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A poly-caprolactone based biofilm carrier for nitrate removal from water

机译:一种基于聚己内酯的生物膜载体,用于从水中去除硝酸盐

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摘要

Nitrate removal from water has been accomplished by heterotrophic biofilms using organic carbon as a source of reducing power. To overcome the natural limitation in organic carbon in water, a poly--caprolactone based biofilm carrier that serves simultaneously as a biofilm carrier and as a source of organic carbon was developed and tested in the present work. The feasibility of the new biofilm carrier for nitrate removal from water was evaluated in a packed bed reactor. The combination of size and structure provided a carrier element having high surface area and void volume, 1,170 m2/m3 and 67 %, respectively. A maximum denitrification rate of 4.4 mg NNO3 /(L.h) (9.2 mg NNO3 /(m2.h)) was achieved in the packed bed reactor at 20 °C and pH 7.0. Main advantages of the biofilm carrier developed in the present work are its mechanical stability in water even after biofilm formation and controlled release of organic carbon by enzymatic reactions. The proposed biotechnology to remove nitrate from groundwater is robust and easy to operate.
机译:硝酸盐从水中的去除已通过使用有机碳作为还原源的异养生物膜完成。为了克服水中有机碳的自然限制,在本工作中开发并测试了同时用作生物膜载体和有机碳源的基于聚己内酯的生物膜载体。在填充床反应器中评估了新型生物膜载体从水中去除硝酸盐的可行性。尺寸和结构的结合提供了一种具有高表面积和空隙体积的载体元件,分别为1,170 m2 / m3和67%。在20°C和pH 7.0下的填充床反应器中,最大反硝化速率为4.4 mg NNO3 /(L.h)(9.2 mg NNO3 /(m2.h))。在本工作中开发的生物膜载体的主要优点是即使在生物膜形成后其在水中的机械稳定性和通过酶促反应控制有机碳的释放。拟议的从地下水中去除硝酸盐的生物技术坚固且易于操作。

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