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Perspectives of surface plasmon resonance sensors for optimized biogas methanation

机译:用于优化沼气甲烷化的表面等离子体共振传感器的观点

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摘要

Biogas production is becoming significantly viable as an energy source for replacing fossil‐based fuels. The further development of the biogas production process could lead to significant improvements in its potential. Wastewater treatment currently accounts for 3% of the electrical energy load in developed countries, while it could be developed to provide a source of nitrogen and phosphorus, in addition to energy. The improvement of anaerobic digestion (AD) detection technologies is the cornerstone to reach higher methane productivities and develop fully automatized processes to decrease operational costs. New sensors are requested to automatically obtain a better interpretation of the complex and dynamical internal reactor environment. This will require detailed systematic detection in order to realize a near‐optimal production process. In this review, optical fiber‐based sensors will be discussed to assess their potential for use in AD. There is currently a disparity between the complexity of AD, and online detection. By improving the durability, sensitivity, and cost of dissolved H (as well as H S, acetic acid, ammonia, and methane) sensor technology, further understanding of the AD process may allow the prevention of process failure. The emergence of surface plasmon resonance (SPR) sensing with optical fibers coupled with the H ‐sensitive metal palladium, allows detection of dissolved hydrogen in liquid. By implementing these SPR sensors into AD, improvements to the biogas production process, even at small scales, may be achieved by guiding the process in the optimum direction, avoiding the collapse of the biological process. This review intends to assess the feasibility of online, cost‐effective, rapid, and efficient detection of dissolved H , as well as briefly assessing H S, acetic acid, ammonia, and methane in AD by SPR.
机译:沼气生产作为替代化石燃料的一种能源正变得越来越可行。沼气生产工艺的进一步发展可能会大大提高其潜力。废水处理目前占发达国家电能负荷的3%,而废水处理可以发展为提供除能源以外的氮和磷的来源。厌氧消化(AD)检测技术的改进是达到更高甲烷生产率并开发全自动过程以降低运营成本的基石。需要新的传感器来自动获得对复杂而动态的内部反应堆环境的更好的解释。这将需要进行详细的系统检测,以实现接近最佳的生产过程。在这篇综述中,将讨论基于光纤的传感器,以评估其在AD中的应用潜力。当前,AD的复杂性与在线检测之间存在差异。通过提高溶解氢(以及硫化氢,乙酸,氨气和甲烷)传感器技术的耐用性,灵敏度和成本,对AD过程的进一步了解可以防止过程失败。用光纤与H敏感金属钯耦合的表面等离振子共振(SPR)感应的出现,使得可以检测液体中溶解的氢。通过将这些SPR传感器安装到AD中,可以在最佳方向上引导过程,从而避免生物过程的崩溃,即使在小规模生产时,也可以实现对沼气生产过程的改进。这篇综述旨在评估在线,经济高效,快速而有效地检测溶解的H的可行性,并通过SPR简要评估AD中的H S,乙酸,氨和甲烷。

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