内部超滤膜结合光催化技术去除 17α- 甲基睾酮激素的特性和性能评估。

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Water Science and Technology Pub Date : 2024-05-01 Epub Date: 2024-05-03 DOI:10.2166/wst.2024.144
Nicha Karnjanamit, Weerapong Bootluck, Chongdee Thammakhet-Buranachai, Woei Jye Lau, Panitan Jutaporn, Watsa Khongnakorn
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引用次数: 0

摘要

17α-甲基睾酮(MT)激素是一种人工合成的雄性类固醇激素,用于诱导尼罗罗非鱼转性以提高产量。本研究特别关注利用光催化膜反应器(PMR)去除 MT,该反应器采用内部聚偏二氟乙烯(PVDF)超滤膜,并用 1%的纳米材料(TiO2 或 α-Fe2O3)进行改性。内部膜的截留分子量(MWCO)在超滤范围内。在 UV95W 辐射下,PVDF/TiO2 和 PVDF/α-Fe2O3 膜的 PMR 分别在 140 分钟和 160 分钟达到了 100% 的 MT 去除率。而商用 NF03 膜对 MT 的去除率仅为 50%。相反,在没有光照射的情况下,所有膜对 MT 的去除率在 180 分钟后都保持不变,表现出较低的性能。TiO2 和 α-Fe2O3 的加入提高了膜的水通量和 MT 去除率。值得注意的是,催化活性受限于催化剂在膜表面的分布和浓度。水接触角与复合膜的水通量并不相关。MT 的降解与伪一阶动力学模型十分吻合。因此,与商用纳滤膜相比,内部超滤 PMR 具有更高的去除效率和更低的运行成本,这归功于其光催化活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization and performance evaluation of in-house ultrafiltration membrane coupled with photocatalysis for 17α-methyltestosterone hormone removal.

17α-methyltestosterone (MT) hormone is a synthetic androgenic steroid hormone utilized to induce Nile tilapia transitioning for enhanced production yield. This study specifically focuses on the removal of MT through the utilization of photocatalytic membrane reactor (PMR), which employs an in-house polyvinylidene fluoride (PVDF) ultrafiltration membrane modified with 1% nanomaterials (either TiO2 or α-Fe2O3). The molecular weight cut-off (MWCO) of the in-house membrane falls within the ultrafiltration range. Under UV95W radiation, the PMR with PVDF/TiO2 and PVDF/α-Fe2O3 membranes achieved 100% MT removal at 140 and 160 min, respectively. The MT removal by the commercial NF03 membrane was only at 50%. In contrast, without light irradiation, the MT removal by all the membranes remained unchanged after 180 min, exhibiting lower performance. The incorporation of TiO2 and α-Fe2O3 enhanced water flux and MT removal of the membrane. Notably, the catalytic activity was limited by the distribution and concentration of the catalyst at the membrane surface. The water contact angle did not correlate with the water flux for the composited membrane. The degradation of MT aligned well with Pseudo-first-order kinetic models. Thus, the in-house ultrafiltration PMR demonstrated superior removal efficiency and lower operational costs than the commercial nanofiltration membrane, attributable to its photocatalytic activities.

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来源期刊
Water Science and Technology
Water Science and Technology 环境科学-工程:环境
CiteScore
4.90
自引率
3.70%
发文量
366
审稿时长
4.4 months
期刊介绍: Water Science and Technology publishes peer-reviewed papers on all aspects of the science and technology of water and wastewater. Papers are selected by a rigorous peer review procedure with the aim of rapid and wide dissemination of research results, development and application of new techniques, and related managerial and policy issues. Scientists, engineers, consultants, managers and policy-makers will find this journal essential as a permanent record of progress of research activities and their practical applications.
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