Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386496710> ?p ?o ?g. }
- W4386496710 endingPage "6494" @default.
- W4386496710 startingPage "6494" @default.
- W4386496710 abstract "Due to its high reactivity, the nano aluminum particle (n-Al) has attracted more attention in energetic materials but is easily oxidized during processing. In order to realize sewage sludge (SS) resource and n-Al coating, the organic matter was extracted from SS, using the deep eutectic solvent method due to its strong dissolving capacity, and then the organic matter was pretreated by ball milling, which was used as an interfacial layer between n-Al and fluoride. It was found that organic matter was successfully extracted from SS. The main organic matter is proteins. The ball milling method can effectively destroy the secondary structure of proteins to release more active functional groups. During the pretreatment, the Maillard reaction broke the proteins structure to form more active low molecular weight compounds. It was confirmed that n-Al can be coated by PBSP under mild conditions to form a uniform core-shell structure. PFOA can effectively coat the n-Al@PBSP to form n-Al@PBSP/PFOA, which can enhance the combustion of n-Al. The gas phase flame temperature can notably improve to 2892 K. The reaction mechanism between n-Al and coating was analyzed. The results could help SS treatment and provide new insights for n-Al coating and SS-based organic matter recovery and utilization." @default.
- W4386496710 created "2023-09-07" @default.
- W4386496710 creator A5011877804 @default.
- W4386496710 creator A5019204475 @default.
- W4386496710 creator A5021816307 @default.
- W4386496710 creator A5038017162 @default.
- W4386496710 creator A5044686939 @default.
- W4386496710 creator A5085523168 @default.
- W4386496710 creator A5090109818 @default.
- W4386496710 date "2023-09-07" @default.
- W4386496710 modified "2023-09-29" @default.
- W4386496710 title "The Effect of Organic Matter from Sewage Sludge as an Interfacial Layer on the Surface of Nano-Al and Fluoride" @default.
- W4386496710 cites W2013257613 @default.
- W4386496710 cites W2021322147 @default.
- W4386496710 cites W2051225816 @default.
- W4386496710 cites W2064992681 @default.
- W4386496710 cites W2072444358 @default.
- W4386496710 cites W2092858957 @default.
- W4386496710 cites W2132743735 @default.
- W4386496710 cites W2151223263 @default.
- W4386496710 cites W2163750320 @default.
- W4386496710 cites W2165588176 @default.
- W4386496710 cites W2330727369 @default.
- W4386496710 cites W2346376196 @default.
- W4386496710 cites W2414920566 @default.
- W4386496710 cites W2416984055 @default.
- W4386496710 cites W2550376806 @default.
- W4386496710 cites W2616802878 @default.
- W4386496710 cites W263564569 @default.
- W4386496710 cites W2794308990 @default.
- W4386496710 cites W2795307901 @default.
- W4386496710 cites W2889275121 @default.
- W4386496710 cites W2898188818 @default.
- W4386496710 cites W2902717024 @default.
- W4386496710 cites W2905104021 @default.
- W4386496710 cites W2907211082 @default.
- W4386496710 cites W2908121218 @default.
- W4386496710 cites W2923607053 @default.
- W4386496710 cites W2923797570 @default.
- W4386496710 cites W2941220106 @default.
- W4386496710 cites W2946080195 @default.
- W4386496710 cites W2965334214 @default.
- W4386496710 cites W2966172501 @default.
- W4386496710 cites W2969560376 @default.
- W4386496710 cites W2982448350 @default.
- W4386496710 cites W2989209604 @default.
- W4386496710 cites W3011887938 @default.
- W4386496710 cites W3019848836 @default.
- W4386496710 cites W3025620243 @default.
- W4386496710 cites W3026811209 @default.
- W4386496710 cites W3029652114 @default.
- W4386496710 cites W3038427351 @default.
- W4386496710 cites W3044674966 @default.
- W4386496710 cites W3046453636 @default.
- W4386496710 cites W3082628551 @default.
- W4386496710 cites W3083143207 @default.
- W4386496710 cites W3101864234 @default.
- W4386496710 cites W3153277884 @default.
- W4386496710 cites W3164300741 @default.
- W4386496710 cites W3171602405 @default.
- W4386496710 cites W3173337511 @default.
- W4386496710 cites W3216388588 @default.
- W4386496710 cites W4213158355 @default.
- W4386496710 cites W4292519167 @default.
- W4386496710 cites W4292939499 @default.
- W4386496710 cites W4293003531 @default.
- W4386496710 cites W4296016387 @default.
- W4386496710 cites W4317356563 @default.
- W4386496710 cites W657417813 @default.
- W4386496710 cites W821674625 @default.
- W4386496710 doi "https://doi.org/10.3390/molecules28186494" @default.
- W4386496710 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37764270" @default.
- W4386496710 hasPublicationYear "2023" @default.
- W4386496710 type Work @default.
- W4386496710 citedByCount "0" @default.
- W4386496710 crossrefType "journal-article" @default.
- W4386496710 hasAuthorship W4386496710A5011877804 @default.
- W4386496710 hasAuthorship W4386496710A5019204475 @default.
- W4386496710 hasAuthorship W4386496710A5021816307 @default.
- W4386496710 hasAuthorship W4386496710A5038017162 @default.
- W4386496710 hasAuthorship W4386496710A5044686939 @default.
- W4386496710 hasAuthorship W4386496710A5085523168 @default.
- W4386496710 hasAuthorship W4386496710A5090109818 @default.
- W4386496710 hasBestOaLocation W43864967101 @default.
- W4386496710 hasConcept C127413603 @default.
- W4386496710 hasConcept C132186339 @default.
- W4386496710 hasConcept C178790620 @default.
- W4386496710 hasConcept C18168003 @default.
- W4386496710 hasConcept C185592680 @default.
- W4386496710 hasConcept C191897082 @default.
- W4386496710 hasConcept C192562407 @default.
- W4386496710 hasConcept C2781448156 @default.
- W4386496710 hasConcept C42360764 @default.
- W4386496710 hasConcept C48743137 @default.
- W4386496710 hasConcept C87976508 @default.
- W4386496710 hasConcept C88380143 @default.
- W4386496710 hasConceptScore W4386496710C127413603 @default.
- W4386496710 hasConceptScore W4386496710C132186339 @default.