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The Effect of Feed Rate And Recycle Rate Variable On Leaching Process Of Na_2Zro_3 With HCl In Continuous Stirred Tank Reactor (CSTR) Series

机译:饲料速率和再循环速率变量对连续搅拌釜反应器(CSTR)系列HCL浸出过程的影响

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This time, the natural resources of zircon sand is processed into several zirconium products which is utilized for various industries, such as ceramics, glass industry, metal industry and nuclear industry. The process of zircon sand into zirconium products through several stages, one of them is leaching process of Na2ZrO_3 with HC1. In this research, several variations of recycle-rate/feed-rate had been done to determine the effect on leaching process. The leaching was processed at temperature of 90°C, ratio of Na2ZrO3:HCl= lg:30mL, and 142 rotary per minute of stirring speed for 30 minutes with variation of recycle-rate/feed-rate such as 0.478, 0.299, 0.218, 0.171 and 0.141 .The diameter size of Na2ZrO_3 powder that used are 0.088 to 0.149 mm. This process was carried out in Continuous Stirred Tank Reactor (CSTR) series with recycle. Based on this research, the greater of the recycle-rate/feed-rate variable, the obtained Zr recovery decreased. The correlation between recycle-rate/feed-rate and Zr recovery is shown by the equation y= -146.91x + 103.51, where y is the Zr recovery and x is the recycle-rate/feed-rate. The highest Zr recovery was 90.52% obtained at recycle-rate/feed-rate 0.141. The mathematical modeling involving the probability model P(r)=2β~2r~3exp(-βr~2)can be applied to this leaching process with Sum of Squared Errors (SSE) values in the range of 6x10~(-7) - 7x10~(-6).
机译:这一次,锆砂的自然资源被加工成其被用于各种行业,如陶瓷,玻璃工业,金属工业和核工业几个锆产品。锆英砂锆成的产品经过几个阶段的过程中,其中一人被浸出Na2ZrO_3的过程与HC1。在这项研究中,循环速率/进给速率的几个变化已经完成,以确定对浸出过程的影响。盐酸= LG::浸出物在90℃,Na2ZrO3的比温度下处理30毫升,和每搅拌速度与再循环速率/进料速率的变化30分钟分钟142旋转,如0.478,0.299,0.218,所使用Na2ZrO_3粉末0.171 0.141和直径.The尺寸是0.088至0.149毫米。这个过程是在连续搅拌反应釜(CSTR)与循环系列进行。基于此研究中,循环速率/进料速率可变的时,所得到的Zr的回收下降。再循环速率/进料速率和Zr恢复之间的相互关系由等式y = -146.91x + 103.51,其中y是Zr的回收和x是再循环速率/进料速率所示。在再循环速率/进料速率0.141获得了最高的Zr恢复90.52%。涉及概率模型P(R)=2β〜2R〜3exp(-βr〜2)能够在6×10〜的范围内施加到该浸出过程与误差平方之和(SSE)值数学建模(-7) - 7×10〜(-6)。

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