Commercial biogas plants: Review on operational parameters and guide for performance optimization
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- 5. Conclusions
Fig. 3. Technical and management requirements for performance optimization of commercial biogas plants.
D. Wu et al. Fuel 303 (2021) 121282 12 4.2. Technical requirements In the short term, creating management innovation to maintain relatively constant operational parameters and ensuring that no major variations occur are the key considerations for operators aiming to sta- bilize the AD process and enhance biogas production. However, when operational parameters cannot be manipulated to improve performance, various auxiliary approaches can also be applied, such as the addition of nanoparticle additives, trace element supplementation and effluent recirculation ( Table 1 ). These approaches can potentially induce new metabolic pathways (such as Direct interspecies electron transfer (DIET)) to shorten the recommended safety threshold value of HRT or enhance the robustness of AD to process disturbances such as ammonia inhibition and over-acidification [25,97] . However, economic, techno- logical and ecological concerns such as high capital investment, microorganism wash-out, competition among the members of the complex and highly dynamic microbial population, and possible soil and water pollution, greatly complicate the translation of lab-scale achievements into commercial-scale applications [19,26] . Additional technical breakthroughs and appropriate environmental safety assess- ments are necessary before such approaches can be used in industrial applications. 5. Conclusions From the perspective of commercial operation of biogas plants, this paper presented a comprehensive review focusing on the relationships between commonly used operational parameters and AD process sta- bility and operational efficiency. Technical and management sugges- tions are also proposed to guide process optimization. The main results are as follows: • Process stability of AD is a major priority for efforts aimed at opti- mizing the overall performance of commercial biogas plants. Both process stability and process optimization largely depend on the manipulation of operational parameters. • Proper system configuration can maximize the utilization of process capacity and minimize internal energy consumption. • Inadequate or faulty operating procedures resulting in large de- viations in operational parameters are the primary cause of frequent process instability events and indirectly lead to suboptimal operation of commercial biogas plants. • Improved process monitoring and regular training can contribute to the achievement of management innovation for commercial biogas plants. • Various auxiliary approaches, such as the addition of nanoparticles and trace element supplementation, require additional technical improvements before industrial application. Download 1.11 Mb. Do'stlaringiz bilan baham: |
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