Anaerobic Digestion Foresight: Using Models to Predict UASB Reactor Instability

(Autor)

Buch | Softcover
280 Seiten
2024
tredition (Verlag)
978-3-384-24178-8 (ISBN)
29,59 inkl. MwSt
UASB reactors, superstars of the wastewater treatment world, harness microbes to break down waste and produce biogas. But even superstars can be fickle. Unstable operation means less biogas and treatment woes. This study steps in with a "predictive model" for UASB reactors, offering a glimpse into the future of anaerobic digestion.Imagine a powerful computer model that mimics the intricate biological and physical processes within a UASB reactor. This model acts as a crystal ball, helping researchers foresee potential instability before it disrupts operations.The model's strength lies in its ability to consider a wide range of factors that can destabilize a UASB reactor. These factors can be as diverse as the amount of organic matter entering the system (organic loading rate), the specific type of organic material (substrate composition), and even temperature fluctuations.By customizing the model for real-world UASB reactor setups and operating conditions, researchers can pinpoint potential instability risks. Armed with this foresight, operators can proactively adjust operating parameters to keep the good microbes happy and functioning optimally. This translates to efficient wastewater treatment, maximized biogas production, and a more sustainable future.

Dr. Shah, a distinguished neurologist and healthcare economist, spearheads the "Neuro Care Revolution" initiative, merging clinical expertise with financial acumen to optimize patient outcomes and reduce healthcare costs. With extensive experience in neurology and healthcare management, Dr. Shah is committed to reshaping the landscape of neurological care.

Erscheint lt. Verlag 28.5.2024
Verlagsort mn
Sprache englisch
Maße 155 x 234 mm
Gewicht 475 g
Themenwelt Technik Elektrotechnik / Energietechnik
Schlagworte Anaerobic Digestion Modeling • Anaerobic Sludge Characteristics • Biogas Production • early warning systems • Granular Sludge Reactors • High-Rate Anaerobic Reactors • Machine Learning for AD Systems • Methanogenesis • Organic waste management • Process Stability Prediction • Upflow Anaerobic Sludge Blanket (UASB) • Wastewater Treatment
ISBN-10 3-384-24178-9 / 3384241789
ISBN-13 978-3-384-24178-8 / 9783384241788
Zustand Neuware
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