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将糖蜜用作施肥灌溉目的的正向渗透淡化中汲取液的应用。

Application of molasses as draw solution in forward osmosis desalination for fertigation purposes.

机构信息

Civil and Environmental Engineering Department, School of Engineering, Shiraz University, Shiraz, Iran.

Nano-Chemical Engineering Department, Faculty of Advanced Technologies, Shiraz University, Shiraz, Iran.

出版信息

Environ Technol. 2021 Feb;42(5):764-774. doi: 10.1080/09593330.2019.1645215. Epub 2019 Aug 5.

Abstract

Certain challenges exist in forward osmosis (FO) separation technique that has to be studied yet such as a selection of a proper draw solution (DS) to supply the required driving force for separation. In this work, the performance of molasses DS in terms of water flux ( ) was evaluated using a commercial FO membrane. Deionized water (DIW), an oilfield brackish wastewater (BWW) and seawater (SW) were used as three different feed solutions (FS). Effects of molasses concentration ( ) and solutions cross-flow velocities on were investigated. The results indicated that the relationship between and is non-linear that may be attributed to internal concentration polarization in the membrane support layer. was improved slightly by increasing the FS velocity and enhanced moderately by increasing the DS velocity from 6 to 11.5 cm/s. Fluxes of 16.7, 13.3 and 7.5 LMH were obtained during 30 min against the feeds of DIW, BWW and SW, respectively. After 12 h, the osmotic pressure of molasses is reduced from an initial value of 79.8 bar to 54.5, 62.8 and 66.3 bar for the FSs, respectively. Reverse solute flux is increased by decreasing and is more significant at values lower than 10.67 LMH for DIW feed. Based on the results, Molasses has a good performance ratio in comparison to other fertilizers and diluted molasses can potentially be used for fertigation purposes.

摘要

在正向渗透(FO)分离技术中存在一些挑战,需要进一步研究,例如选择合适的汲取液(DS)来提供分离所需的驱动力。在这项工作中,使用商业 FO 膜评估了糖蜜 DS 在水通量( )方面的性能。去离子水(DIW)、油田苦咸水(BWW)和海水(SW)被用作三种不同的进料溶液(FS)。考察了糖蜜浓度( )和溶液错流速度对 的影响。结果表明, 与 之间的关系是非线性的,这可能归因于膜支撑层中的内部浓度极化。通过增加 FS 速度, 略有提高,通过将 DS 速度从 6cm/s 增加到 11.5cm/s 适度提高。在 30 分钟内,针对 DIW、BWW 和 SW 进料,分别获得了 16.7、13.3 和 7.5 LMH 的通量。12 小时后,糖蜜的渗透压从初始值 79.8 巴分别降低到 FS 的 54.5、62.8 和 66.3 巴。反向溶质通量随着 的降低而增加,对于 DIW 进料,当低于 10.67 LMH 时更为显著。根据结果,与其他肥料相比,糖蜜具有良好的性能比,并且稀释的糖蜜可能有潜力用于灌溉施肥。

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