Syngas biomethanation is a potent bio-conversion route, utilizing microorganisms to assimilate intermediate gases to produce methane. However, since methanogens have a long doubling time, the reactor works best at a low dilution rate; otherwise, the cells can be washed out during the continuous fermentation process. In this study, the performance of a practical reverse membrane bioreactor (RMBR) with high cell density for rapid syngas biomethanation as well as a co-substrate of syngas and organic substances was examined in a long-term fermentation process of 154 days and compared with the reactors of the free cells (FCBR). The RMBR reached maximum capacities of H2, CO, and CO2 conversion of 7.0, 15.2, and 4.0 mmol/Lreactor.day, respectively, at the organic loading rate of 3.40 gCOD/L.day. The highest methane production rate from the RMBR was 186.0 mL/Lreactor.day on the 147th day, compared to the highest rate in the FCBR, 106.3 mL/Lreactor.day, on the 58th day. The RMBR had the ability to maintain a high methanation capacity by retaining the microbial cells, which were at a high risk for cell wash out. Consequently, the system was able to convert more syngas simultaneously with the organic compounds into methane compared to the FCBR.
from #Medicine via ola Kala on Inoreader http://ift.tt/1RyV4MR
via IFTTT
Αρχειοθήκη ιστολογίου
-
►
2023
(138)
- ► Φεβρουαρίου (74)
- ► Ιανουαρίου (64)
-
►
2022
(849)
- ► Δεκεμβρίου (61)
- ► Σεπτεμβρίου (74)
- ► Φεβρουαρίου (65)
-
►
2021
(2936)
- ► Δεκεμβρίου (59)
- ► Σεπτεμβρίου (180)
- ► Φεβρουαρίου (325)
-
►
2020
(1624)
- ► Δεκεμβρίου (293)
- ► Σεπτεμβρίου (234)
- ► Φεβρουαρίου (28)
-
►
2019
(13362)
- ► Δεκεμβρίου (19)
- ► Σεπτεμβρίου (54)
- ► Φεβρουαρίου (5586)
- ► Ιανουαρίου (5696)
-
►
2018
(66471)
- ► Δεκεμβρίου (5242)
- ► Σεπτεμβρίου (5478)
- ► Φεβρουαρίου (4835)
- ► Ιανουαρίου (5592)
-
►
2017
(44259)
- ► Δεκεμβρίου (5110)
- ► Σεπτεμβρίου (5105)
-
▼
2016
(7467)
- ► Δεκεμβρίου (514)
- ► Σεπτεμβρίου (1038)
-
▼
Μαρτίου
(699)
-
▼
Μαρ 27
(21)
- Fermentation, Vol. 2, Pages 8: Syngas Biomethanati...
- Novel treatment of symptomatic pontine Virchow–Rob...
- Outcomes and prognostic factors of simple partial ...
- Why a new algorithm using high-sensitivity cardiac...
- Evaluation of an automated urinary iodine measurem...
- In Vitro Disassembly of Influenza A Virus Capsids ...
- A Neonatal Mouse Spinal Cord Compression Injury Model
- Current Status of Standardization of Traditional C...
- Dietary Flavonoid Hyperoside Induces Apoptosis of ...
- Expression of Migration-Related Genes in Human Col...
- The Prognostic Significance of Beta2 Microglobulin...
- Advances in Biotechnology for Sustainable Development
- Association between facility type during pediatric...
- Nao-Xue-Shu Oral Liquid Protects and Improves Seco...
- Defining Prolonged Length of Acute Care Stay for S...
- Quantitative determination of copper in a glass ma...
- Separation and concentration of natural products b...
- Dual-nanomaterial based electrode for voltammetric...
- Determination of tryptamine in foods using square ...
- A novel double-component MOAC honeycomb composite ...
- Multimorbidity: Epidemiology and Models of Care
-
▼
Μαρ 27
(21)
- ► Φεβρουαρίου (793)
Αναζήτηση αυτού του ιστολογίου
Κυριακή 27 Μαρτίου 2016
Fermentation, Vol. 2, Pages 8: Syngas Biomethanation in a Semi-Continuous Reverse Membrane Bioreactor (RMBR)
Εγγραφή σε:
Σχόλια ανάρτησης (Atom)
-
Αλέξανδρος Γ. Σφακιανάκης Medicine by Alexandros G. Sfakianakis,Anapafseos 5 Agios Nikolaos 72100 Crete Greece,00302841026182,0030693260717...
-
heory of COVID-19 pathogenesis Publication date: November 2020Source: Medical Hypotheses, Volume 144Author(s): Yuichiro J. Suzuki ScienceD...
-
https://ift.tt/2MQ8Ai8
Δεν υπάρχουν σχόλια:
Δημοσίευση σχολίου
Σημείωση: Μόνο ένα μέλος αυτού του ιστολογίου μπορεί να αναρτήσει σχόλιο.