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高效清除水中溢油:探究一种可持续的抗溶胀水凝胶在快速拒水和吸油方面的有效性。

Efficient oil spill cleanup from water: Investigating the effectiveness of a sustainable anti-swelling hydrogel for rapid water repellency and oil absorption.

机构信息

Institute of Forensic Science & Criminology, Panjab University, Chandigarh, India.

Department of Chemistry, DAV College, Sector-10, Chandigarh, India.

出版信息

Chemosphere. 2024 Sep;364:143123. doi: 10.1016/j.chemosphere.2024.143123. Epub 2024 Aug 19.

Abstract

Considering the significant harm caused to aquatic ecosystems and marine life by oil spills and the discharge of oily wastewater, there is a pressing need to address this issue to protect our environment and prevent the wastage of valuable resources. We introduced a two-step approach to create an anti-swelling, water-repellent sorbent using a green polysaccharide called gum gellan, functionalized with Octadecyl trichlorosilane (OTS) through dip coating method. Natural gums like gellan have high absorption capability due to their large surface area. However, they are hydrophilic, which means they can only absorb water. This property makes them unsuitable for oil spill applications. To make gum gellan suitable for oil spill applications, we have modified it in this study. We have introduced a material called octadecyltrichlorosilane, which has low surface energy and hierarchical roughness. This modification changes the wettability of gellan from hydrophilic to hydrophobic/oleophilic, allowing it to absorb oil and repel water. The sorbent is analyzed using several techniques, such as FTIR, XRD, TGA, FE-SEM, BET, Raman, EDX, and H1-NMR. The hydrophobic sorbent obtained demonstrates low density, high surface area, and high porosity. These characteristics give it excellent floatability and immediate and exceptional selectivity for absorbing oil from water. Additionally, it does not absorb any detectable amount of water. The sorbent exhibited a water contact angle (WCA) of 140 ± 3 ° and an oil contact angle (OCA) of 0° for various oils and organic solvents. It has rapid oil absorption capacity of 3.72 g/g for diesel, and can be easily recovered after use. The BET analysis revealed that after the modification with OTS, the sorbent's total surface area increased from 0.579 m/g to 4.713 m/g. This indicates that the OTS modification greatly enhances the surface area and pore volume of the, thus improving its ability to absorb oil. This sorbent efficiently separates oil-in-water emulsions, both surfactant-stabilized and surfactant-free, achieving over 90% separation through gravity alone. Moreover, the sorbent can sustain its wettability even under harsh environmental conditions, including exposure to acids, alkalis, and salts. The absorption data predominantly aligned with the pseudo-2nd-order model. Thus, this sorbent provides a cost-effective alternative for efficiently absorbing and separating oil-water emulsions in households and industries.

摘要

考虑到溢油和含油废水排放对水生生态系统和海洋生物造成的重大危害,迫切需要解决这个问题,以保护环境,防止宝贵资源的浪费。我们采用两步法,使用绿色多糖卡拉胶,通过浸涂法用十八烷基三氯硅烷(OTS)功能化,制备了一种抗溶胀、拒水的吸附剂。像卡拉胶这样的天然胶由于其较大的表面积,具有很强的吸收能力。然而,它们是亲水性的,这意味着它们只能吸收水。这种性质使它们不适合用于溢油应用。为了使卡拉胶适用于溢油应用,我们在这项研究中对其进行了改性。我们引入了一种叫做十八烷基三氯硅烷的材料,它具有低表面能和分层粗糙度。这种改性将卡拉胶的润湿性从亲水变为疏水/亲油,使其能够吸收油并排斥水。通过傅里叶变换红外光谱(FTIR)、X 射线衍射(XRD)、热重分析(TGA)、场发射扫描电子显微镜(FE-SEM)、BET、拉曼光谱、能谱(EDX)和氢核磁共振(H1-NMR)等技术对吸附剂进行了分析。所得到的疏水吸附剂具有低密度、高表面积和高孔隙率。这些特性使它具有极好的漂浮能力,对水具有立即和特殊的选择性,能从水中吸收油。此外,它不吸收任何可检测到的水。该吸附剂对各种油和有机溶剂的水接触角(WCA)为 140±3°,油接触角(OCA)为 0°。它对柴油的快速吸油能力为 3.72g/g,使用后可以很容易地回收。BET 分析表明,经过 OTS 改性后,吸附剂的总表面积从 0.579m/g 增加到 4.713m/g。这表明 OTS 改性极大地提高了吸附剂的表面积和孔体积,从而提高了其吸油能力。该吸附剂能够有效地分离水包油乳液,包括表面活性剂稳定的和无表面活性剂的乳液,仅通过重力就能实现超过 90%的分离。此外,该吸附剂即使在恶劣的环境条件下,包括暴露于酸、碱和盐中,也能保持其润湿性。吸附数据主要符合伪二级模型。因此,这种吸附剂为家庭和工业中高效吸收和分离油水乳液提供了一种具有成本效益的替代方法。

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