Usability of waste plastic pyrolysis liquid/oil as a flotation collector in wastewater treatment

IF 3.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Merve Kalem
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Abstract

Pyrolysis is an important thermal waste disposal method that is more environmentally friendly than the combustion process, and almost all of its products can be converted into economic value. Specifically, the pyrolysis oils obtained are evaluated in different areas, such as the production of next-generation fuels and the recovery of valuable materials. Wastewater released during marble processing should not be discharged into the sewer without treatment, in accordance with national and international legislation, due to the high concentration of colloidal substances it contains. In the treatment of these wastewaters, conventional chemical precipitation processes and high amounts of synthetic chemicals are commonly used. Another method that can be employed for treating these wastewaters is the chemical substance-assisted flotation process, where efficiency depends on the use of oil-based chemicals. In this study, the treatment of marble processing wastewater was carried out for the first time using the flotation process, with pyrolysis oils obtained from mixed plastic waste pyrolysis as the collector material. According to the treatment experiments, the flotation collector that showed the highest suspended solid (SS) and turbidity removal efficiency was the pyrolysis oil obtained at a pyrolysis temperature of 700 °C. The flotation treatment findings were modeled using experimental design, and it was also revealed that collector dosage, mixing speed and air flow rate significantly affected the removal efficiencies.

Abstract Image

废塑料热解液/油作为浮选捕收剂在废水处理中的应用
热解是一种重要的热废物处理方法,比燃烧过程更环保,其产物几乎全部可以转化为经济价值。具体来说,获得的热解油在不同领域进行了评估,例如下一代燃料的生产和有价值物质的回收。根据国家和国际立法,在大理石加工过程中排放的废水不应未经处理就排入下水道,因为它含有高浓度的胶体物质。在处理这些废水时,通常使用传统的化学沉淀法和大量的合成化学品。另一种可用于处理这些废水的方法是化学物质辅助浮选工艺,其效率取决于油基化学品的使用。本研究首次采用浮选工艺对大理石加工废水进行处理,以混合塑料废弃物热解所得的热解油为捕收剂。处理实验表明,在热解温度为700℃时得到的热解油是悬浮固体(SS)和浊度去除率最高的浮选捕收剂。采用实验设计对浮选处理结果进行了模拟,发现捕收剂用量、混合速度和空气流量对浮选去除率有显著影响。
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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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