Composite high-temperature microbial inoculum and application thereof in plastic degradation
The invention discloses a composite high-temperature microbial inoculum and application thereof in plastic degradation. The composite high-temperature microbial inoculum contains thermophilic iron reducing bacteria and iron minerals. According to the composite high-temperature microbial inoculum, mi...
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Format | Patent |
Language | Chinese English |
Published |
17.09.2021
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Abstract | The invention discloses a composite high-temperature microbial inoculum and application thereof in plastic degradation. The composite high-temperature microbial inoculum contains thermophilic iron reducing bacteria and iron minerals. According to the composite high-temperature microbial inoculum, microorganisms can grow and breed by directly utilizing nutrient substances in organic solid wastes under the aerobic condition, Fe (II) of the iron minerals in the composite high-temperature microbial inoculum is oxidized into Fe (III), and hydroxyl radicals are generated, so that the surface hydrophobicity of a plastic material is destroyed, and oxidative degradation of micro-plastics in compost is promoted. Under an anoxic condition, Fe (III) is reduced into Fe (II) by the thermophilic iron reducing bacteria, therefore, by changing the dynamic change of the aerobic-anoxic region in the composting process, the continuous process of hydroxyl radicals by iron redox cycle in the compost can be promoted, and the effici |
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AbstractList | The invention discloses a composite high-temperature microbial inoculum and application thereof in plastic degradation. The composite high-temperature microbial inoculum contains thermophilic iron reducing bacteria and iron minerals. According to the composite high-temperature microbial inoculum, microorganisms can grow and breed by directly utilizing nutrient substances in organic solid wastes under the aerobic condition, Fe (II) of the iron minerals in the composite high-temperature microbial inoculum is oxidized into Fe (III), and hydroxyl radicals are generated, so that the surface hydrophobicity of a plastic material is destroyed, and oxidative degradation of micro-plastics in compost is promoted. Under an anoxic condition, Fe (III) is reduced into Fe (II) by the thermophilic iron reducing bacteria, therefore, by changing the dynamic change of the aerobic-anoxic region in the composting process, the continuous process of hydroxyl radicals by iron redox cycle in the compost can be promoted, and the effici |
Author | CHEN ZHI ZHOU SHUNGUI XING RUIZHI |
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DocumentTitleAlternate | 一种复合高温菌剂及其在塑料降解中的应用 |
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Snippet | The invention discloses a composite high-temperature microbial inoculum and application thereof in plastic degradation. The composite high-temperature... |
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Title | Composite high-temperature microbial inoculum and application thereof in plastic degradation |
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