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Accelerated degradation of cellulose acetate cigarette filters using controlled-release acid catalysis

机译:控释酸催化加速醋酸纤维素卷烟过滤嘴的降解

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摘要

It is estimated that 6.3 trillion cigarettes will be consumed worldwide in 2010. A significant percentage of the used filters will be discarded improperly into the environment. Of the filter components, the plasticized cellulose acetate fibers have the slowest degradation rate (up to years). A rate-limiting step is the hydrolysis of cellulose acetate polymer into cellulose and acetic acid, which is extremely slow under ambient conditions. The hydrolysis rate is accelerated using the controlled release of acid. This release is achieved using encapsulated weak organic acid(s) with benign sulfate/phosphate esters. Encapsulation creates a barrier between the catalyst(s) and the cellulose acetate fibers in the filter. This coating protects the cigarette filter's integrity and function until it is smoked and discarded. Once discarded, the filter's encapsulation is breached by environmental water (rain, dew, etc.), which triggers the release of catalyst and then initiates hydrolysis.
机译:据估计,2010年全球将消耗6.3万亿支卷烟。相当多的二手过滤嘴将被不当地丢弃到环境中。在过滤器组件中,增塑的醋酸纤维素纤维降解速度最慢(长达数年)。限速步骤是将乙酸纤维素聚合物水解为纤维素和乙酸,这在环境条件下极其缓慢。使用酸的控制释放可以加快水解速度。该释放通过使用包封的弱有机酸和良性硫酸盐/磷酸酯来实现。包封在过滤器中的催化剂和醋酸纤维素纤维之间形成屏障。该涂层保护香烟过滤嘴的完整性和功能,直到将其吸烟和丢弃。丢弃后,过滤器的封装会被环境水(雨水,露水等)破坏,这会触发催化剂的释放,然后引发水解。

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