Using organic fertilizer to mitigate organic-inorganic fouling in agricultural saline wastewater irrigation systems

被引:0
|
作者
Muhammad T. [1 ,2 ]
Jiang C. [2 ]
Liu Z. [1 ]
Manan I. [4 ]
Xiao Y. [1 ,3 ]
Li Y. [1 ,3 ]
机构
[1] College of Water Resources and Civil Engineering, China Agricultural University, Beijing
[2] College of Hydrology and Water Resources, Hohai University, Nanjing
[3] Engineering Research Center for Agricultural Water-Saving and Water Resources, Ministry of Education, Beijing
[4] Department of Botany, Sardar Bahadur Khan Women's University, Quetta
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
Emitter clogging; Fouling control; Irrigation water distribution system; Organic acid;
D O I
10.1016/j.chemosphere.2024.141373
中图分类号
学科分类号
摘要
Recycling saline wastewater for agricultural irrigation offer a promising solution to address both water scarcity and anthropogenic pollution. However, organic-inorganic fouling in saline wastewater irrigation systems (SWIS) poses significant technical and economic challenges. Traditional chemical biocides are currently insufficient for controlling composite organic-inorganic fouling and may pose environmental hazards. This study proposed a greener approach using organic acid (OA) fertilizers to alleviate organic-inorganic fouling in agricultural SWIS. The treatment performances were assessed employing four types of OA fertilizers (i.e., humic acid, alginic acid, nucleotide, and ammonia acid) and a negative control. Results showed that three types of OA, i.e., alginic acid, nucleotide, and ammonia acid, effectively reduced the total SWIS fouling content by 11.2%–57.4%, whereas humic acid exacerbated fouling by 11.2%–57.4%. Specifically, all types of OA significantly mitigated the content of inorganic fouling (precipitates and silicates) by 10.7%–42.3% by forming loosed and sparser structures. However, OA exhibited minimum effects on controlling silica fouling. Meanwhile, except the humic acid, other types of OA decreased the total content of organic fouling by 17.2%–39.5% by reducing the content of humic substances and building block fractions. In addition, the significant binary interactions of organic-inorganic fouling indicated the active role of calcium silica and biomineralization fouling. These findings provide insight into the development of appropriate and eco-friendly antifouling strategies for SWIS, with implications for recycling and reusing saline wastewater. © 2024 Elsevier Ltd
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