Matches in SemOpenAlex for { <https://semopenalex.org/work/W3170282316> ?p ?o ?g. }
- W3170282316 endingPage "512" @default.
- W3170282316 startingPage "512" @default.
- W3170282316 abstract "The objective of this study was to evaluate the aroma profile, microbial and chemical quality of winter cereals (triticale, oats, barley and wheat) and Italian ryegrass (Lolium multiflorum Lam., IRG) plus winter cereal mixture silages detected with an electronic nose. Four commercial mixtures (mixture A (40% of two cultivars of winter triticale + 30% of two cultivars of winter oats + 20% of winter barley + 10% of winter wheat), mixture B (50% of two cultivars of winter triticale + 40% of winter barley + 10% of winter wheat), mixture C (55% of three types of Italian ryegrass + 45% of two cultivars of winter oat), mixture D (40% of three types of Italian ryegrass + 30% of two cultivars of winter oat + 15% of two cultivars of winter triticale + 10% of winter barley + 5% of winter wheat)) were harvested, wilted and ensiled in laboratory-scale silos (n = 80) without additives. Both the principal component analysis (PCA) score plot for aroma profile and linear discriminant analysis (LDA) classification revealed that mixture D had different aroma profile than other mixture silages. The difference was caused by the presence of high ethanol and LA in mixture D. Ethyl esters such as ethyl 3-methyl pentanoate, 2-methylpropanal, ethyl acetate, isoamyl acetate and ethyl-3-methylthiopropanoate were found at different retention indices in mixture D silage. The low LA and higher mold and yeast count in mixture C silage caused off odour due to the presence of 3-methylbutanoic acid, a simple alcohol with unpleasant camphor-like odor. At the end of 90 days fermentation winter cereal mixture silages (mixture A and B) had similar aroma pattern, and mixture C was also similar to winter cereal silages. However, mixture D had different aromatic pattern than other ensiled mixtures. Mixture C had higher (p < 0.05) mold and yeast (Log10 CFU (colony forming unit)/g) counts compared to mixture B. Mixture B and C had higher acetic acid (AA) content than mixture A and D. The lactic acid (LA) content was higher for mixture B than mixture C. In general, the electronic nose (EN) results revealed that the Italian ryegrass and winter cereal mixtures (mixture D) had better aroma profile as compared to winter cereal mixtures (mixture A and B). However, the cereal mixtures (mixture A and B) had better aroma quality than mixture C silage. Otherwise, the EN technology is suitable in finding off odor compounds of ensiled forages." @default.
- W3170282316 created "2021-06-22" @default.
- W3170282316 creator A5002688145 @default.
- W3170282316 creator A5004647347 @default.
- W3170282316 creator A5012798154 @default.
- W3170282316 creator A5023492814 @default.
- W3170282316 creator A5030232777 @default.
- W3170282316 creator A5048817693 @default.
- W3170282316 creator A5052097884 @default.
- W3170282316 creator A5056016037 @default.
- W3170282316 creator A5061762201 @default.
- W3170282316 creator A5089099193 @default.
- W3170282316 date "2021-05-31" @default.
- W3170282316 modified "2023-10-18" @default.
- W3170282316 title "Aroma Profile, Microbial and Chemical Quality of Ensiled Green Forages Mixtures of Winter Cereals and Italian Ryegrass" @default.
- W3170282316 cites W1976720947 @default.
- W3170282316 cites W1978445149 @default.
- W3170282316 cites W1997087247 @default.
- W3170282316 cites W1999749605 @default.
- W3170282316 cites W1999762248 @default.
- W3170282316 cites W2006419764 @default.
- W3170282316 cites W2009823994 @default.
- W3170282316 cites W2019029984 @default.
- W3170282316 cites W2026397821 @default.
- W3170282316 cites W2029475059 @default.
- W3170282316 cites W2032734202 @default.
- W3170282316 cites W2033515744 @default.
- W3170282316 cites W2038448844 @default.
- W3170282316 cites W2038805834 @default.
- W3170282316 cites W2045321715 @default.
- W3170282316 cites W2052536730 @default.
- W3170282316 cites W2056430027 @default.
- W3170282316 cites W2076450066 @default.
- W3170282316 cites W2091861662 @default.
- W3170282316 cites W2092947263 @default.
- W3170282316 cites W2103506649 @default.
- W3170282316 cites W2135083227 @default.
- W3170282316 cites W2155175599 @default.
- W3170282316 cites W2800889597 @default.
- W3170282316 cites W3094744182 @default.
- W3170282316 cites W320382337 @default.
- W3170282316 doi "https://doi.org/10.3390/agriculture11060512" @default.
- W3170282316 hasPublicationYear "2021" @default.
- W3170282316 type Work @default.
- W3170282316 sameAs 3170282316 @default.
- W3170282316 citedByCount "2" @default.
- W3170282316 countsByYear W31702823162023 @default.
- W3170282316 crossrefType "journal-article" @default.
- W3170282316 hasAuthorship W3170282316A5002688145 @default.
- W3170282316 hasAuthorship W3170282316A5004647347 @default.
- W3170282316 hasAuthorship W3170282316A5012798154 @default.
- W3170282316 hasAuthorship W3170282316A5023492814 @default.
- W3170282316 hasAuthorship W3170282316A5030232777 @default.
- W3170282316 hasAuthorship W3170282316A5048817693 @default.
- W3170282316 hasAuthorship W3170282316A5052097884 @default.
- W3170282316 hasAuthorship W3170282316A5056016037 @default.
- W3170282316 hasAuthorship W3170282316A5061762201 @default.
- W3170282316 hasAuthorship W3170282316A5089099193 @default.
- W3170282316 hasBestOaLocation W31702823161 @default.
- W3170282316 hasConcept C185592680 @default.
- W3170282316 hasConcept C197321923 @default.
- W3170282316 hasConcept C2776544680 @default.
- W3170282316 hasConcept C2779159236 @default.
- W3170282316 hasConcept C2780563676 @default.
- W3170282316 hasConcept C2781396250 @default.
- W3170282316 hasConcept C2993665447 @default.
- W3170282316 hasConcept C31903555 @default.
- W3170282316 hasConcept C46757340 @default.
- W3170282316 hasConcept C6557445 @default.
- W3170282316 hasConcept C86803240 @default.
- W3170282316 hasConceptScore W3170282316C185592680 @default.
- W3170282316 hasConceptScore W3170282316C197321923 @default.
- W3170282316 hasConceptScore W3170282316C2776544680 @default.
- W3170282316 hasConceptScore W3170282316C2779159236 @default.
- W3170282316 hasConceptScore W3170282316C2780563676 @default.
- W3170282316 hasConceptScore W3170282316C2781396250 @default.
- W3170282316 hasConceptScore W3170282316C2993665447 @default.
- W3170282316 hasConceptScore W3170282316C31903555 @default.
- W3170282316 hasConceptScore W3170282316C46757340 @default.
- W3170282316 hasConceptScore W3170282316C6557445 @default.
- W3170282316 hasConceptScore W3170282316C86803240 @default.
- W3170282316 hasFunder F4320320365 @default.
- W3170282316 hasFunder F4320338080 @default.
- W3170282316 hasIssue "6" @default.
- W3170282316 hasLocation W31702823161 @default.
- W3170282316 hasLocation W31702823162 @default.
- W3170282316 hasOpenAccess W3170282316 @default.
- W3170282316 hasPrimaryLocation W31702823161 @default.
- W3170282316 hasRelatedWork W1211079271 @default.
- W3170282316 hasRelatedWork W2063795014 @default.
- W3170282316 hasRelatedWork W2124484818 @default.
- W3170282316 hasRelatedWork W2256765388 @default.
- W3170282316 hasRelatedWork W2363624095 @default.
- W3170282316 hasRelatedWork W2562004612 @default.
- W3170282316 hasRelatedWork W2592082608 @default.
- W3170282316 hasRelatedWork W3081826651 @default.
- W3170282316 hasRelatedWork W3162246088 @default.
- W3170282316 hasRelatedWork W4231430398 @default.