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Biostimulation of anaerobic digestion using nanomaterials for increasing biogas production

机译:使用纳米材料进行厌氧消化的生物刺激,用于增加沼气生产

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摘要

Biomass energy, especially biogas production, is a renewable and sustainable form of energy. Biogas is becoming more important due to its environmentally-sound and energy-saving production technologies. The state-of-the-art focuses on the biostimulation of methanogens using nanomaterials which is a hot topic. Therefore, the objectives of this literature review are to introduce and define the uptake mechanism of nanoparticles (NPs) by methanogenic bacteria, review the enhancement of biogas and methane production using chemical additives such as trace elements and nanomaterials, discuss the biostimulating effects nanoparticles, review the anaerobic digestion of biomass, investigate the recommended concentrations of trace elements and nanoparticles in anaerobic digesters, present the role of some essential trace elements in various enzymes involved in anaerobic digestion, study the free metal mass transport and the metal adsorption to the microorganism surface as well as the metal transport into the microorganism and its biological response. It was found that the nanoparticles (NPs) biostimulate the bacterial cells which results in tremendously enhancing the bacterial activity and the kinetics of bacterial growth and cell division.
机译:生物质能量,尤其是沼气生产,是一种可再生和可持续的能量形式。由于其环保和节能生产技术,沼气正在变得越来越重要。最先进的专注于使用热门题的纳米材料的生物刺激。因此,该文献综述的目的是通过甲状腺细菌引入和定义纳米颗粒(NPS)的摄取机制,审查使用痕量元素和纳米材料等化学添加剂的增强沼气和甲烷生产,讨论纳米粒子的生物刺激效果,审查生物质的厌氧消化,研究了厌氧消化器中的推荐浓度和纳米颗粒中的痕量浓度,呈现了一些必需微量元素在厌氧消化中的各种酶中的作用,研究游离金属质量传输和金属吸附到微生物表面以及金属输送到微生物及其生物反应。发现纳米颗粒(NPS)消化细菌细胞,这导致巨大地增强细菌活性和细菌生长和细胞分裂的动力学。

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