Production of hydrochar from the hydrothermal carbonisation of food waste feedstock for use as an adsorbent in removal of heavy metals from water

IF 3.5 4区 工程技术 Q3 ENERGY & FUELS
Danai Pasipanodya, Naadhira Seedat, Bilal Patel, Rishen Roopchund
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Abstract

In this research, discarded butternut peels were converted into hydrochar products through hydrothermal carbonisation (HTC), with adjustments made to the temperature (ranging from 180 to 260℃) and residence time (spanning 45–180 min). The findings indicated that both the temperature and time of carbonisation significantly influenced the yield of hydrochar (HC), as well as its physiochemical and structural properties. Higher temperatures and prolonged residence time led to decreased yield, elevated fixed carbon content and an increased fuel ratio. Furthermore, raising the process conditions increased HHV and reduced the oxygen-containing functional groups. The HC yield dropped from 28.75 to 17.58% with increased carbonisation temperature and time. The findings of this study also suggest that modified hydrochar is a promising material for removing heavy metals from wastewater. It is a relatively low-cost and abundant material that can be produced from various biomass feedstocks, including food waste. In addition, it is a sustainable and environmentally friendly option for wastewater treatment. Hydrochar-based systems offer several advantages over traditional methods of heavy metal removal, such as chemical precipitation and ion exchange. The unique physicochemical characteristics of hydrochar, including its porous structure and oxygen-rich functional groups, offer a high surface area and more binding sites for heavy metal ions. By changing the physicochemical properties of hydrochar with chemicals like phosphoric acid, it is possible to increase its adsorption capacity. The Freundlich isotherm was the best fit for the adsorption data for all three metal ions (Pb2+, Cu2+ and Cd2+), indicating that the adsorption process is multilayer and heterogeneous.

Abstract Image

利用食物垃圾原料的水热碳化生产水炭,将其用作去除水中重金属的吸附剂
本研究通过水热碳化(HTC)将废弃的山竹皮转化为水炭产品,并对温度(180 至 260℃)和停留时间(45 至 180 分钟)进行了调整。研究结果表明,炭化温度和时间对水炭产率及其理化和结构特性都有显著影响。较高的温度和较长的停留时间会导致产率下降、固定碳含量升高和燃料比增加。此外,提高工艺条件可增加 HHV 并减少含氧官能团。随着碳化温度和时间的增加,碳氢化合物产率从 28.75% 降至 17.58%。本研究的结果还表明,改性水煤炭是一种很有前景的去除废水中重金属的材料。它是一种成本相对较低、资源丰富的材料,可从包括食物垃圾在内的各种生物质原料中生产。此外,它还是一种可持续的环保型废水处理材料。与化学沉淀和离子交换等传统重金属去除方法相比,基于水碳的系统具有多种优势。水碳具有独特的物理化学特性,包括多孔结构和富氧官能团,可为重金属离子提供较高的表面积和更多的结合位点。通过使用磷酸等化学物质改变水炭的物理化学特性,可以提高其吸附能力。Freundlich 等温线是所有三种金属离子(Pb2+、Cu2+ 和 Cd2+)吸附数据的最佳拟合,表明吸附过程是多层和异质的。
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来源期刊
Biomass Conversion and Biorefinery
Biomass Conversion and Biorefinery Energy-Renewable Energy, Sustainability and the Environment
CiteScore
7.00
自引率
15.00%
发文量
1358
期刊介绍: Biomass Conversion and Biorefinery presents articles and information on research, development and applications in thermo-chemical conversion; physico-chemical conversion and bio-chemical conversion, including all necessary steps for the provision and preparation of the biomass as well as all possible downstream processing steps for the environmentally sound and economically viable provision of energy and chemical products.
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