Use of Zinc‐Gallic Acid Metal–Organic Framework for Remediation of Wastewater and Improvement of Physiological and Antioxidant Activities in Triticum aestivum

废水 环境修复 环境科学 污染物 肥料 废水质量指标 污水处理 化学 制浆造纸工业 化学需氧量 工业废水处理 环境化学 污染 光合作用 生化需氧量 废物管理 污染 抗氧化剂 生物降解 水污染 生物量(生态学) 环境污染 生态毒理学 农业 磷酸盐
作者
Aneeza Ishfaq,M. A. Shahid,Tanvir Shahzad,Sabir Hussain,Muhammad Sohail Akram,Riffat Kamal,Humaira Rizwana,Faisal Mahmood,Muhammad İ̇rfan Ahamad,Nargis Bano
出处
期刊:Water Environment Research [Wiley]
卷期号:98 (4): e70360-e70360
标识
DOI:10.1002/wer.70360
摘要

Industrial wastewater has emerged as a significant environmental issue due to its adverse effect on plant growth, soil, and other living organisms. Crops near cities are frequently irrigated using wastewater under conditions of water scarcity. Wastewater needs to be treated effectively so that it can be reused to irrigate agricultural land. In recent years, attention has been given to biogenic metal-organic frameworks (MOFs) due to their unique properties and possible applications, like wastewater treatment, soil remediation, crop enhancement, fertilizer delivery, and biosensing. This study evaluated the potential of biogenic Zn-MOF for treating wastewater and the utilization of treated wastewater to enhance wheat growth, photosynthetic pigments, and physicochemical parameters. In the present study, biogenic Zn-MOF was synthesized and characterized via SEM, XRD, and FTIR techniques. The findings indicated that Zn-MOF reduced the quantity of pollutants in wastewater, and the removal efficiencies of 58% of chemical oxygen demand (COD), 65% of sulfate, and 50% of phosphate were observed. Results revealed that treated wastewater increased growth, enzymatic antioxidative activities, nonenzymatic antioxidants, and zinc uptake concentration by 51%, 41%, 36%, and 35%, respectively. In addition, the treated wastewater reduced oxidative stress by 33%. It is concluded that the unique features of metal-organic frameworks make them the best choice for both wastewater treatment and enhancing growth, photosynthetic pigment, and antioxidant attributes of wheat under wastewater stress conditions.
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