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Application of biosurfactant tea saponin in flotation separation for ternary plastic mixtures: Statistical optimization and mechanism analysis

机译:生物表面活性剂茶皂素在浮选分离三元塑料混合物中的应用:统计优化和机理分析

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Plastics flotation is facilitated to the sustainable development and cleaner production of the industry. Biosurfactant tea saponin was first applied to a flotation process for ternary plastic mixtures so as to minimize the secondary pollution. Response surface methodology was utilized to optimize such process by considering variable interactions and multi -objects. Mechanism of wetting selectivity was clearly established with the assistance of interfacial free energy and characterization. Results showed that the tea saponin in cooperation with polyethylene glycol can be an eligible substitution of traditional reagents used in polyethylene, acrylonitrile-butadiene-styrene and thermoplastic rubber system. For multi objective optimization of purity priority, the solution was predicted as polyethylene glycol concentration of 8.43 mg/L, tea saponin concentration of 50.00 mg/L conditioning time of 7.36 min, air flow rate of 180.55 L/h and stirring intensity of 1179.72 rpm. The purity and recovery of polyethylene product could reach 98.31 and 95.18% in validation tests, respectively. For reverse optimization of recovery priority, the purity and recovery of polyethylene product were also satisfactory in validation tests with 90.36 and 99.36%, respectively. The essence of wetting selectivity is the hydrogen bond (O-H center dot center dot center dot pi) between specific plastics and tea saponin, providing a referential direction for the development of new targeted reagents. (C) 2019 Elsevier Ltd. All rights reserved.
机译:塑料浮选有利于该行业的可持续发展和清洁生产。首先将生物表面活性剂茶皂素用于三元塑料混合物的浮选工艺,以最大程度地减少二次污染。通过考虑变量交互作用和多对象,利用响应面方法优化了该过程。借助界面自由能和表征,明确建立了润湿选择性的机制。结果表明,茶皂素与聚乙二醇配合使用可以替代聚乙烯,丙烯腈-丁二烯-苯乙烯和热塑性橡胶体系中使用的传统试剂。为了实现纯度优先的多目标优化,预测溶液的聚乙二醇浓度为8.43 mg / L,茶皂素浓度为50.00 mg / L,调节时间为7.36分钟,空气流速为180.55 L / h,搅拌强度为1179.72 rpm。 。在验证试验中,聚乙烯产品的纯度和回收率分别达到98.31%和95.18%。为了逆向优化回收优先级,聚乙烯产品的纯度和回收率在验证测试中也令人满意,分别为90.36和99.36%。润湿选择性的实质是特定塑料和茶皂素之间的氢键(O-H中心点中心点中心点pi),这为开发新型靶向试剂提供了参考方向。 (C)2019 Elsevier Ltd.保留所有权利。

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