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Optimization of biomethanization processes through trace metals supplementation

机译:通过补充微量金属优化生物甲烷化工艺

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摘要

1. AD substrates contain insuffient amount of trace elements Ni, Co, Se, Mo with Co and Se being most limiting. 2. Ni, Co, Se or Mo requirements depend on VFA concentration or loading rate and process temperature; supplementation based on VFAs concentration is most effective. 3. Mesophilic systems are more succeptible to TM deficiency than thermophilic systems; and trace elements increase the cataytic potential and substrate affinity in mesophilic system but only substrate affinity in thermophilic.
机译:1.AD衬底中微量元素Ni,Co,Se,Mo的含量不足,其中Co和Se的限制最大。 2. Ni,Co,Se或Mo的要求取决于VFA浓度或加载速率以及过程温度;基于VFA浓度的补充最为有效。 3.与嗜热系统相比,嗜温系统更容易发生TM缺乏症;微量元素可增加中温系统的催化电位和底物亲和力,而仅增加嗜热系统中的底物亲和力。

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  • 会议地点 Otranto(IT)
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    Hamburg University of Technology Bioconversion and Emission Control Institute for Wastewater Management and Water Protection;

    Hamburg University of Technology Bioconversion and Emission Control Institute for Wastewater Management and Water Protection;

    Hamburg University of Technology Bioconversion and Emission Control Institute for Wastewater Management and Water Protection;

    Hamburg University of Technology Bioconversion and Emission Control Institute for Wastewater Management and Water Protection;

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