Control of odorants in swine manure and food waste co-composting via zero-valent iron /H2O2 system

被引:7
作者
Chen, Xuanbing [1 ]
Sun, Pengyu [1 ]
Zhuang, Zixian [1 ]
Ahmed, Imtiaz [1 ]
Zhang, Lizhi [1 ]
Zhang, Bo [1 ,2 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Environm Sci & Engn, 800 Dongchuan Rd, Shanghai 200240, Peoples R China
[2] State Environm Protect Key Lab Environm Hlth Impac, Shanghai 200240, Peoples R China
关键词
Composting; Swine manure; Odor; Zero -valent iron; Fenton-like reaction; VOLATILE ORGANIC-COMPOUNDS; DIMETHYL DISULFIDE; OXIDATION; REMOVAL; SULFATE;
D O I
10.1016/j.wasman.2023.12.018
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Odors have posed challenges to the advancement of aerobic composting. This work aims to identify the primary components responsible for odors and assess the effectiveness and mechanisms of the zero-valent iron/H2O2 system controlling various odorants in aerobic composting. Swine manure and food waste were used as com-posting materials, with the addition of zero-valent iron and hydrogen peroxide to mitigate odor emissions. Re-sults revealed that odorants included ammonia, hydrogen sulfide, and 22 types of volatile organic compounds (VOCs), with ethyl acetate, heptane, and dimethyl disulfide being predominant. Among the odorants emitted, ammonia accounted for 75.43%, hydrogen sulfide for 0.09%, and identified VOCs for 24.48%. The ZVI/H2O2 system showed a significant reduction in ammonia and VOCs emission, with the reduction of 51% (ammonia) and 41.3% (VOCs) respectively, primarily observed during the thermophilic period. The occurrence of Fenton-like reactions and changes in key microbial populations were the main mechanisms accounting for odor con-trol. The occurrence of Fenton-like reaction was confirmed by X-ray photoelectron spectroscopy and reactive oxygen detection, showing the oxidation of zero-valent iron by H2O2 to higher valence elemental iron, and the simultaneous production of & sdot;OH. Microbial analysis indicated that an enrichment of specific microorganisms with Bacillus contributed to feammonx and Bacillaceae contributed to organic biodegradation. Redundancy analysis highlighted the role of key microbial species (Bacillaceae, Bacillus, and Ureibacillus) in effectively reducing the level of ammonia and volatile organic compounds. These novelty findings illustrated that the potential of this system is promising for controlling the emission of odorants and aerobic composting reinforcement.
引用
收藏
页码:390 / 399
页数:10
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