首页> 外文期刊>Heat transfer >Experimental evaluation of solar still efficiencies as a basic step in treatment of wastewater
【24h】

Experimental evaluation of solar still efficiencies as a basic step in treatment of wastewater

机译:作为处理废水的基本步骤的太阳能静止效率的实验评估

获取原文
获取原文并翻译 | 示例
           

摘要

The present study investigates a unit for making use of freshwater in a kiln in a practical manner. At first, in this unit, the saline wastewater flowing out of the MED unit in Mobin Petrochemical Complex enters a gravitational bed and is subjected to preliminary treatment. In the next stage, the same saline wastewater enters the first pretreatment reactor for undergoing a coagulation procedure; then, it enters a second biological reactor for undergoing both coagulation and biological treatment. Afterwards, the output current of the biological reactor enters a solar pond for the separation of the dissolved salt in the wastewater, for which, it enters an antiseptic system that uses ultraviolet (UV) for treatment. Finally, the saline wastewater is transformed into a soft treated current. In the present study, the performance of a solar condensation unit installed on the path of the output wastewater of the UV antiseptic unit has been examined. In this study, the thermal output, conduction output, and freshwater production output have been altogether subjected to practical evaluation. The results offered herein are indicative of the relative error rates equal to about 7.2% and 4.9% for thermal output of day and night, respectively. Moreover, the conduction efficiency relative errors have been about 7% and 5.6% for day and night, respectively. In addition, on average, the relative cumulative error of the thermal energy storage substrate's output was about 3.5% per day over a month.
机译:本研究以实用的方式研究了一种在窑中利用淡水的装置。首先,在该单元中,从莫宾石化联合体的MED单元流出的盐水废水进入重力床并进行了初步处理。在下一阶段,相同的盐水进入第一预处理反应器进行凝结程序。然后,它进入第二个生物反应器进行凝结和生物处理。然后,生物反应器的输出电流进入太阳能池,以分离废水中的溶解盐,为此,它进入使用紫外线(UV)进行处理的防腐系统。最终,盐水被转化成柔软的处理水流。在本研究中,已经检查了安装在紫外线消毒装置输出废水路径上的太阳能冷凝装置的性能。在这项研究中,热输出,传导输出和淡水生产输出已全部经过实际评估。本文提供的结果表明白天和晚上的热量输出的相对误差率分别约为7.2%和4.9%。此外,白天和黑夜的传导效率相对误差分别约为7%和5.6%。另外,平均而言,热能存储基板的输出的相对累积误差在一个月内每天约为3.5%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号