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Effect of initial LSI on wastewater softening: simultaneous removal of polyacrylamide residues

机译:初始LSI对废水软化的影响:同时去除聚丙烯酰胺残留物

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Industrial effluent was tested for softening and polyacrylamide (PAC) residue removal and correlated with the Langelier saturation index (LSI). Contrary to previously reported methods, the initial LSI (LSIin) was calculated using the pre-reaction pH, the inherent alkalinities of the original wastewater and the alkalinities added during softening, under the assumption that no physical or chemical reaction had started. During the softening optimization tests, higher LSIin predicted efficient softening, which was further confirmed by lower final LSI (LSIfin). The NaOH dose adjustment was more effective with 100% softening than that achieved by adjusting initial pH. Calcite seeding was more effective at pH 7 with lower LSIin in the range -2 to 2 than that at pH 10 with LSIin in the range 1-4.7. During NaOH dose optimization, LSIin was higher and LSIfin was lower at a higher soda ash to hardness molar ratio of 1.3:1 than that at a lower ratio of 1:1. Compact accelerated precipitation softening process removed 60% of the calcium and 41% of the PAC residues because calcium carbonate precipitates worked as a coagulation aid. Direct correlations between LSIin and softening efficiency in all processes (R-2=0.95-0.98) confirmed the importance of LSI and explained the effects of calcite addition.
机译:对工业废水进行了软化和聚丙烯酰胺(PAC)残留物去除测试,并将其与Langelier饱和指数(LSI)相关联。与先前报道的方法相反,在没有物理或化学反应开始的前提下,使用反应前的pH,原始废水的固有碱度以及软化过程中添加的碱度来计算初始LSI(LSIin)。在软化优化测试中,较高的LSIin预测有效的软化,这又由较低的最终LSI(LSIfin)进一步证实。 NaOH剂量调节具有100%软化效果,比通过调节初始pH值更有效。在pHin为7且LSIin在-2至2范围内时,其方晶比在pH 10为LSIin在1-4.7范围内时更为有效。在NaOH剂量优化过程中,苏打灰与硬度的摩尔比为1.3:1时,LSIin较高,而LSIin硬度比为1:1时,LSIfin较低。紧凑的加速沉淀软化过程除去了60%的钙和41%的PAC残留物,因为碳酸钙沉淀物起了助凝作用。 LSIin与所有过程中的软化效率之间的直接相关性(R-2 = 0.95-0.98)证实了LSI的重要性,并解释了方解石添加的影响。

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