Alassod Abeer, Tina Huseein, Islam Syed Rashedul, Huang Wanzhen, Xu Guangbiao
Textile Industries Mechanical Engineering and Techniques Department, Faculty of Mechanical and Electrical Engineering, Damascus University, Damascus, Syria.
College of Textiles, Donghua University, Shanghai, People's Republic of China.
Environ Technol. 2021 Jul 19:1-16. doi: 10.1080/09593330.2021.1937332.
This work was to determine the impact of pore size and thickness of sorbents besides the influence of oil properties on the performance of sorbents used as an interceptor barrier for oils in Static and dynamic water experiments. polypropylene needle punch sorbents were used. SEM test showed the porous structure of sorbents. Oil sorption test investigated that with sorbents had same thickness N1 absorbed oil 8.89 g/g of soybean oil and 7.15 g/g of motor oil. Meanwhile, sorbents with the same pore size, N6 absorbed oil 6.11 g/g of soybean oil and 5.13 g/g of motor oil. All sorbents showed a retention rate of over 75% after 24 h of dripping. Dynamic oil spreading revealed that smaller pore size and higher thickness exhibited higher height wicking. The static performance experiment showed motor oil and soybean oil started to leak at 38 and 32 min for N1, then prolonged with reducing pore size with intercepting efficiency around 70% after 600 min for motor oil and 540 min for soybean oil. In comparison, The motor oil and soybean oil started to leak at 49 and 40 min for N4 and then prolonged with increased thickness with intercepting efficiency around 70% after 480 min for motor oil and 360 min for soybean oil. Under the dynamic experiment, oils spilled quicker with initial leakage of sorbents N3 and N6 at rate flow 55.65 ml/s for motor oil and soybean oil were (41 min, 36 min) and (50 min, 41 min) while intercepting efficiency was (99%, 98.40%) and (99.33%, 98.40%).
本研究旨在确定吸附剂的孔径和厚度对其性能的影响,以及油品性质对吸附剂在静态和动态水实验中作为油类拦截屏障性能的影响。使用了聚丙烯针刺吸附剂。扫描电子显微镜测试显示了吸附剂的多孔结构。吸油测试表明,在吸附剂厚度相同的情况下,N1对大豆油的吸油量为8.89 g/g,对机油的吸油量为7.15 g/g。同时,在孔径相同的吸附剂中,N6对大豆油的吸油量为6.11 g/g,对机油的吸油量为5.13 g/g。所有吸附剂在滴油24小时后的保留率均超过75%。动态油扩散实验表明,孔径越小、厚度越大,吸液高度越高。静态性能实验表明,对于N1,机油和大豆油分别在38分钟和32分钟开始泄漏,然后随着孔径减小而延长泄漏时间,600分钟后机油的拦截效率约为70%,540分钟后大豆油的拦截效率约为70%。相比之下,对于N4,机油和大豆油分别在49分钟和40分钟开始泄漏,然后随着厚度增加而延长泄漏时间,480分钟后机油的拦截效率约为70%,360分钟后大豆油的拦截效率约为70%。在动态实验中,N3和N6吸附剂初始泄漏时油泄漏更快,机油和大豆油的流速分别为55.65 ml/s,泄漏时间分别为(41分钟,36分钟)和(50分钟,41分钟),拦截效率分别为(99%,98.40%)和(99.33%,98.40%)。