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Controlled release of urea, mass transfer from a sphere and a single opening on a coated sphere into a quiescent liquid.

机译:尿素的受控释放,质量从球体和涂层球体上的单个开口转移到静态液体中。

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摘要

A continuous weighing technique was developed for measuring the transfer of urea (carbamide, a fertilizer) from a single opening on a coated sphere into a stagnant liquid. Hollow polymer spheres of a 3.8 cm diameter were used as non-permeable shells enclosing a saturated urea solution (57wt% at 303K). Urea release was determined from changes in particle weight with time. Coated solid urea spheres were also used.; Mass transfer rates were measured for various Rayleigh numbers from 1.8 × 107 to 6.8 × 1010. For the opening oriented vertically upward in water, natural convection enhanced the release rate by 1.8 times compared to diffusion only. However, when liquid viscosity was increased above 1.0 Pa.s, using a carboxymethylcellulose solution, the effect of natural convection on the release became insignificant. The mass flux of urea diffusion through a single opening was 6.2 times that for pure diffusion from an uncoated sphere over the same area. For other opening orientations (45°, 90°, 135° and 180° to the upward vertical), natural convection provided the main mechanism for urea transfer in both water and CMC solutions. The average mass transfer rate (for all angular positions of the opening) for a coated solid urea sphere was 5.7 times lower than that for a sphere filled with the saturated urea solution.; Models for urea diffusion through a vertically upward opening were developed. The models agree well with the experimental data. From local natural convection mass transfer rates for various angular positions of the opening, the average Sherwood number was estimated. A correlation for the average Sherwood number with the Rayleigh number was obtained. The average Sherwood numbers for smaller particles of a 2.0 cm diameter align well with the correlation.; Uncoated urea spheres were also used so that mass transfer occurred over the whole surface. Both concentration boundary layer build-up and natural convection were observed visually. Local Sherwood numbers were obtained from the change of the particle shape, and the average transfer rates were estimated from particle weight loss. These were in good agreement with literature data and correlations. The Sherwood number correlation obtained predicts urea transfer from a 2 mm uncoated particle well.; Electrochemical measurements using a sectioned sphere were also carried out with the ferricyanicle-ferrocyanide solution. Both local and average transfer rates were much higher than those for pure diffusion. This was due to natural convection in the bulk liquid. However, the transient transfer was in good agreement with a theoretical prediction for convective mass transfer to a sphere.; The data and the models obtained in the present study provide a fundamental understanding of controlled release of a substrate through a single opening on a coated sphere in a stagnant liquid. They were also shown to be potentially applicable in predicting urea transfer rates from sulfur-coated urea (SCU).
机译:开发了一种连续称量技术,用于测量尿素(尿素,化肥)从涂层球上的单个开口到停滞液体的转移。使用直径为3.8 cm的中空聚合物球作为不渗透性壳,其中包含饱和尿素溶液(在303K时为57wt%)。根据颗粒随时间的变化确定尿素释放。还使用了涂覆的固体尿素球。测量了从1.8×10 7 到6.8×10 10 的各种瑞利数的传质速率。对于在水中垂直向上定向的开口,与仅扩散相比,自然对流将释放速率提高了1.8倍。然而,当使用羧甲基纤维素溶液将液体粘度增加至高于1.0Pa.s时,自然对流对释放的影响变得微不足道。通过单个开口的尿素扩散的质量通量是从同一区域未经涂层的球体进行纯扩散的质量通量的6.2倍。对于其他打开方向(与垂直向上方向成45°,90°,135°和180°),自然对流提供了尿素在水和CMC溶液中转移的主要机理。涂覆的固体尿素球的平均传质速率(对于开口的所有角位置)比填充有饱和尿素溶液的球的平均传质速率低5.7倍。开发了通过垂直向上的开口进行尿素扩散的模型。模型与实验数据吻合良好。根据开口各个角位置的局部自然对流传质速率,可以估算平均舍伍德数。获得了平均舍伍德数与瑞利数的相关性。直径为2.0厘米的较小颗粒的平均舍伍德数与相关性很好地吻合。还使用未涂覆的尿素球,以便在整个表面上发生传质。目视观察浓度边界层的积累和自然对流。从颗粒形状的变化获得局部舍伍德数,并从颗粒重量损失估计平均转移速率。这些与文献数据和相关性非常吻合。获得的舍伍德数相关性预测尿素从2毫米未涂层颗粒孔中转移。还使用铁氰化物-亚铁氰化物溶液进行了使用截面球的电化学测量。局部和平均转移率均远高于纯扩散率。这是由于散装液体中的自然对流所致。然而,瞬态传递与对流传质到球体的理论预测非常吻合。在本研究中获得的数据和模型提供了通过停滞液体中涂层球体上的单个开口对基材的受控释放的基本理解。它们还显示出可能适用于预测硫包膜尿素(SCU)的尿素转移速率。

著录项

  • 作者

    Doan, Huu Dung.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化工过程(物理过程及物理化学过程);
  • 关键词

  • 入库时间 2022-08-17 11:48:44

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