Potential Application Performance of Hydrochar from Kitchen Waste: Effects of Salt, Oil, Moisture, and pH

Author:

Su Xuesong1,He Jizu1,Khan Muhammad Amjad1,Chang Kenlin2,Liu Yin1,Guo Genmao1,Li Xiaohui3,Jin Fangming1,Kuang Meijuan4,Gouda Shaban5ORCID,Huang Qing1

Affiliation:

1. School of Ecology & Environment, Hainan University, Haikou 570228, China

2. Institute of Environmental Engineering, Department of Public Health, National Sun Yat-Sen University, Kaohsiung 804, Taiwan

3. Hainan Inspection and Detection Center for Modern Agriculture, Haikou 570100, China

4. Hainan Pujin Environmental Engineeering, Haikou 570100, China

5. Agricultural and Biosystems Engineering Department, Faculty of Agriculture, Benha University, Toukh 13736, Egypt

Abstract

The surge in kitchen waste production is causing food-borne disease epidemics and is a public health threat worldwide. Additionally, the effectiveness of conventional treatment approaches may be hampered by KW’s high moisture, salt, and oil content. Hydrothermal carbonization (HTC) is a promising new technology to convert waste biomass into environmentally beneficial derivatives. This study used simulated KW to determine the efficacy of hydrothermal derivatives (hydrochar) with different salt and oil content, pH value, and solid-liquid ratio for the removal of cadmium (Cd) from water and identify their high heating value (HHV). The findings revealed that the kitchen waste hydrochar (KWHC) yield decreased with increasing oil content. When the water content in the hydrothermal system increased by 90%, the yield of KWHC decreased by 65.85%. The adsorption capacity of KWHC remained stable at different salinities. The KWHC produced in the acidic environment increases the removal efficiency of KWHC for Cd. The raw material was effectively transformed into a maximum HHV (30.01 MJ/kg). HTC is an effective and secure method for the resource utilization of KW based on the adsorption capacity and combustion characteristic indices of KWHC.

Funder

Hainan Provincial Natural Science Foundation of China

Hainan Province Science and Technology Special Fund

Education Department of Hainan Province

National Nature Science Foundation of China

Research Initiation Fund of Hainan University

Academician He Hong’s team Innovation Platform for Academicians of Hainan Province

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

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