id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
brj-22092	Yue, Xiaochen; Li, Zhaolin; Lam, Su Shiung; Peng, Wan-Xi; He, Yifeng	Reuse of Cornus officinalis Nutlet for Bioenergy	2022	34	.pdf	application/pdf	11640	479	52	6423 of more substances are as follows: 4-methyl-2-Hexanamine (2.82%), Glycidol (1.33%), Formic acid (1.13%), Acetic acid (8.72%), Furfural (2.78%), 1,2-Cyclopentanedione (1.06%), 2,2-diethyl-3-methyl-Oxazolidine (1.02%), 2-Methyliminoperhydro-1,3-oxazine (1.07%), 2-methoxy-Phenol (2.21%), Creosol (1.95%), Catechol (1.67%), 5- Hydroxymethylfurfural (2.07%), 2-Methoxy-4-vinylphenol (2.55%), 2,6-dimethoxy- Phenol (1.87%), 1,2,3-Benzenetriol (1.29%), Vanillin (1.81%), 3,5-Dimethoxy-4- hydroxytoluene (1.55%), trans-Isoeugenol (1.52%), 1-(4-hydroxy-3-methoxyphenyl)-2- Propanone (1.11%), (E)-Stilbene (3.27%), D-Allose (1.95%), 1,6-anhydro-.beta.-D- Glucopyranose (1.67%), (E)-2,6-Dimethoxy-4-(prop-1-en-1-yl)phenol (1.12%), and n- Hexadecanoic acid (1.31%). 2D-HSQC NMR spectra of CON Medicinal properties The compounds identified in Tables S2 to S5 in the Appendix are also classified as esters, acids, phenols, tannins, iridoids, soaps, ketones, and glycosides.	cache/brj-22092.pdf	txt/brj-22092.txt
