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作 者:孙晓宇 李泽兵[1,2] 王淼[1,2] 陈诗怡 孙占学 袁志华[1,2] 郑增军[1,2] 龚慧纯 SUN Xiao-yu;LI Ze-bing;WANG Miao;CHEN Shi-yi;SUN Zhan-xue;YUAN Zhi-hua;ZHENG Zeng-jun;GONG Hui-chun(State Key Laboratory of Nuclear Resources and Environment,East China University of Technology,Nanchang 330013,China;School of Water Resource and Environmental Engineering,East China University of Technology,Nanchang 330013,China)
机构地区:[1]东华理工大学核资源与环境国家重点实验室,南昌330013 [2]东华理工大学水资源与环境工程学院,南昌330013
出 处:《有色金属(冶炼部分)》2022年第6期84-90,共7页Nonferrous Metals(Extractive Metallurgy)
基 金:国防科技工业局核设施退役及放射性废物治理科研项目(G20210004);国家自然科学基金资助项目(41772266)。
摘 要:由于酸法地浸生产常年注入硫酸导致采区及其周边地下水形成硫酸盐污染。为解决此问题,采用硫酸盐还原菌培养液模拟矿山废水,利用生物反应器进行循环批次试验和连续运行试验,探讨不同种类填料、循环上升流速、水力停留时间(HRT)、进水SO_(4)^(2-)浓度、COD/SO_(4)^(2-)值等对硫酸盐还原效果的影响。试验结果显示,最佳运行条件为:海绵+K3混合填料、HRT=12 h、进水SO_(4)^(2-)浓度约0.8 g/L、COD/SO_(4)^(2-)=2;长期运行结果表明,30℃时,连续出水SO_(4)^(2-)浓度约0.10 g/L,SO_(4)^(2-)去除率达到87.9%,达到地下水Ⅳ类水及以上标准。Sulfate pollution to the mining area and its surrounding groundwater was caused by perennial injection of sulfuric acid during acid in-situ leaching.To solve the problem,sulfate-reducing bacteria culture solution was used to simulate mine wastewater,and bioreactor was used to conduct cyclic batch tests and continuous operation tests.Effects of different fillers,circulating upward flow rate,hydraulic retention time(HRT),influent SO_(4)^(2-)concentration,and COD/SO_(4)^(2-)value on sulfate reduction were discussed.The test results show that the optimum operating conditions include sponge+K3 mixed filler,HRT=12 h,influent SO_(4)^(2-)concentration of about 0.8 g/L,and COD/SO_(4)^(2-)=2.The long-term operation results show that at 30℃,the effluent SO_(4)^(2-)concentration can reach 0.10 g/L,and removal rate of SO_(4)^(2-)is 87.9%,which meet the standard of groundwater classⅣand above.
分 类 号:X52[环境科学与工程—环境工程]
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