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Desalination Of Effluent Waste Using Biomass Heat Source And Analytical Validation Using RSM

机译:利用生物质热源对废水进行脱盐和使用RSM进行分析验证

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In this work a single basin solar still is, used to produce distilled water from industrial effluent using biomass heat source,solar energy. Since industrial waste is utilized as feed primary treatment is given to filter the waste. The concept of integrating the single basin still with biomass heat source is introduced in this research study. At the bottom surface of the basin, heat exchanger is laid at the tail end of the watershed area. The heat exchanger is connected to the biomass boiler increases the water temperature in the potty and also increases the productivity in the blade. A conventional still is also tested with the modified still for comparison. Different solid heat storage materials, Latent heat storage materials are introduced in the shape of small billets to increase productivity. Glass cover cooling is performed by using manual sprinkler at regular interval of fourth dimension. Biomass are tried in this workplace. Chemical analysis shows the reduction of 99% of salts and 100% TDS and 100% increase in COD,BOD levels in the distilled water.Theoretical analysis is done by using RSM (Response surface methodology). Experiments are conducted in biomass modes and solar modes. Biomass mode produces more output than solar mode.
机译:在这项工作中,使用一个单盆太阳能蒸馏器,利用生物质热源,太阳能从工业废水中产生蒸馏水。由于工业废物被用作饲料,因此要进行初级处理以过滤废物。本研究介绍了将单盆蒸馏器与生物质热源一体化的概念。在水池的底表面,热交换器位于分水岭区域的尾端。热交换器连接到生物质锅炉,提高了便盆中的水温,还提高了叶片的生产率。还测试了传统的静止不动的蒸馏器以进行比较。以不同的固体储热材料,潜热存储材料以小坯料的形状引入以提高生产率。玻璃盖的冷却是通过使用手动喷头以规则的第四维间隔进行的。在这个工作场所尝试了生物质。化学分析表明,蒸馏水中的盐减少了99%,TDS减少了100%,COD,BOD含量增加了100%。使用RSM(响应表面法)进行了理论分析。实验是在生物质模式和太阳能模式下进行的。生物质模式比太阳能模式产生更多的输出。

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