用于纺织和制药废水高效去除污染物的新型生物炭注入膜。

IF 1.9 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Karan Gupta, Priyanka Katiyar, Ajay Kale, Kavita Khatana, Sanjeev Yadav
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引用次数: 0

摘要

本研究采用自旋包覆技术制备了生物炭注入聚合物混合基质,用于吸附废水样品中的某些染料和抗生素污染物。与传统的废水处理方法相比,这种方法具有潜在的经济性。注入MMMs中的吸附剂生物炭来自工业香料废料(SW)和制革厂废料(TW)在500°C下的热解,而不是昂贵的原始材料的热解。在对生物炭和膜样品进行了表征研究(近似分析、FESEM、BET、零电荷点和XRF)后,对刚果红(CR)、亚甲基蓝(MB)和酒黄(Tz)染料、甲硝唑(Mz)和盐酸克林霉素(CH)进行了吸附研究。发现SW生物炭对抗生素污染物没有亲和力,而TW生物炭对染料和抗生素均有吸附作用。膜过滤的吸附效率略低于单独使用生物炭的间歇吸附;然而,它提供了更快的处理和连续操作的优势。在优化研究中,溶液的初始浓度为50 ~ 150 mg/L, pH为4 ~ 10。在最佳浓度和pH条件下,CR、MB、Tz、Mz和CH的最大去除率分别为60%、83%、58%、47%和58%。此外,再生和再利用研究表明,膜可以通过简单的蒸馏水洗涤有效地再生,并可重复使用多达五个吸附循环。摘要:生物炭注入膜是利用香料废料和制革厂废料的自旋镀膜机生产的。当生物炭注入聚合物制备膜时,表面积增加。基于香料废料的膜只能去除亚甲基蓝和刚果红染料。制革废料基膜可以吸附亚甲蓝、刚果红、甲硝唑和克林霉素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Biochar-Infused Membranes for Efficient Pollutant Removal From Textile and Pharmaceutical Wastewater.

In this study, biochar infused polymeric mixed matrix are prepared by spin-coating technique for the adsorption of certain dye and antibiotic pollutants from wastewater samples. This method could potentially be economic in comparison to the classical methods for wastewater treatment. The adsorbent biochar infused in the MMMs is derived from pyrolysis of industrial spice waste (SW) and tannery waste (TW) at 500°C rather than pyrolysis of expensive virgin materials. After the characterization studies (proximate analysis, FESEM, BET, point of zero charge, and XRF) on the biochar and the membrane samples, the adsorption studies are carried out on Congo red (CR), methylene blue (MB) and tartrazine (Tz) dye, and metronidazole (Mz) and clindamycin hydrochloride (CH). It is found that SW biochar does not show any affinity towards antibiotics pollutant whereas TW biochar can adsorb dyes and antibiotics both. Membrane filtration exhibits slightly lower adsorption efficiency compared with batch adsorption using biochars alone; however, it offers faster processing and the advantage of continuous operation. For the optimization study, the initial concentration and pH of the solution were varied between 50-150 mg/L and pH 4-10, respectively. Maximum removal efficiencies of 60%, 83%, 58%, 47%, and 58% were achieved for CR, MB, Tz, Mz, and CH, respectively, at their optimized concentrations and pH conditions. Additionally, regeneration and reusability studies indicate that the membranes can be effectively regenerated by simple washing with distilled water and reused for up to five adsorption cycles. SUMMARY: Biochar infused membranes are produced using spin coater using spice waste and tannery waste. Surface area increases when biochar is infused with polymer to prepare membrane. Spice waste-based membranes show removal of methylene blue and Congo red dyes only. Tannery waste-based membranes can adsorb methylene blue, Congo red, metronidazole, and clindamycin.

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来源期刊
Water Environment Research
Water Environment Research 环境科学-工程:环境
CiteScore
6.30
自引率
0.00%
发文量
138
审稿时长
11 months
期刊介绍: Published since 1928, Water Environment Research (WER) is an international multidisciplinary water resource management journal for the dissemination of fundamental and applied research in all scientific and technical areas related to water quality and resource recovery. WER''s goal is to foster communication and interdisciplinary research between water sciences and related fields such as environmental toxicology, agriculture, public and occupational health, microbiology, and ecology. In addition to original research articles, short communications, case studies, reviews, and perspectives are encouraged.
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