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Recognizing the challenges of anaerobic digestion: Critical steps toward improving biogas generation

机译:认识厌氧消化的挑战:改善沼气产生的关键步骤

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摘要

Anaerobic digestion (AD) is one of the most promising technologies that can break the complex organic substrate into biogas. However, biogas production from biomass waste and its utilization for energy applications are still challenging due to the complex physical and chemical properties of organic waste, which affect the metabolic pathways and methane content. Consequently, attentions have focused on opportunities for further improvement in biogas yield and quality. This review identified the technical challenges associated with AD and potential solutions for improving biogas production. The critical steps toward improving biogas generation were identified as balancing the waste composition; adjusting nutrient content using trace elements; and using direct interspecies electron transfer (DIET) promoting additives. Direct interspecies electron transfer (DIET) promoting additives such as activated carbon, biochar and phenazine have shown a considerable effect on biogas production. These additives facilitate the electron transfer via direct interspecies electron transfer and improve digestibility via adsorption potential. The last section of the review describes a case study of the potential of using biochar and neutral red (phenazine) additives in one of the commercial landfills in the North Island of New Zealand. The results of this case study indicate that application of "neutral red" in the landfill site can significantly improve biogas generation for a period of 70 years.
机译:厌氧消化(AD)是最有前途的技术之一,可以将复杂的有机底物分解为沼气。然而,由于有机废物的复杂物理和化学性质会影响代谢途径和甲烷含量,因此从生物质废物中产生沼气及其在能源应用中的利用仍面临挑战。因此,注意力集中在进一步提高沼气产量和质量的机会上。这次审查确定了与AD相关的技术挑战以及改善沼气产量的潜在解决方案。人们认为,改善沼气产生的关键步骤是平衡废物成分。使用微量元素调整营养成分;并使用直接种间电子转移(DIET)促进添加剂。直接种间电子转移(DIET)促进添加剂,例如活性炭,生物炭和吩嗪已显示出对沼气生产的显着影响。这些添加剂有助于通过直接种间电子转移进行电子转移,并通过吸附电位提高消化率。评论的最后一部分描述了一个案例研究,该案例研究了在新西兰北岛的一个商业垃圾填埋场中使用生物炭和中性红(吩嗪)添加剂的潜力。该案例研究的结果表明,在填埋场中使用“中性红”可以显着改善沼气的产生,持续70年。

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