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尤溪县水资源概况及饮用纯净水生产线设计

发布时间:2018-09-07 10:08
【摘要】:本文论述了尤溪县水资源概况,即溪流纵横,河网密布,具有树枝状的河流水系,境内500平方公里以下,10平方公里以上的河流有79条,水资源丰富。但尤溪县饮用水企业普遍存在规模小、生产条件简陋、人员素质较低。 本文以福建省水利投资集团(尤溪)水务提供的生活饮用水为水源,设计班产40吨饮用纯净水水厂,是以当前城市型的发展规模和运行模式为蓝本,结合现今成熟的高效的生产工艺和节能环保要求,机械化程度较高,结合部分手工操作的基础模式,生产出高质量且具有市场竞争优势的产品。设计过程中以节省投资,降低生产成本为前提,兼顾发展前景,类比国内同行业和相类似的工厂,使工厂的性价比达到最大价值。按照纯净水生产工艺流程对各工序进行划分布置,生产过程清晰,生产自动化程度较高,对各环节进行控制,并且采用高压脉冲电场杀菌技术对所生产的瓶装水进行灭菌,能够有效的杀灭水中微生物,不会产生对人体有害的溴酸盐,对环境无污染,无二次污染及三废问题。
[Abstract]:In this paper, the general situation of water resources in Youxi County is discussed, that is, there are 79 rivers below 500 square kilometers and more than 10 square kilometers, which are rich in water resources. However, drinking water enterprises in Youxi County generally exist in small scale, simple production conditions and low quality of personnel. Based on the drinking water supply provided by Fujian Water Conservancy Investment Group (Youxi), this paper designs a 40 ton drinking water purification water plant, which is based on the current urban development scale and operation mode. Combined with the mature and efficient production technology and the requirements of energy saving and environmental protection, the degree of mechanization is relatively high, and combined with the basic mode of partial manual operation, the products with high quality and competitive advantage in the market are produced. In the process of design, the premise of saving investment and reducing production cost is taken into account, and the development prospect is taken into account. By analogy with the same industry and similar factories in our country, the cost performance ratio of the factory can reach the maximum value. According to the process flow of pure water production, the processes are divided and arranged, the production process is clear, the degree of production automation is relatively high, each link is controlled, and the bottled water produced is sterilized by high voltage pulse electric field sterilization technology. Can effectively kill microorganisms in water, will not produce harmful bromate to the human body, no pollution to the environment, no secondary pollution and the problem of three wastes.
【学位授予单位】:福建农林大学
【学位级别】:硕士
【学位授予年份】:2014
【分类号】:TV213;TS275.1

【参考文献】

相关期刊论文 前10条

1 刘翠;平雪良;杨瑞金;赵伟;;高压脉冲电场对梨汁中微生物的灭菌效果分析[J];安徽农业科学;2008年31期

2 夏军;刘春蓁;任国玉;;气候变化对我国水资源影响研究面临的机遇与挑战[J];地球科学进展;2011年01期

3 苏玉萍,王世铭,陈前火;复合碱式氯化铝混凝剂的合成及其性能[J];福建师范大学学报(自然科学版);2000年02期

4 吴清平;孟凡亚;张菊梅;郭伟鹏;;臭氧消毒中溴酸盐的形成、检测与控制[J];中国给水排水;2006年16期

5 牛胜田;市售瓶装水的微生物学质量及有关条例[J];国外医学.卫生学分册;1994年01期

6 赵国华,谢栋,耿政松,胡惠康,施宪法,葛自良;高浓度臭氧用于污水处理的研究[J];工业水处理;2002年09期

7 石磊,石岩;臭氧处理工业循环水试验研究[J];工业水处理;2002年09期

8 钟淳昌;《给水排水系统优化概论》第四讲——净水厂设计的优化[J];中国给水排水;1988年02期

9 何永金,陈明光;福建省饮用天然矿泉水资源与评价[J];福建地质;1999年01期

10 王恩东;;纯净水的生产设计[J];化学工程与装备;2012年08期



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