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Production and Characterization of Controlled Release Urea Using Biopolymer and Geopolymer as Coating Materials

机译:以生物聚合物和地聚合物为涂层材料生产控释尿素及其表征

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摘要

Synthetic polymers-based controlled release urea (CRU) leaves non-biodegradable coating shells when applied in soil. Several alternative green materials are used to produce CRU, but most of these studies have issues pertaining to nitrogen release longevity, process viability, and the ease of application of the finished product. In this study, we utilized tapioca starch, modified by polyvinyl alcohol and citric acid, as coating material to produce controlled release coated urea granules in a rotary fluidized bed equipment. Response surface methodology is employed for studying the interactive effect of process parameters on urea release characteristics. Statistical analysis indicates that the fluidizing air temperature and spray rate are the most influential among all five process parameters studied. The optimum values of fluidizing air temperature (80 °C), spray rate (0.13 mL/s), atomizing pressure (3.98 bar), process time (110 min), and spray temperature (70 °C) were evaluated by multi-objective optimization while using genetic algorithms in MATLAB . Urea coated by modified-starch was double coated by a geopolymer to enhance the controlled release characteristics that produced promising results with respect to the longevity of nitrogen release from the final product. This study provides leads for the design of a fluidized bed for the scaled-up production of CRU.
机译:在土壤中使用时,基于合成聚合物的控释尿素(CRU)会留下不可生物降解的涂层外壳。几种替代的绿色材料用于生产CRU,但大多数研究都涉及到氮释放寿命,工艺可行性和最终产品的易用性。在这项研究中,我们利用经聚乙烯醇和柠檬酸改性的木薯淀粉作为包衣材料,在旋转流化床设备中生产了控释包衣的尿素颗粒。响应面法用于研究工艺参数对尿素释放特性的相互作用。统计分析表明,在所研究的所有五个过程参数中,流化空气的温度和喷雾速率的影响最大。通过多目标评估了流化空气温度(80°C),喷雾速率(0.13 mL / s),雾化压力(3.98 bar),处理时间(110分钟)和喷雾温度(70°C)的最佳值在MATLAB中使用遗传算法进行优化。改性淀粉包衣的尿素被地质聚合物双重包衣,以增强控释特性,就从最终产品中释放氮的寿命而言,这产生了令人鼓舞的结果。该研究为大规模生产CRU的流化床设计提供了线索。

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