酯预聚物物质的结构/性质与健康和环境危害的关系-3。基于脂肪族二异氰酸酯的预聚物的水生接触和危害。

IF 1.7 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Toxicology and Industrial Health Pub Date : 2024-08-01 Epub Date: 2024-05-15 DOI:10.1177/07482337241253310
Robert J West, Rebecca Jarrom, Mitch Kelly, Glenn S Simon, Stephanie A Snyder
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引用次数: 0

摘要

研究了七种脂肪族二异氰酸酯基预聚物物质的水萃取性和急性水生毒性,以确定与之前研究的芳香族二异氰酸酯基预聚物相比,脂肪族异氰酸酯基团的反应性降低以及预期(脂肪族胺端)聚合物水解产物的电离电位升高是否会影响其水生行为。当负载率为 100 和 1,000 mg/L 时,只有辛醇/水分配系数对数值≤9 的物质在水中的萃取率超过 1%,而辛醇/水分配系数对数值为 2.2 的预聚物在水中的萃取率最高可达 66%。对于疏水性较强的预聚物物质(辛醇/水分配系数对数值在 18-37 之间),水萃取率可以忽略不计。对预聚物的水吸附馏分(WAF)进行了高分辨率质谱分析,结果表明出现了初级脂肪族胺端聚合物物种,其骨架和官能团等效重量与母体预聚物的骨架和官能团等效重量一致。对 WAF 中表面张力降低和悬浮胶束的测量进一步证实了这些表面活性阳离子聚合物种类是预聚物的水解产物。尽管具有这些特征,但水提取水解产物对大型蚤几乎无毒。所有受测物质的 48 小时 EL50 值均大于 1,000 毫克/升,只有一种例外,即 EL50 = 157 毫克/升。这项调查的结果支持将脂肪族二异氰酸酯基预聚物归类为一类水反应聚合物物质,它们具有可预测的水生接触性和一致的低潜在危害性,这与之前芳香族二异氰酸酯基预聚物的情况一致。
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Exploring structure/property relationships to health and environmental hazards of polymeric polyisocyanate prepolymer substances-3. Aquatic exposure and hazard of aliphatic diisocyanate-based prepolymers.

The water extractability and acute aquatic toxicity of seven aliphatic diisocyanate-based prepolymer substances were investigated to determine if lesser reactivity of the aliphatic isocyanate groups, as well as increased ionization potential of the expected (aliphatic amine-terminated) polymeric hydrolysis products, would influence their aquatic behavior compared to that of previously investigated aromatic diisocyanate-based prepolymers. At loading rates of 100 and 1,000 mg/L, only the substances having log Kow ≤9 exhibited more than 1% extractability in water, and a maximum of 66% water extractability was determined for a prepolymer having log Kow = 2.2. For the more hydrophobic prepolymer substances (log Kow values from 18-37), water extractability was negligible. High-resolution mass spectrometric analyses were performed on the water-accommodated fractions (WAF) of the prepolymers, which indicated the occurrence of primary aliphatic amine-terminated polymer species having backbones and functional group equivalent weights aligned to those of the parent prepolymers. Measurements of reduced surface tension and presence of suspended micelles in the WAFs further supported the occurrence of these surface-active cationic polymer species as hydrolysis products of the prepolymers. Despite these characteristics, the water-extractable hydrolysis products were practically non-toxic to Daphnia magna. All of the substances tested exhibited 48-h EL50 values of >1,000 mg/L, with one exception of EL50 = 157 mg/L. The results from this investigation support a grouping of the aliphatic diisocyanate-based prepolymers as a class of water-reactive polymer substances having predictable aquatic exposure and a uniformly low hazard potential, consistent with that previously demonstrated for the aromatic diisocyanate-based prepolymers.

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来源期刊
CiteScore
3.50
自引率
5.30%
发文量
72
审稿时长
4 months
期刊介绍: Toxicology & Industrial Health is a journal dedicated to reporting results of basic and applied toxicological research with direct application to industrial/occupational health. Such research includes the fields of genetic and cellular toxicology and risk assessment associated with hazardous wastes and groundwater.
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