Matches in SemOpenAlex for { <https://semopenalex.org/work/W2912689994> ?p ?o ?g. }
- W2912689994 endingPage "177" @default.
- W2912689994 startingPage "169" @default.
- W2912689994 abstract "Compared to traditional anaerobic digestion (AD), high solid anaerobic digestion (HSAD) had the advantages of small digester, low heating energy and less digestate. However, the methane production was poor. In our previous study, thermal treatment (70 ± 1 °C, 3 days) without any dilution could satisfactorily enhance the methane production rate of HSAD by up to 39.5%. However, effects of solid content on HSAD after thermal treatment were not yet studied. In this study, HSAD was conducted at 11.7-17.6% solid content, and the control experiment was conducted at low solid content (4.4% solid content). Results showed that HSAD's methane production rate was the highest at 11.7% solid content (158 mL CH4/g VS), and could reach up to 89.2% of that at 4.4% solid content. The utilization of organics was revealed by kinetics analysis that the readily biodegradable organics could be utilized at increasing solid content with decreasing hydrolysis rate. Furthermore, it was notable that methylotrophic methanogens predominated in HSAD with the abundance of 82.6%. This was quite unique from the general belief that AD system was usually dominated by acetoclastic or hydrogenotrophic methanogenic pathways. In this study, the microbial community structure of HSAD after thermal treatment was firstly studied, its unique specific methanogenic pathways was firstly revealed." @default.
- W2912689994 created "2019-02-21" @default.
- W2912689994 creator A5018731801 @default.
- W2912689994 creator A5040920775 @default.
- W2912689994 creator A5055061563 @default.
- W2912689994 creator A5074398799 @default.
- W2912689994 creator A5085896575 @default.
- W2912689994 creator A5089244317 @default.
- W2912689994 date "2019-04-01" @default.
- W2912689994 modified "2023-10-12" @default.
- W2912689994 title "Novel insight into high solid anaerobic digestion of swine manure after thermal treatment: Kinetics and microbial community properties" @default.
- W2912689994 cites W1567978698 @default.
- W2912689994 cites W1687634771 @default.
- W2912689994 cites W1828249707 @default.
- W2912689994 cites W1859870252 @default.
- W2912689994 cites W1972294938 @default.
- W2912689994 cites W1975069249 @default.
- W2912689994 cites W1984079405 @default.
- W2912689994 cites W1991793984 @default.
- W2912689994 cites W1995908641 @default.
- W2912689994 cites W1995989897 @default.
- W2912689994 cites W1997517487 @default.
- W2912689994 cites W2002661085 @default.
- W2912689994 cites W2005519799 @default.
- W2912689994 cites W2007299208 @default.
- W2912689994 cites W2046858106 @default.
- W2912689994 cites W2048253358 @default.
- W2912689994 cites W2053555532 @default.
- W2912689994 cites W2055422824 @default.
- W2912689994 cites W2071125284 @default.
- W2912689994 cites W2074954360 @default.
- W2912689994 cites W2076377858 @default.
- W2912689994 cites W2076631370 @default.
- W2912689994 cites W2078664052 @default.
- W2912689994 cites W2092844266 @default.
- W2912689994 cites W2138525754 @default.
- W2912689994 cites W2145077722 @default.
- W2912689994 cites W2187250940 @default.
- W2912689994 cites W2193807834 @default.
- W2912689994 cites W2217989892 @default.
- W2912689994 cites W2319980192 @default.
- W2912689994 cites W2336191286 @default.
- W2912689994 cites W2402883717 @default.
- W2912689994 cites W2407073098 @default.
- W2912689994 cites W2413739683 @default.
- W2912689994 cites W2527169353 @default.
- W2912689994 cites W2546769414 @default.
- W2912689994 cites W2564327823 @default.
- W2912689994 cites W2566422455 @default.
- W2912689994 cites W2593605957 @default.
- W2912689994 cites W2605275306 @default.
- W2912689994 cites W2651876289 @default.
- W2912689994 cites W2738157533 @default.
- W2912689994 cites W2743159460 @default.
- W2912689994 cites W2752879143 @default.
- W2912689994 cites W2754344951 @default.
- W2912689994 cites W2769187693 @default.
- W2912689994 cites W2774272671 @default.
- W2912689994 cites W2776101727 @default.
- W2912689994 cites W2780215904 @default.
- W2912689994 cites W2804681628 @default.
- W2912689994 cites W2805008703 @default.
- W2912689994 cites W2807497513 @default.
- W2912689994 cites W2811431896 @default.
- W2912689994 cites W2890302621 @default.
- W2912689994 cites W2901142219 @default.
- W2912689994 cites W2902407238 @default.
- W2912689994 cites W4233264777 @default.
- W2912689994 doi "https://doi.org/10.1016/j.jenvman.2019.01.047" @default.
- W2912689994 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30682669" @default.
- W2912689994 hasPublicationYear "2019" @default.
- W2912689994 type Work @default.
- W2912689994 sameAs 2912689994 @default.
- W2912689994 citedByCount "17" @default.
- W2912689994 countsByYear W29126899942019 @default.
- W2912689994 countsByYear W29126899942020 @default.
- W2912689994 countsByYear W29126899942021 @default.
- W2912689994 countsByYear W29126899942022 @default.
- W2912689994 countsByYear W29126899942023 @default.
- W2912689994 crossrefType "journal-article" @default.
- W2912689994 hasAuthorship W2912689994A5018731801 @default.
- W2912689994 hasAuthorship W2912689994A5040920775 @default.
- W2912689994 hasAuthorship W2912689994A5055061563 @default.
- W2912689994 hasAuthorship W2912689994A5074398799 @default.
- W2912689994 hasAuthorship W2912689994A5085896575 @default.
- W2912689994 hasAuthorship W2912689994A5089244317 @default.
- W2912689994 hasConcept C107446159 @default.
- W2912689994 hasConcept C107872376 @default.
- W2912689994 hasConcept C127413603 @default.
- W2912689994 hasConcept C178790620 @default.
- W2912689994 hasConcept C185592680 @default.
- W2912689994 hasConcept C2778589620 @default.
- W2912689994 hasConcept C2778926930 @default.
- W2912689994 hasConcept C2781357212 @default.
- W2912689994 hasConcept C31903555 @default.
- W2912689994 hasConcept C38304854 @default.
- W2912689994 hasConcept C39432304 @default.
- W2912689994 hasConcept C43617362 @default.