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Development and use of an attenuated total reflectance/fourier transform infrared (ATR/FT-IR) spectral database to identify foreign matter in cotton

机译:衰减全反射/傅立叶变换红外光谱(ATR / FT-IR)光谱数据库的开发和使用以鉴定棉花中的异物

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The presence of foreign matter in cotton seriously affects the cotton grade and thus the price per bale paid by the spinner to the grower, the efficiency of the spinning and ginning operations, and the quality of the final woven product. Rapid identification of the nature of the extraneous matter in cotton at each stage of cleaning and processing is necessary to permit actions to eliminate or reduce its presence and improve efficiency and quality. Although several instruments are being successfully employed for the measurement of contamination in cotton fibers based on particle size/weight, no commercial instrument is capable of accurate qualitative identification of contaminants. To this end, ATR/FT-IR spectra of retrieved foreign matter were collected and subsequently rapidly matched to an authentic spectrum in a spectral database. The database includes contaminants typically classified as "trash", cotton plant parts (hull, shale, seed-coat fragments, bract, cacyx, leaf, bark, sticks, and stems) and grass plant parts (leaf and stem); "foreign objects and materials", synthetic materials (plastic bags, film, rubber, bale wrapping and strapping); organic materials (other fibers, yarns, paper, feathers, and leather); plus entomological and physiological sugars and inorganic materials (sand and rust). The spectral matching resulted in consistently high-score identification of the foreign matter based on chemical composition, irrespective of its particle size. The method is envisioned to be employed with stand-alone rugged infrared instrumentation to provide specific identification of extraneous materials in cotton as opposed to only general classification of the type by particle size or shape.
机译:棉花中异物的存在会严重影响棉花的品位,进而影响纺纱厂付给种植者的每包价格,纺纱和轧花操作的效率以及最终织造产品的质量。在清洁和加工的每个阶段,必须快速识别棉花中杂质的性质,以采取行动消除或减少棉花中杂质的存在,并提高效率和质量。尽管基于粒度/重量成功地使用了几种仪器来测量棉纤维中的污染物,但是没有任何一种商用仪器能够准确定性地鉴定污染物。为此,收集了回收的异物的ATR / FT-IR光谱,随后将其与光谱数据库中的真实光谱快速匹配。该数据库包括污染物,这些污染物通常分类为“垃圾”,棉株部位(船体,页岩,种皮碎片,片,木蜡,叶,树皮,棍和茎)和草株部位(叶和茎); “外来物体和材料”,合成材料(塑料袋,薄膜,橡胶,捆包和捆扎带);有机材料(其他纤维,纱线,纸张,羽毛和皮革);以及昆虫学和生理学的糖和无机物质(沙土和铁锈)。光谱匹配可始终根据化学成分对异物进行高分鉴定,而无需考虑其粒径。设想该方法将与独立的坚固耐用的红外仪器一起使用,以提供对棉花中异物的特定识别,这与仅通过粒度或形状对类型进行一般分类相反。

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