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利用废弃瓦楞纸板制备的3D碳气凝胶作为用于太阳能蒸汽产生的光热蓄热器。

3D carbon aerogel from waste corrugated cardboard as a photothermal reservoir for solar steam generation.

作者信息

Huo Hanxin, Ma Yuhui, Cheng Yu, Cao Junrui

机构信息

Technical Centre for Soil, Agriculture and Rural Ecology and Environment, Ministry of Ecology and Environment of the People's Republic of China, Beijing, 100012, China.

The Institute of Seawater Desalination and Multipurpose Utilization, Ministry of Natural Resources of the People's Republic of China, Tianjin, 300192, China.

出版信息

Environ Sci Pollut Res Int. 2022 Apr;29(16):23936-23948. doi: 10.1007/s11356-021-17659-0. Epub 2021 Nov 24.

Abstract

Three-dimensional carbon aerogel (CA800) was prepared from waste corrugated cardboard (WCC) by the procedure of slurrying, solvent replacement, drying, and carbonization in turn, and the product was explored as an all-in-one evaporator for solar steam generation without bulk water. Carbonization of the precursor was investigated using thermogravimetric analyzer coupled with Fourier transform infrared spectrometer. Results showed that CO, CO, furfural, and levoglucosan were released during pyrolysis of WCC within the range of 300 to 390 °C, while polymerization of newly formed char between 390 and 580 °C mainly resulted in the formation of CO and CO. Both pyrolysis and polymerization reactions can be described by diffusion-controlled mechanisms, and the activation energies were 155.62 and 11.17 kJ mol, respectively. CA800 possessed a BET surface area of 210 m g. Light can be effectively absorbed and converted into heat by CA800, and its surface temperature achieving 73 °C under 1 kW m irradiation. CA800 had outstanding wettability due to the presence of hydrophilic minerals in carbon matrix, and it was able to store as much as 15 times its own weight in water due to its abundant interconnected channels and hierarchical nanopores. Solar-driven water evaporation rate over CA800 achieved 1.72 kg m (normalized to projection area), which was nearly 6 times higher than the value achieved by the bare water system. The photothermal conversion efficiency was calculated to be 118 %, and the overestimated efficiency was caused by the environmental energy gained by the cold evaporation surface of CA800.

摘要

通过依次进行制浆、溶剂置换、干燥和碳化的步骤,由废瓦楞纸板(WCC)制备了三维碳气凝胶(CA800),并将该产物作为一种用于无大量水的太阳能蒸汽产生的一体化蒸发器进行了探索。使用热重分析仪与傅里叶变换红外光谱仪联用对前驱体的碳化过程进行了研究。结果表明,在300至390℃范围内,WCC热解过程中释放出CO、CO、糠醛和左旋葡聚糖,而在390至580℃之间新形成的焦炭聚合主要导致CO和CO的形成。热解和聚合反应均可用扩散控制机制来描述,其活化能分别为155.62和11.17 kJ/mol。CA800的比表面积为210 m²/g。CA800能够有效地吸收光并将其转化为热,在1 kW/m²的辐照下其表面温度可达73℃。由于碳基质中存在亲水性矿物质,CA800具有出色的润湿性,并且由于其丰富的相互连接的通道和分级纳米孔,它能够储存多达自身重量15倍的水。CA800上的太阳能驱动水蒸发速率达到1.72 kg/m²(归一化到投影面积),这几乎是裸水系统所达到的值的6倍。计算得出的光热转换效率为118%,而效率被高估是由CA800冷蒸发表面获得的环境能量所致。

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