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Chemical Studies on Press Mud: A Sugar Industries Waste in Bangladesh

机译:印泥化学研究:孟加拉国制糖业的废物

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Crude press muds a sugar industry waste were collected from four sugar mills of Bangladesh. Crude press mud as well as its water soluble and water insoluble portion and extracted wax were studied for its proximate analysis, physico-chemical properties, elemental and wax composition. The proximate analysis of crude press mud showed the presence of moisture (67.95-76.53), nitrogen (1.63-2.29), ash (19.28-30.76), sugar (12.10-13.29) and crude wax (6.70-11.01). Acid value (26.95-27.68), saponification value (102.59-103.01) and iodine value (6.72-6.82) were also studied of the extracted wax. The GLC analysis showed linolenic (45.54%), oleic (27.28%) and palmitic acid (23.59%) were the predominant acids in the crude wax. The XRF spectrometric analysis of the elemental composition showed the presence of Ca (21.30-29.97%), Si (9.53-9.94%), P (8.40-9.52%), S (3.77-7.36%) and K (2.51-4.08%) in crude press mud, Ca (19.83-31.93%), K (8.76-13.52%), S (7.93-16.02%) and Mg (4.14-7.75%) in water soluble portion press mud and Ca (21.77-30.68%), K (1.62-3.41%), S (3.49-7.09%), P (9.0-11.31%), Al (2.40-2.93) and Si (10.50-10.54%) in water in-soluble portion press mud. The Fourier transform infrared analysis, Thermo gravimetric, Derivative thermo gravimetric and differential thermal analysis of press mud were also carried out. These analyses may find the suitability to enrich the micronutrients in restoring the soil composition and also find possibility to use in agriculture, horticulture and aquaculture based industries. Moreover, press mud wax may have an alternative use of carnauba wax.
机译:从孟加拉国的四个制糖厂收集了粗榨泥和制糖工业的废料。研究了原油压榨泥浆及其水溶性和水不溶性部分以及提取的蜡,以对其进行近期分析,理化性质,元素和蜡的组成。粗压机泥的最近分析显示存在水分(67.95-76.53),氮气(1.63-2.29),灰分(19.28-30.76),糖(12.10-13.29)和粗蜡(6.70-11.01)。还研究了提取蜡的酸值(26.95-27.68),皂化值(102.59-103.01)和碘值(6.72-6.82)。 GLC分析显示,亚麻蜡中的主要酸为亚麻酸(45.54%),油酸(27.28%)和棕榈酸(23.59%)。元素组成的XRF光谱分析表明存在Ca(21.30-29.97%),Si(9.53-9.94%),P(8.40-9.52%),S(3.77-7.36%)和K(2.51-4.08%) )在粗压泥中,Ca(19.83-31.93%),K(8.76-13.52%),S(7.93-16.02%)和Mg(4.14-7.75%)在水溶性部分压泥中以及Ca(21.77-30.68% ),水不溶部分中的K(1.62-3.41%),S(3.49-7.09%),P(9.0-11.31%),Al(2.40-2.93)和Si(10.50-10.54%)压泥。还进行了压泥的傅里叶变换红外分析,热重分析,导数热重分析和差热分析。这些分析可能会发现在恢复土壤成分方面适合补充微量元素,也可能用于农业,园艺和水产养殖业。此外,压泥蜡可以替代巴西棕榈蜡。

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