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基于表观比重和浓度标准的浮塑反向混合夹具分离效率估算

Reverse hybrid jig separation efficiency estimation of floating plastics using apparent specific gravity and concentration criterion.

作者信息

Phengsaart Theerayut, Manositchaikul Chaiwat, Srichonphaisarn Palot, Juntarasakul Onchanok, Maneeintr Kreangkrai, Jeon Sanghee, Park Ilhwan, Tabelin Carlito Baltazar, Hiroyoshi Naoki, Ito Mayumi

机构信息

Department of Mining and Petroleum Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand.

Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan.

出版信息

Front Chem. 2022 Sep 28;10:1014441. doi: 10.3389/fchem.2022.1014441. eCollection 2022.

Abstract

We developed a technique called the reverse hybrid jig, an advanced physical separation technique that combines the principles of jig and flotation to separate floating plastics. This technique is a promising green technology that is more economical and environmentally friendly compared with the conventional flotation. Although the applicability of this technique to separate PP/PE have been reported, the index to illustrate the possibility of separation for the reverse hybrid jig is still not available. In this study, a reverse apparent concentration criterion ( ) is proposed to estimate reverse hybrid jig separation efficiency. This modified concentration criterion can be calculated using the specific gravity () of particle with attached bubbles called the apparent specific gravity ( ). To determine the volume of attached bubbles on plastic surfaces under water pulsation, a laser-assisted apparatus was used under various conditions, including plastic type, air flow rate, dosage, and type of wetting agent. The results of attached bubble volume measurements were used to calculate the and . The estimated values were then compared with the results of reverse hybrid jig separation. It was found that higher resulted in better separation efficiency. In addition, an empirical linear equation for estimating the reverse hybrid jig separation efficiency is proposed.

摘要

我们开发了一种称为反向混合跳汰机的技术,这是一种先进的物理分离技术,它结合了跳汰和浮选原理来分离漂浮塑料。该技术是一种很有前景的绿色技术,与传统浮选相比,它更经济且环保。尽管已经报道了该技术对分离PP/PE的适用性,但用于说明反向混合跳汰机分离可能性的指标仍然没有。在本研究中,提出了一种反向表观浓度准则( )来估计反向混合跳汰机的分离效率。这个修正后的浓度准则可以使用带有附着气泡的颗粒的比重( )来计算,该比重称为表观比重( )。为了确定在水脉动下塑料表面附着气泡的体积,在包括塑料类型、空气流速、用量和润湿剂类型等各种条件下使用了激光辅助装置。附着气泡体积测量的结果用于计算 和 。然后将估计值与反向混合跳汰机分离的结果进行比较。发现较高的 导致更好的分离效率。此外,还提出了一个用于估计反向混合跳汰机分离效率的经验线性方程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c221/9554246/ef1bf86bb225/fchem-10-1014441-g001.jpg

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