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An effective method for the detoxification of cyanide-rich wastewater by Bacillus sp. CN-22

机译:芽孢杆菌对富含氰化物的废水进行解毒的有效方法。 CN-22

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The biodetoxification of cyanide-rich wastewater has become increasingly popular because of its costeffectiveness and environmental friendliness. Therefore, we have developed an effective method, optimised by response surface methodology, for detoxifying cyanide-rich wastewater using Bacillus sp. CN-22, which was newly isolated from a cyanide-contaminated electroplating sludge and could tolerate aCN~? concentration of 700 mg L~(?1). The concentration of CN~? in the treated wastewater decreased from 200 to 6.62 mg L~(?1) after cultivation with 2.38 % inocula for 72 h on the medium, consisting of 0.05 % KH2PO4, 0.15 % K_2HPO_4, 1.0 mM MgCl_2, 1.0 mM FeCl_3, 0.1 % NH_4Cl, and 0.1 % glycerol. The CN~? degradability of 96.69 % is similar to the predicted value of 96.82 %. The optimal cultivation conditions were controlled as follows: initial pH, 10.3; temperature, 31 °C; and rotary speed, 193 rpm. The maintenance of higher pH in the overall treatment procedures may avoid the production of volatile HCN and the risk associated with cyanide detoxification. Additionally, the bacterial strain Bacillus sp. CN-22, with its potent cyanide-degrading activity at the initial CN–concentration of 200 mg L~(?1), may be employed to effectively treat cyanide-rich wastewater, especially electroplating effluent.
机译:富含氰化物的废水的生物解毒由于其成本效益和环境友好性而变得越来越受欢迎。因此,我们开发了一种有效的方法,通过响应面方法进行了优化,可使用芽孢杆菌属(Bacillus sp。)对富含氰化物的废水进行解毒。 CN-22,是从氰化物污染的电镀污泥中新分离出来的,可以耐受aCN〜?浓度为700 mg L〜(?1)。 CN〜?的浓度在2.38%的接种液上培养72小时后,处理后废水中的废水从200降至6.62 mg L〜(?1),由0.05%KH2PO4、0.15%K_2HPO_4、1.0 mM MgCl_2、1.0 mM FeCl_3、0.1%NH_4Cl组成和0.1%甘油。 CN〜? 96.69%的可降解性与96.82%的预测值相似。最佳培养条件控制如下:初始pH为10.3;初始pH为10.3。温度31°C;转速为193 rpm。在整个处理过程中保持较高的pH值可以避免产生挥发性HCN以及与氰化物解毒相关的风险。另外,细菌菌株芽孢杆菌属。具有初始氰化浓度为200 mg L〜(?1)时有效降解氰化物的CN-22,可用于有效处理富含氰化物的废水,特别是电镀废水。

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