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废水的生化深度处理 被引量:2
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作者 hiroshi ishida 盛斌 《世界环境》 1995年第2期14-17,共4页
引言近年来,在废水的深度处理领域,迅速开发普及着多种多样的生物反应器。这些反应器与传统的悬浮增殖型生物反应器相比较,可以更好地固定高浓度的生物量;设备更为集约化;固液分离性能更好;除可去除议)D外还可去除氮等。
关键词 废水处理 生化深度处理 生物膜法 生物反应器
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Crayfish Robot That Generates Flow Field to Enhance Chemical Reception
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作者 Mari Ohashi Yoshinori Kagawa +1 位作者 Tomomichi Nakatsuka hiroshi ishida 《Journal of Sensor Technology》 2012年第4期185-195,共11页
This paper describes a wheeled underwater robot developed for locating chemical sources autonomously under stagnant flow conditions. In still water, the released chemical stays in the immediate vicinity of the source ... This paper describes a wheeled underwater robot developed for locating chemical sources autonomously under stagnant flow conditions. In still water, the released chemical stays in the immediate vicinity of the source location. The search for chemical sources under such conditions is extremely laborious since the presence of a chemical source cannot be detected from a distant place. The chemical sensors on the robot show no response unless a chemical substance released from the source arrives at the sensors. Crayfish in search of food are known to actively generate water currents by waving their small appendages with a fan-like shape. It is considered that the generated water currents help their olfactory search. The smell of food is carried to their olfactory organs from the surroundings by the generated flow, and then is perceived. The robot presented in this paper employs arms mimicking the maxillipeds of a crayfish to generate water currents and to draw chemicals to its sensors. By waving the arms vertically, a three-dimensional flow field is generated and water samples are drawn from a wide angular range. The direction of a chemical source can be determined by comparing the responses of four laterally aligned electrochemical sensors. Experimental results show that the flow field generated by the maxilliped arms is more effective in collecting chemical samples onto the sensors than that generated by a pump. The robot equipped with the maxilliped arms can detect the presence of a chemical source even if the source is placed off the trajectory of the robot. 展开更多
关键词 Active Sensing UNDERWATER ROBOT CHEMICAL Sensor CRAYFISH
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