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将水葫芦绿色可持续零废物转化为优质磁性碳复合吸附剂和超级电容器电极。

Green and sustainable zero-waste conversion of water hyacinth () into superior magnetic carbon composite adsorbents and supercapacitor electrodes.

作者信息

Saning Amonrada, Herou Servann, Dechtrirat Decha, Ieosakulrat Chanoknan, Pakawatpanurut Pasit, Kaowphong Sulawan, Thanachayanont Chanchana, Titirici Maria-Magdalena, Chuenchom Laemthong

机构信息

Department of Chemistry and Center of Excellence for Innovation in Chemistry (PERCH-CIC), Faculty of Science, Prince of Songkla University Hat-Yai Songkhla 90112 Thailand

Department of Chemical Engineering, Imperial College London South Kensington Campus SW7 2AZ UK.

出版信息

RSC Adv. 2019 Aug 5;9(42):24248-24258. doi: 10.1039/c9ra03873f. eCollection 2019 Aug 2.

Abstract

Troublesome aquatic weed, water hyacinth () was converted into solid and liquid fractions green and energy-saving hydrothermal carbonization (HTC). The solid product, hydrochar, was employed as a precursor to prepare magnetic carbon materials by simple activation and magnetization using KOH and Fe ions, respectively. The obtained magnetic adsorbent possessed good magnetic properties and presented outstanding capacities to adsorb methylene blue (524.20 mg g), methyl orange (425.15 mg g) and tetracycline (294.24 mg g) with rapid adsorption kinetics even at high concentrations (up to 500 mg L), attributed to high specific surface area and mesopore porosity. Besides the solid hydrochar, the water-soluble liquid product was used to fabricate carbon-based supercapacitors through facile KOH activation with a considerably lower KOH amount in comparison to conventional activation. The supercapacitor electrode made from activated liquid product possessed an extremely high specific surface area of 2545 cm g and showed excellent specific capacitance (100 F g or 50 F cm at 1 A g) and good retention of capacitance (92% even after 10 000 cycles). This work demonstrated that both solid and liquid HTC fractions from this bio-waste can serve as effective sources to prepare functional carbon materials, making this approach a sustainable zero-waste biomass conversion process.

摘要

令人头疼的水生杂草凤眼莲()通过绿色节能的水热碳化(HTC)转化为固体和液体部分。固体产物水炭被用作前驱体,分别通过使用KOH和铁离子进行简单的活化和磁化来制备磁性碳材料。所获得的磁性吸附剂具有良好的磁性,并且即使在高浓度(高达500 mg/L)下也表现出快速的吸附动力学,对亚甲基蓝(524.20 mg/g)、甲基橙(425.15 mg/g)和四环素(294.24 mg/g)具有出色的吸附能力,这归因于其高比表面积和中孔孔隙率。除了固体水炭外,水溶性液体产物通过简便的KOH活化用于制造碳基超级电容器,与传统活化相比,所需的KOH量大大降低。由活化液体产物制成的超级电容器电极具有2545 cm²/g的极高比表面积,并表现出出色的比电容(在1 A/g时为100 F/g或50 F/cm²)和良好的电容保持率(即使在10000次循环后仍为92%)。这项工作表明,这种生物废物的固体和液体HTC部分都可以作为制备功能碳材料的有效来源,使这种方法成为一种可持续的零废物生物质转化过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb77/9069585/60e2beaefb1b/c9ra03873f-s1.jpg

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