6 research outputs found

    青、草、鲢、鳙、鲤对氢离子浓度的生存适应性

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    <正> 一、引言氢离子浓度(pH值)的变化对于水生生物,特别是鱼类的生活常常被认为是直接或间接发生影响的因子之一。1920年,M.E.Jewell氏开始注意到水质的氢离子浓度变化对于两栖类蝌蚪代谢和再生作用的影响,他发现最适宜的氢离子浓度是中性或接近中性,同时发现再生率和再生总量和水中溶氧含量有密切关系。E.B.Power氏(1922)开始注意到氢离子浓度与鱼类呼吸生理之间的关系。此后,有许多学者研究了氢离子浓度对鱼类耗氧率的影响,以及氢离子浓度对鱼类从水中吸取溶氧机能的影响。其

    Experimental research on vapor pressure of HFC- 125

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    Experimental research on vapor pressure of HFC- 125

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    关于鱼塘有效深度的初步探讨

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    <正> 1958年,池塘养鱼事业也象祖国的其它事业一样,在党的正确领导下,掀起了巨大的跃进,高额丰产大量出现,并且在这丰产经验的基础上总结出“水、种、饵、密、混、轮、防、管”的养鱼八字经。其中“水”字是包含水质和水深二重意义,是八字养鱼经的第一个字,有其重要的意义。人们一谈到养鱼与种稻不同之处,就是养鱼是立体生产,由于各种鱼类习性各异,

    Platinum Modified with Hydrogen Molybdenum/Tungsten Bronze as Electrocatalysts for Direct Small Organic Molecule Fuel Cell

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    减少铂用量和提高铂的抗中毒能力,是直接有机小分子燃料电池实用化过程期待解决的难题,由此而引发了广泛的研究,迄今已先后建立了许多的解决方案.作者也提出了基于氢钼/钨青铜(HxMo(W)O3,0There are several problems that limit the application of direct small organic fuel cell,including the use of precious platinum and the activity loss of platinum due to the intermediates poisons from the oxidation of small organic molecules.These problems have attracted wide interest and many solutions have been proposed.We have developed a new method to reduce the platinum usage and improve its activity,based on the modification of platinum with hydrogen molybdenum/tungsten bronze(HxMo(W)O3,0作者联系地址:华南师范大学化学与环境学院,广东高校电化学储能与发电技术重点实验室;Author's Address: School of Chemistry and Environment & Key Lab of Electrochemical Technology onEnergy Storage and Power Generation in Guangdong Universities,Guangzhou 510006,Chin
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