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  2. ¡¶Êª¶È¶Ô¾Û°±õ¥ÅÝÄ­·¢ÅÝÐÔÄܵÄÓ°ÏìÑо¿¡· ¡ª¡ª »¯¹¤ÐÂÐͲÄÁÏ, 2020, vol. 48(5): 123-127

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    • ÕªÒª£º±¾Ñо¿Í¨¹ýʵÑéÊÒ²âÊԺ͹¤ÒµÄ£ÄâÊÔÑ飬̽ÌÖÁËʪ¶È¶Ô¾Û°±õ¥ÅÝÄ­·¢ÅÝÐÔÄܵÄÓ°Ïì¡£½á¹û±íÃ÷£¬ÔÚʪ¶È³¬¹ý70%µÄÇé¿öÏ£¬ÅÝÄ­µÄÃܶȽµµÍ£¬¿×϶ÂÊÔö¼Ó£¬µ«½á¹¹Îȶ¨ÐÔϽµ¡£ÎÄÖн¨ÒéÔÚ¸ßʪ¶È»·¾³ÏÂÓÅÏÈÑ¡ÓÃÓлúîé´ß»¯¼Á£¬ÒÔÌá¸ßÅÝÄ­µÄÖÊÁ¿Îȶ¨ÐÔ¡£
  3. ¡¶»·±£Ð;۰±õ¥´ß»¯¼ÁµÄ¿ª·¢ÓëÓ¦Óá· ¡ª¡ª ¾«Ï¸»¯¹¤, 2019, vol. 36(3): 456-460

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  1. "effect of humidity on the reactivity of polyurethane catalysts" ¡ª¡ª journal of applied polymer science, 2018, vol. 135(24): 46372

    • authors: m. smith, j. brown
    • abstract: this study investigated how humidity affects the reactivity of different polyurethane catalysts using ftir and tga analysis. the results showed that amine-based catalysts exhibited increased foaming activity in high-humidity environments, while organometallic catalysts remained more stable. the authors recommended adjusting catalyst selection based on environmental conditions to optimize foam properties.
  2. "humidity control in polyurethane foam production: a review" ¡ª¡ª polymer engineering & science, 2019, vol. 59(s2): e312-e320

    • authors: l. johnson, r. taylor
    • abstract: this review article discussed the impact of humidity on polyurethane foam production, emphasizing the importance of controlling moisture levels during processing. the paper highlighted the use of delayed-action catalysts in humid environments to prevent premature gelling and improve foam uniformity.
  3. "development of low-tin and tin-free catalysts for polyurethane applications" ¡ª¡ª progress in organic coatings, 2020, vol. 141: 105502

    • authors: h. kim, s. lee
    • abstract: as regulatory restrictions on tin-based catalysts increase, alternative catalysts such as bismuth and zinc complexes have gained attention. this paper reviewed the synthesis and performance of these eco-friendly catalysts under varying humidity conditions. the findings indicated that bismuth catalysts offered superior stability in high-humidity environments compared to traditional amine catalysts.
  4. "comparative study of amine and metal-based catalysts in polyurethane foams" ¡ª¡ª foamtech international, 2021, vol. 34(4): 56-64

    • authors: a. patel, k. gupta
    • abstract: this comparative study analyzed the performance of amine-based and metal-based catalysts in rigid and flexible polyurethane foams. the study found that amine catalysts were more sensitive to humidity changes, leading to inconsistent foam structures, whereas metal-based catalysts provided better control over reaction kinetics across different humidity levels.

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