Agricultural waste valorization: field application of rice straw-derived carboxymethyl cellulose for irrigation water reuse

Валиоризация сельскохозяйственных отходов: полевое применение карбоксиметилцеллюлозы из рисовой соломы для повторного использования орошающей воды
Sompit Tantavoranart, Werasak Raongjant, Vinita Khum-in, Kullaya Saricheewin
2025-11-09

Freundlich adsorption modelbio-adsorbentmanganese (Mn2+) removalpilot-scale multi-stage filtrationrice straw carboxymethyl cellulose
This study developed a sustainable bio-adsorbent derived from rice straw carboxymethyl cellulose (CMC) and evaluated its efficiency in improving canal water quality for agricultural reuse. The synthesized CMC exhibited high solubility with a degree of substitution of 0.67. Batch adsorption experiments identified optimal conditions for manganese (Mn²⁺) removal at pH 6, 2.0 g L⁻¹ dosage, and 10 min contact time, achieving 97.0% removal efficiency and an adsorption capacity of 10.54 mg g⁻¹. The adsorption process followed the Freundlich model (R² = 0.9501), indicating heterogeneous multilayer adsorption. To assess field applicability, a pilot-scale multi-stage filtration system - comprising sand, activated carbon, and CMC columns - was operated for 101 days at the Rangsit Prayurasak Canal. The system effectively reduced BOD₅ (85.4% ± 4.5%), Mn²⁺ (81.5% ± 3.6%), chloride (48.7% ± 3.68%), and salinity (46.3% ± 9.8%), producing treated water that met Thailand's Type III surface water standard for agricultural reuse. This work is the first to demonstrate the field-scale use of rice straw-derived CMC in a modular filtration system under actual canal conditions. The results highlight the dual benefits of agricultural waste utilization and practical water quality improvement, offering a technically feasible and low-cost solution for decentralized water treatment in agricultural communities.
1
A pilot-scale multi-stage filtration (sand, activated carbon, CMC) operated 101 days in Rangsit Prayurasak Canal effectively reduced BOD₅ by 85.4% ± 4.5%.
2
Batch adsorption at pH 6, 2.0 g L⁻¹ dosage, 10 min contact removed 97.0% of Mn²⁺ with adsorption capacity 10.54 mg g⁻¹.
3
Mn²⁺ adsorption followed the Freundlich model (R² = 0.9501), indicating heterogeneous multilayer adsorption.
4
Rice straw-derived carboxymethyl cellulose (CMC) with degree of substitution 0.67 was synthesized and is highly soluble.
5
The pilot system reduced Mn²⁺ by 81.5% ± 3.6%, chloride by 48.7% ± 3.68%, and salinity by 46.3% ± 9.8%, producing water meeting Thailand Type III surface water standard for agricultural reuse.
6
This is the first field-scale demonstration of rice straw-derived CMC in a modular filtration system, showing a technically feasible, low-cost solution for decentralized agricultural water treatment and valorization of agricultural waste.

Rice straw-derived carboxymethyl cellulose (CMC) used in a pilot-scale multi-stage filtration system for treating canal irrigation water

Effectiveness of the rice straw-derived CMC (within a multi-stage sand–activated carbon–CMC filtration system) in removing contaminants (Mn2+, BOD5, chloride, salinity) and improving canal water quality to meet agricultural reuse standards under field conditions

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2025-11-09
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Sompit Tantavoranart
Werasak Raongjant
Vinita Khum-in
Kullaya Saricheewin
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