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Application of Iodized In Farm and Haloferax Bacteria Technology for Salt Production in Order to Make Zero Waste Salt Consumption Industry

机译:碘化法在农场和厌氧菌生产盐业中的应用,以实现零废盐业

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The consumption salt industry produces wastewater in the raw material washing unit. The washing water generated if water concentration already exceeds 250Be, most of its water removed, usually dumped into the environment around the factory, with a volume of about 1.5 m3 per 10 tons of salt washed. Everyday industry wash 60-70 tons salt. So the environment would pollute, because there were metals and chemical contaminants, such as MgSO4, MgCl2, and CaSO4. The aims this research to produce iodized salt from the field and containing NaCl above 94 percent which combines technology with the injection iodized in farm and Haloferax bacteria so consumed salt industry will not need washing and iodizing again. Application experiment performed 3 times which 2 replication without and with using Haloferax bacteria and additional treatment KIO3 solution concentration of 70 and 80 ppm. Results showed that best treatment was addition KIO3 70 ppm and treatment of bacterial Haloferax with KIO3 51,89-56.58 ppm and NaCl were 94.44 to 94.95 percent. SEM EDX test results, salt cube-shaped or rectangle, treatment without addition the bacteria and the crystal morphology of appearing smaller.
机译:食用盐行业在原料洗涤单元中产生废水。如果水的浓度已经超过250Be,则产生的洗涤水会被去除,大部分会被倾倒到工厂周围的环境中,每10吨盐分大约会排放1.5立方米。每天工业洗60-70吨盐。由于存在金属和化学污染物,例如MgSO4,MgCl2和CaSO4,因此环境将受到污染。这项研究的目的是从田间生产加碘盐含量超过94%的加碘盐,该技术将技术与农场中加碘的注射液和Haloferax细菌相结合,因此消耗盐业将不再需要冲洗和加碘。应用实验进行了3次,其中2次在不使用Haloferax细菌和不使用Haloferax细菌的情况下进行了复制,并另外处理了浓度为70和80 ppm的KIO3。结果表明,最佳的处理方法是添加70 ppm的KIO3,用51,89-56.58 ppm和NaCl的细菌处理Haloferax细菌的比例为94.44%至94.95%。 SEM EDX测试结果,盐呈立方体或长方形,未经添加处理的细菌和出现的晶体形态变小。

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