1) source water
源水
1.
Analysis on water quality purifying effect in biofilm formation and start process of Dongshen source water biological pretreatment project;
东深源水生物预处理工程挂膜启动过程水质净化效果变化的分析
2.
Pilot test was made on the improvement of source water quality in Meiliang Bay through the use of enriched microbes in Taihu Lake by artificial media.
在水力停留时间为6~7d、源水CODMn为4。
3.
The method of HPLC was applied to examine exactly the contents of trace intracellular and extracellular LR, YR, RR microcystin in source water and treated water, of which the samples were collected from August 1998 to June 1999 and concentrated by ODS silica gel column.
通过ODS硅胶柱浓缩某市1998年8月~1999年6月期间水体中的痕量微囊藻毒素,应用高效液相色谱方法,精确检测水源水及出厂水中藻细胞内外LR、YR、RR型微囊藻毒素含量。
2) raw water
源水
1.
The inhibition of low light intensity on the growth of Microcystis aeruginosa in raw water;
低光照度对源水中铜绿微囊藻增殖的抑制作用
2.
The influence extent and reason of suspended solid (SS) on polluted raw water bio pretreatment operation were studied in this article.
探讨了悬浮物对源水生物预处理装置运行的影响程度和影响机理 。
3.
In this paper is introduced the principle of biological contact oxidation technology (BCOT) to treat polluted raw water.
本文介绍了生物接触氧化工艺处理污染水源水的原理 ,综述了两种类型填料的生物接触氧化工艺在源水处理中的污染物去除效果和生产性应用现状、源水生物接触氧化处理的生化动力学规律和微生物学特
3) water source
水源
1.
Water quality health risk assessment and counter-measure for drinking water source;
饮用水水源水质健康风险评价及对策
2.
Distribution of algae and the establishment of prediction model of cyanophyta cell density in some surface water source of Zhengzhou;
郑州市某地面水源不同季节藻类分布和蓝藻细胞密度预测模型的建立
3.
Analysis of water source from the collapse column of Changcun coalmine;
常村煤矿N_2-7陷落柱及其水源分析
4) water resource
水源
1.
Feasibility of the permenent water resource in Fenxiao mine area;
汾孝矿区永久供水源的可行性分析
2.
Application of integer planning in optimal allocation of drinking water resources in the rural area;
整数规划在农村饮水安全水源优化配置模型中的应用与探讨
3.
Based on hydrochemical data of water samples from each water-bearing stratum, a discernment model of mine shaft water resource outburst is established using fuzzy comprehensive evaluation.
根据各含水层水样的水化学资料 ,用模糊综合评判方法建立矿井突水水源判别模型 ,并通过与其它方法对比 ,效果较
5) water resources
水源
1.
Three causes are found,that is,the water resources,the passages and the power.
根据矿区及11201工作面回风巷水文地质特征,对11201工作面回风巷突水原因进行了全面分析,提出了水源、通道、动力三个突水的主要因素,并据此提出了预防突水措施。
2.
Analyses the make-up of the ground water resources system ,in the same time ,points out the importance of exploiting the ground water resources, studies the water quality, the water quantity, the water pressure of the surface water of collapse zone.
针对任楼煤矿生产用水水源紧缺的现状,分析地下水资源系统构成,提出了涌水量减少的原因和解决生产用水的途径及开发地下水资源的重要性。
3.
The average amount of water resources apiece inTianjin is 160m3 , which is one fifteenth of our country .
根据天津市经济社会可持续发展和生态环境保护对水资源的要求,以及本市水源条件,提出城市水源合理配置方案。
6) water sources
水源
1.
The samples of groundwater chemistry collected at Pingdingshan Coal Mine were analyzed geostatistically to identify from which apuifer(s) the water originate(s),and to set up an identification model of gushing water sources.
对在平顶山矿区所采集的地下水样品进行了多元统计分析,以识别一些来源不清的样品归属,建立该区突(涌)水水源判别模型。
2.
By analyzing the existing water works raw water and effluent water quality,two methods,including seeking premium water sources actively and enhancing water treatment process to improve dring water quality were proposed and a multivariant cost-effectiveness comparison was presented finally.
对桐乡市现有水厂原水、出厂水水质做出分析,提出了积极寻找优质的水源和强化水处理工艺来改善自来水水质的两个对策,并进行了多方案的技术经济比较。
3.
This paper expounds on the factors affecting the efficiency of the WSHP including water quantity, water temperature, and water quality; introduces different water sources, water gaining structures, water processing technology, and water returning technology; and discusses the problems on the design and operation of water sources for WSHP.
水源是应用水源热泵空调系统的前提。
补充资料:奉和陆使君长源水堂纳凉效曹刘体
【诗文】:
柳家陶暑亭,意远不可齐。烦襟荡朱弦,高步援绿荑。
爱公满渟客,来是清风携。滢渟前溪上,旷望古郡西。
六月正中伏,水轩气常凄。野香袭荷芰,道性亲凫鹥。
禅子顾惠休,逸民重刘黎。乃知高世量,不以出处暌。
【注释】:
【出处】:
全唐诗:卷817-9
柳家陶暑亭,意远不可齐。烦襟荡朱弦,高步援绿荑。
爱公满渟客,来是清风携。滢渟前溪上,旷望古郡西。
六月正中伏,水轩气常凄。野香袭荷芰,道性亲凫鹥。
禅子顾惠休,逸民重刘黎。乃知高世量,不以出处暌。
【注释】:
【出处】:
全唐诗:卷817-9
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条