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常用鱼体消毒液的配用
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作者 贾梅英 《农家科技》 2006年第8期18-18,共1页
关键词 鱼体 消毒 细菌性疾病 食盐液 车轮虫 斜管虫 千克 水温 鱼病
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鱼体消毒药液的配制与应用
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作者 张仕刚 邱海波 《技术与市场》 2004年第3期30-30,共1页
用药液进行鱼体消毒,是投放鱼种前的一项重要工作,是预防鱼病、提高养殖鱼类成活率的有效措施。下面介绍常用的鱼体消毒药液的正确配制与应用方法。
关键词 鱼体 消毒药 配制 漂白药 硫酸铜 食盐液 敌百虫
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鱼病高发期前用药防病效果佳
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作者 永清 海波 《农业科技与信息》 2004年第6期39-39,共1页
每年的6~8月份,由于气温高,投饵量大,加之水温高,水质差,是鱼病高发季节。根据这一鱼病易发生特点,尽量在鱼病高发期前用药,可起到事半功倍的预防效果。按照一般规律,6月10日之前,也就是养殖前期,鱼一般很少发病;6月10~8月20日是鱼病... 每年的6~8月份,由于气温高,投饵量大,加之水温高,水质差,是鱼病高发季节。根据这一鱼病易发生特点,尽量在鱼病高发期前用药,可起到事半功倍的预防效果。按照一般规律,6月10日之前,也就是养殖前期,鱼一般很少发病;6月10~8月20日是鱼病高发期;8月20日以后,一直到当年水产品上市,鱼病发生率有所下降。如果在水产养殖前期鱼病较重发生,则主要原因是鱼种放养阶段消毒工作没有做好,随着水温升高,带病鱼迅速发病。据预测,今年气候不太正常,鱼病可能较重发生。从目前情况来看,今年鱼病发生比往年有所加重。沿海地区土池培育的河蟹苗。 展开更多
关键词 疾病防治 用药效果 食盐液 高锰酸钾 漂白粉
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Study on Hatching Rate of Artemia fanciscana Cysts in Different Sources of Saline 被引量:1
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作者 A. Boonyapakdee P. Chumchomchai 《Journal of Agricultural Science and Technology(A)》 2011年第8期1106-1108,共3页
A comparison of Arternia cysts hatching (Artemia franciscana) were conducted on bleaching and non-bleaching with sodium hypochloride on five dilution of salt solution by using sea water, sea salt solution, artificia... A comparison of Arternia cysts hatching (Artemia franciscana) were conducted on bleaching and non-bleaching with sodium hypochloride on five dilution of salt solution by using sea water, sea salt solution, artificial sea salt solutions, iodine added cooking salt solution, and rock salt solutions. All solutions were adjusted at 30 ppt of salinity in 1 litter cylinder. The experiment was carried out with Factorial Experiment in CRD. After 24 hours, a randomized count of living Artemia was taken a photograph of Artemia size by stereo microscope. A statistic analysis showed that all data of bleaching and non-bleaching were no significant difference (P 〉 0.05). The hatching ability of Artemia cysts in solutions was examined and the results showed that sea salt solution was 327.33 × 103.4. 28,536.5263 Nauplii/liter, sea water 316 ×10^3± 20,420.5779 Nauplii/liter, artificial sea salt solutions 314.33× 10^3 ± 34,268.5473 Nauplii/liter, iodine added cooking salt solution 309.66 ± 10^3 .4- 22,898.3260 Nauplii/liter, and rock salt solutions 305.33 ± 10^3 ± 25,579.9401 Nauplii/liter, respectively. The body length of Artemia was compared and the data showed that there was no significant difference (P 〉 0.05). The highest body length was found in sea salt solution 527.32 ± 4.70μm, sea water 521.65±8.51 μm, artificial sea salt solutions 522.08 ± 10.04 μm, iodine added cooking salt solution 522.67 ±7.87 μm, and rock salt solutions 516.33 ±11.15μm, respectively. 展开更多
关键词 ARTEMIA salt solution artemia cysts hatching rate
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The Performance of ZX Type Scale Inhibitors in Evaporation Process of Salt Electrolyte
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作者 陈振兴 黄彩娟 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2001年第3期280-283,共4页
Rapid fouling tests were used to investigate the scale-preventing property of ZX type scale inhibitors in evaporation of salt electrolyte. ZX type scale inhibitors were tested at high temperature under the boiling con... Rapid fouling tests were used to investigate the scale-preventing property of ZX type scale inhibitors in evaporation of salt electrolyte. ZX type scale inhibitors were tested at high temperature under the boiling conditions. The results indicate that ZX type scale inhibitors have remarkable scale preventing performance during evaporation of salt electrolyte even at the temperature up to 150℃. Among them, ZX Ⅲ type scale inhibitor is the best with the rate of scale-preventing reaching to 88.9%. In addition, the scale preventing mechanism of ZX type scale inhibitors was analyzed and its application prospect in the field of continuous commercial fouling preventing discussed. 展开更多
关键词 on-line scale preventing scale inhibitor salt electrolyte EVAPORATION FOULING
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Study on in Vitro Degradation of Sutures for Decomposable Esophageal Stent
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作者 WANG Qin LIU Ji-yong +4 位作者 WANG Chuan-dong MA Li-xia LIU Yang LI Jun-qi LIU Jin 《Chinese Journal of Biomedical Engineering(English Edition)》 2012年第2期73-79,共7页
PLLA and PGLA sutures for decomposable esophageal stent were investigated in phosphate buffer solution (PBS) (pH=7.4) at 37 ℃ for a period of 8 weeks. In vitro degradation was studied by determining the change of... PLLA and PGLA sutures for decomposable esophageal stent were investigated in phosphate buffer solution (PBS) (pH=7.4) at 37 ℃ for a period of 8 weeks. In vitro degradation was studied by determining the change of weight loss, pH value, intrinsic viscosity, tensile strength, orientation degree, degree of crystallinity, melting point and surface morphology of the suture samples. The results showed that all properties of PLLA sutures had no obvious changes, however, the properties of PGLA sutures all changed significantly. The pH value, intrinsic viscosity, tensile strength, orientation degree and degree of crystallinity decreased gradually, and the weight loss of PGLA sutures increased with the degradation time. At 6th week, tensile strength of PGLA sutures nearly reached O, and weight loss approached to 70% at 8th week. The results of DSC showed that melting point of crystalline region of PGLA sutures substantially remained unchanged and melting heat enthalpy increased gradually during in vitro degradation, and the new ordered regions appeared in the amorphous area. The results of SEM showed that surface coating of PGLA sutures spalled initially, and then the sutures occured transverse rupture. Therefore, PGLA suture is suitable to prepare decomposable esophageal stent to expand benign esophageal stenosis or stricture, but stent prepared by PLLA suture is not appropriate for the treatment of benign esophageal stenosis because it is decomposed for more than 2 months. 展开更多
关键词 PLLA PGLA SUTURE in vitro degradation decomposable esophagealstent
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五种鱼体消毒液配制法
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作者 谢岗 海波 《农村新技术(加工版)》 2009年第4期43-43,共1页
水产养殖过程中,对鱼体消毒,要正确配制和适当使用下列消毒液,才能安全有效地对鱼体进行消毒。1.食盐液。每100千克水溶入食盐2~4千克。在10~15℃的食盐水中浸洗鱼体10~15分钟,可杀死鱼体上的车轮虫、斜管虫、粘细菌等,可预防... 水产养殖过程中,对鱼体消毒,要正确配制和适当使用下列消毒液,才能安全有效地对鱼体进行消毒。1.食盐液。每100千克水溶入食盐2~4千克。在10~15℃的食盐水中浸洗鱼体10~15分钟,可杀死鱼体上的车轮虫、斜管虫、粘细菌等,可预防鱼类细菌性疾病和寄生虫病。 展开更多
关键词 鱼体消毒 消毒 配制法 细菌性疾病 养殖过程 寄生虫病 食盐液 食盐
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