首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Converting Industrial Alkali Lignin to Biobased Functional Additives for Improving Fire Behavior and Smoke Suppression of Polybutylene Succinate
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Converting Industrial Alkali Lignin to Biobased Functional Additives for Improving Fire Behavior and Smoke Suppression of Polybutylene Succinate

机译:将工业碱木质素转化为生物基功能添加剂,以改善聚丁二酸丁二酯的燃烧性能和抑烟性

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The inherent flammability of biodegradable polybutylene succinate (PBS) extremely restricts the growing applications as packaging and construction materials; meanwhile, only a minority of industrial alkali lignin has been effectively utilized until now. To address these two challenges, herein we have converted alkali lignin into one biobased additive for PBS by chemically modified lignin with phosphorus, nitrogen, and the zinc(II) ions. Cone calorimetry results show that addition of 10 wt % modified lignin (PNZn-lignin) reduces the peak heat release rate and total heat release of PBS strikingly by 50 and 67%, respectively. Moreover, the total smoke production is decreased noticeably by 50%. Observations of char residues indicate that adding PNZn-lignin leads to a compact, intact, and thick char layer that is responsible for such enhanced properties. This work offers a new strategy for reducing the flammability and smoke release of PBS, promoting high-value-added utilization of industrial lignin, and designing biobased advanced polymeric materials.
机译:可生物降解的聚琥珀酸丁二酯(PBS)固有的易燃性极大地限制了其作为包装和建筑材料的日益增长的应用。同时,到目前为止,只有很少的工业碱木质素得到了有效利用。为了解决这两个挑战,本文中我们通过用磷,氮和锌(II)离子化学修饰的木质素将碱性木质素转化为PBS的一种生物基添加剂。锥量热法结果表明,添加10 wt%的改性木质素(PNZn-木质素)可使PBS的峰值放热速率和总放热分别显着降低50%和67%。此外,总烟雾产生量明显减少了50%。观察到的炭渣残渣表明,添加PNZn-木质素会导致致密,完整和厚实的炭层,这是这种增强性能的原因。这项工作为降低PBS的易燃性和烟雾释放,促进工业木质素的高附加值利用以及设计基于生物的先进聚合物材料提供了新的策略。

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