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Characterizing fruit and vegetable peels as bioadsorbents

机译:将果皮和蔬菜皮表征为生物吸附剂

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Fruit and vegetable peel (FVP) wastes are a commonly generated organic waste from both households and food-processing industries. However, FVPs are low-cost lignocellulosic materials that have some potential for reutilization. For its particular reutilization, the characterization of FVP is essential. In this regard, the present study provides a detailed physico-chemical characterization of commonly used FVPs such as pomegranate, pineapple, watermelon, garlic, green pea and pigeon pea. The materials were characterized by SEM, FTIR and TGA/DTG. Various properties of these materials, such as porosity, particle density, bulk density, surface charges, point of zero charge, surface pH, water absorption capacity and BET surface area were determined. The BET surface area of FVP was found in the range 1.0-1.4 m(2)/g. Water absorption capacity was highest for watermelon peel (11.5 ml/g), while it was lowest for pigeon pea peel (5.5 ml/g). Point of zero charge and surface pH of all FVPs were in the acidic range 3-6. The surface of FVP was irregular and rough with some pores. Thermal analysis showed that FVPs are thermally stable below 150 degrees C. The results of this study provide an understanding of the properties of FVPs and suggest that the materials can be used as a low-cost adsorbent.
机译:水果和蔬菜皮(FVP)废物是家庭和食品加工业共同产生的有机废物。但是,FVP是低成本的木质纤维素材料,具有一定的再利用潜力。对于其特定的重用,FVP的特性至关重要。在这方面,本研究提供了常用的FVP(如石榴,菠萝,西瓜,大蒜,青豆和木豆)的详细理化特性。通过SEM,FTIR和TGA / DTG对材料进行了表征。确定了这些材料的各种性能,例如孔隙率,颗粒密度,堆积密度,表面电荷,零电荷点,表面pH值,吸水能力和BET表面积。发现FVP的BET表面积为1.0-1.4 m(2)/ g。西瓜皮的吸水量最高(11.5 ml / g),而豌豆皮的吸水量最低(5.5 ml / g)。所有FVP的零电荷点和表面pH值都在3-6的酸性范围内。 FVP的表面不规则且粗糙,带有一些孔。热分析表明,FVP在150摄氏度以下是热稳定的。这项研究的结果提供了对FVPs性质的理解,并表明该材料可用作低成本的吸附剂。

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