Phosphorus Fraction in Hydrochar from Co-Hydrothermal Carbonization of Swine Manure and Rice Straw: An Optimization Analysis Based on Response Surface Methodology

Author:

Su Xiaohua1,Zhang Tao1ORCID,Zhao Jingyang1,Mukherjee Santanu2,Alotaibi Nahaa M.3ORCID,Abou-Elwafa Salah F.4ORCID,Tran Huu-Tuan56,Bolan Nanthi S.78ORCID

Affiliation:

1. State Key Laboratory of Nutrient Use and Management, Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, Key Laboratory of Plant-Soil Interactions of Ministry of Education, College of Resources and Environmental Sciences, China Agricultural University, Beijing 100193, China

2. School of Agriculture Sciences, Shoolini University of Biotechnology and Management Sciences, Bajhol, PO Sultanpur, Solan 173229, Himachal Pradesh, India

3. Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 8448, Riyadh 11671, Saudi Arabia

4. Agronomy Department, Faculty of Agriculture, Assiut University, Assiut 71526, Egypt

5. Laboratory of Ecology and Environmental Management, Science and Technology Advanced Institute, Van Lang University, Ho Chi Minh City 70000, Vietnam

6. Faculty of Applied Technology, School of Technology, Van Lang University, Ho Chi Minh City 70000, Vietnam

7. School of Agriculture and Environment, The University of Western Australia, Perth, WA 6001, Australia

8. The UWA Institute of Agriculture, The University of Western Australia, Perth, WA 6001, Australia

Abstract

Livestock manure and crop residues are significant sources of phosphorus. However, the ineffectiveness of current processing technologies often leads to the suboptimal recovery of this phosphorus, causing considerable resource wastage and environmental pollution. Recently, global research has increasingly been focused on the resource recovery of organic waste materials using hydrothermal carbonization technology. This study investigated variations in phosphorus forms in the hydrochar produced from swine manure and rice straw, employing diverse hydrothermal carbonization conditions and applying the Box–Behnken response surface methodology and Hedley’s phosphorus fractionation method. The results indicated that inorganic phosphorus predominates in the hydrochar, with organic phosphorus comprising 5–30% of the total phosphorus. Furthermore, the study found that the available phosphorus content, as measured by NaHCO3 extraction, decreased as the reaction time and temperature of the hydrothermal carbonization process increased. The concentrations of H2O-P and NaHCO3-P fractions decreased with increasing reaction times and temperatures but increased with a higher swine manure-to-straw ratio. Conversely, the concentrations of NaOH-P and HCl-P fractions showed an increasing trend with rising reaction temperature, prolonging reaction time, andusing a high swine manure-to-straw ratio. Consequently, this study offers vital theoretical and practical insights into the resource utilization of livestock manure and crop straw, significantly contributing to the challenges of waste management and environmental sustainability in agriculture.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

MDPI AG

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