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改性乌贼骨(无针乌贼)作为一种低成本、可持续的生物基吸附剂,有效修复水溶液中的硼。

Modified os sepiae of Sepiella inermis as a low cost, sustainable, bio-based adsorbent for the effective remediation of boron from aqueous solution.

机构信息

Center for Advanced Materials, Qatar University, P.O. Box 2713, Doha, Qatar.

Environmental Science Program, Department of Biological and Environmental Sciences, College of Arts and Sciences, Qatar University, P.O. Box: 2713, Doha, Qatar.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(47):71014-71032. doi: 10.1007/s11356-022-20578-3. Epub 2022 May 20.

Abstract

The occurrence of boron in low concentration is essential; however, a higher concentration of boron source in water has a toxic effect on humans as well as have retard effect on agricultural plant growth. Thus, the affordable and facile method to remediate water from higher boron concentrations is highly demanded. This report explores the ability of naturally occurring sustainable bio-waste os sepiae (cuttlefish bone, CFB) as an effective adsorbent for the removal of boron from water. Chemical activation of the os sepiae powder was examined to improve the efficiency of boron adsorption. A batch adsorption study for boron considering various parameters such as chemical modification of os sepiae, pH, initial boron concentration, and the temperature was scrutinized. Untreated (CFB), alkali-treated (CFB-D) and acid-treated (CFB-A) os sepiae powders were investigated and the adsorption capacities reached up to 53.8 ± 0.04 mg/g, 66.4 ± 0.02 mg/g and 69.8 ± 0.02 mg/g, respectively, at optimal pH 8 and 25 °C. Boron adsorption by CFB, CFB-D, and CFB-A were well fitted with the linear Freundlich adsorption isotherm model with a correlation coefficient of 99.4%, 99.8%, and 99.7% respectively. Thermodynamic parameters indicated that the adsorption of boron by CFB is an exothermic process and more feasible at a lower temperature around 25 °C. Moreover, detailed morphological and chemical characterization of the influence of adsorbed boron on adsorbents was conducted and discussed. The Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) analysis spectra confirms the involvement of various functional groups including amino, carbonate (CO), and hydroxyl groups on the adsorbent in the adsorption mechanisms for boron removal. The results indicate that CFB can be an excellent example for the recycling and reuse of biowaste for water remediation.

摘要

硼在低浓度下的存在是必需的;然而,水中较高浓度的硼源对人类具有毒性作用,并对农业植物的生长具有延缓作用。因此,需要一种经济实惠且简便的方法来修复高浓度硼的水。本报告探讨了天然存在的可持续生物废物乌贼骨(墨鱼骨,CFB)作为从水中去除硼的有效吸附剂的能力。研究了化学活化乌贼骨粉末以提高硼吸附效率。考察了硼的批处理吸附研究,考虑了各种参数,如乌贼骨的化学修饰、pH、初始硼浓度和温度。研究了未处理的(CFB)、碱处理的(CFB-D)和酸处理的(CFB-A)乌贼骨粉末,在最佳 pH 值 8 和 25°C 时,吸附容量分别达到 53.8±0.04mg/g、66.4±0.02mg/g 和 69.8±0.02mg/g。CFB、CFB-D 和 CFB-A 对硼的吸附均很好地符合线性 Freundlich 吸附等温线模型,相关系数分别为 99.4%、99.8%和 99.7%。热力学参数表明,CFB 对硼的吸附是一个放热过程,在 25°C 左右的较低温度下更可行。此外,还对吸附剂上吸附硼的影响进行了详细的形态和化学表征,并进行了讨论。傅里叶变换红外光谱(FTIR)和 X 射线光电子能谱(XPS)分析谱表明,吸附剂上涉及各种官能团,包括氨基、碳酸盐(CO)和羟基,参与了硼的吸附去除机制。结果表明,CFB 可以作为生物废物回收再利用的一个极好的例子,用于水的修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c15/9515050/7f4800dafe56/11356_2022_20578_Fig1_HTML.jpg

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