Zhu X
University of Toronto, Toronto, Canada.
Mar Pollut Bull. 2015 Mar 15;92(1-2):69-72. doi: 10.1016/j.marpolbul.2014.12.054. Epub 2015 Feb 3.
The increasing presence of plastic pollution in marine ecosystems has become a major concern. In the environment, plastics break down into smaller and smaller pieces of microplastics. Methods of microplastic recovery are needed to reduce the dangers they can pose to a variety of organisms. An elutriation device was manufactured and optimized to achieve maximum microplastic recovery. The parameters flow rate and diameter of elutriation column were varied and their domain of variation was determined. A composite factorial experimental design was generated using MODDE 10.1 and was undergone. The optimal values of flow rate and column diameter were determined to be 385 L h(-1) and 5.06 cm respectively, under constraints, to achieve a maximum feasible microplastics recovery percentage of 50.2%. The elutriation process can be improved through further testing, and can be tested in the field to compare its efficiency to that of manual microplastics filtration.
海洋生态系统中塑料污染的日益严重已成为一个主要问题。在环境中,塑料会分解成越来越小的微塑料碎片。需要微塑料回收方法来减少它们对各种生物可能造成的危险。制造并优化了一种淘析装置,以实现最大程度的微塑料回收。改变了淘析柱的流速和直径参数,并确定了它们的变化范围。使用MODDE 10.1生成并进行了复合因子实验设计。在约束条件下,确定流速和柱直径的最佳值分别为385 L h(-1)和5.06 cm,以实现50.2%的最大可行微塑料回收百分比。淘析过程可通过进一步测试得到改进,并可在实地进行测试,以将其效率与手动微塑料过滤的效率进行比较。