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Treatment of acid sulfate soil drainage by direct application of alkaline reagents

机译:直接应用碱性试剂处理酸性硫酸盐土壤排水

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Due to the episodic nature of rainfall and the high dissolved metal concentrations in the acid sulfate soil catchment of Clothiers Creek (NSW, Australia), active treatment was considered more appropriate than passive treatment. Alkaline reagents were added to oxidised shallow drains to remove acidities ranging from 438 to 1,837 mg/L CaCO_3. A fine limestone slurry was produced from the pounding together of limestone rock fragments within a rotating drum and, on addition to drain waters, was found to remove acidity to varying degrees of effectiveness (from 12 to 100%). The efficiency decreased as the pH of the water approached neutral ity due to calcite saturation and the slow reaction rate of limestone at high pH. Hydrated lime powder was also mixed with drain water in the rotating drum though most mixing occurred once the slurry entered the drain where efficiencies ranging from 67 to 89% were observed. A powdered mixture of MgCO_3 and CaCO_3 was only 11 % effective in treatment of the drainage water due to the slow rate of reaction of MgCO_3. Whilst the active treatment system was capable of treating a large acidity flux (particularly using hydrated lime) it required regular addition of reagent and the dosing of hydrated lime was particularly difficult to control. Future designs of this active treatment system should be automated to prevent adverse aquatic impacts due to overdosing.
机译:由于降雨的情景性质和Clothiers Creek(澳大利亚新南威尔士州)酸性硫酸盐土壤集水区中的高溶解金属浓度,因此认为主动处理比被动处理更为合适。将碱性试剂添加到氧化的浅排水管中,以去除438至1,837 mg / L CaCO_3范围内的酸度。在旋转的转鼓中将石灰石碎块捣碎,可以生产出优质的石灰石浆料,除排水外,还发现酸度的去除效果不同(从12%到100%)。由于方解石饱和和高pH条件下石灰石的缓慢反应速度,水的pH值接近中性时效率降低。水合石灰粉也与转鼓中的排水混合,尽管大多数混合是在浆液进入排水管后进行的,观察到效率为67%至89%。由于MgCO_3反应速度慢,MgCO_3和CaCO_3的粉状混合物仅能有效处理排水11%。尽管活性处理系统能够处理较大的酸度通量(特别是使用熟石灰),但它需要定期添加试剂,并且熟石灰的剂量特别难以控制。这种主动处理系统的未来设计应实现自动化,以防止因过量使用而对水产造成不利影响。

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