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Preparation, Characterization, Image Segmentation and Particle Size Analysis of Cow Bone Powder for Composite Applications

机译:复合应用牛骨粉的制备,表征,图像分割和粒度分析

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Cow bone is a bio-waste material that has caused environmental unfriendliness to the people living around the place of production and deposition. In recent time, researchers have exploited various means of utilizing this bio-waste material and make it environmentally friendly and economically utilizable, especially in the area of applications, such as activated carbon, water purification, reinforcement in composites, filler and additives, and its efficacy has been traced to whether is in the form of macro-, micro-and nanoparticles. In this study, cow bone head (skull) was collected, washed and cleaned from meats, processed, sun-dried for six weeks, and it was then washed again with distilled water to remove impurities and contaminants, then placed inside the oven set at 50°C to dry for 5 h to remove any trace of moisture content and to ensure absolute dryness. It was then milled into nanoparticle powder using vibratory disk milling machine and the milling times were 0 min which was taken to be 150 μm size, 20, 40 and 60 min. The morphological and physiological characterizations were carried out using scanning electron microscopy (SEM), energy dispersive X-ray (EDX) as well as X-ray fluorescence (XRF). MATLAB (R2015a) was employed for image processing into bimodal with foreground and background pixels using thresholding segmentation method. SEM images were taken at 1.00 ×, 2.00 × and 5.00 × which resulted to 50 μm, 20 μm and 10 μm, respectively. The image segmentation was employed to determine the foreground from a background of cow bone powder (CBP) and to enhance high resolutions, visual perception as well as to achieve better quality of the final output.
机译:牛骨是一种生物废料,对生活在生产和沉积的人们引起了环境不友好。近来,研究人员利用了各种利用这种生物废料的方法,并使其环保和经济可利用,特别是在应用领域,例如活性炭,水净化,复合材料中的增强,填料和添加剂,及其疗效已经追溯到是否是宏观,微珠和纳米颗粒的形式。在这项研究中,收集牛骨头(颅骨),从肉,加工,晒干六周,然后用蒸馏水洗涤,以除去杂质和污染物,然后放置在烤箱内部50℃干燥5小时以除去任何痕量的水分含量并确保绝对干燥。然后使用振动盘铣床研磨成纳米颗粒粉末,铣削时间为0 min,其尺寸为150μm,20,40和60分钟。使用扫描电子显微镜(SEM),能量分散X射线(EDX)以及X射线荧光(XRF)进行形态和生理特征。使用阈值分割方法,使用Matlab(R2015A)用于与前景和背景像素的双峰和背景像素。 SEM图像以1.00×,2.00×和5.00×拍摄,分别为50μm,20μm和10μm。采用图像分割来确定牛骨粉(CBP)的背景的前景,并增强高分辨率,视觉感知以及实现最终输出的更好质量。

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