1) cut of pollution load
污染负荷削减
3) load shedding
负荷削减
1.
A power flow tracing based load shedding model for reliability evaluation of large scale power grid is proposed and a calculation model for distribution of reliability indices of bus and system to components is built, on this basis the weak links of power grid can be easily found out.
在负荷削减的潮流跟踪模型中,按负荷对发电机和线路利用系数的大小顺序削减负荷。
4) pollution reduction
污染削减
1.
Based on monitoring 14 rainfall-runoff samples in 7 rainfall events, the reduction effect of sunken green space on urban rainfall-runoff pollution was discussed, and effect of influent loading, soil and land cover of sunken green space, and rainfall duration on pollution reduction rate was analyzed.
以现场7次降雨14组径流污染监测数据为基础,探讨了下凹式绿地对城市降雨径流污染的削减效应,分析了径流污染负荷、绿地土壤与覆被植物、降雨历时等因素对污染削减率的影响。
5) pollution load
污染负荷
1.
Contribution of pollution load of storm runoff in urban areas of Hanyang, Wuhan City on the receiving water;
武汉市城区降雨径流污染负荷对受纳水体的贡献
2.
Sorption-desorption behaviors of Cd~(2+) and Pb~(2+) in different pollution load soils;
不同污染负荷土壤中镉和铅的吸附-解吸行为
3.
Water pollution load in coastal zone of Xiamen:Estimation and forecast;
厦门市海岸带水污染负荷估算及预测
6) pollutant load
污染负荷
1.
On the basis of the social, economical and investigated environmental monitoring data, the results revealed that the pollutant load of Yangtze River in Jiangsu province contains 210 997.
根据江苏省沿江各地市社会经济和调查的环境监测资料,分析了沿江大开发背景下长江江苏段的水环境污染负荷及治理现状并预测了未来演变趋势,结果显示:2002年长江江苏段污染负荷的废水总量为210997。
2.
Current and future water quality condition of Dapeng Bay was simulated using Delft 3D model on the base of pollutant sources investigation and pollutant load estimation.
在污染源调查和污染负荷估算的基础上,利用Delft3D数学模型对大鹏湾现状和未来条件下的水质进行了数值模拟,并采用模型试算法估算出大鹏湾的水环境容量。
3.
The relationship among rainfall,the soil N content in the watershed and N pollutant load at the exit of the watershed was analyzed by mathematic model in the paper,using the soil N moving law in order to reveal the mechanism how N pollution works.
根据氮在土壤中的运移规律,运用建立的数学模型分析流域降雨量和土壤氮含量与流域出口氮污染负荷之间的关系,揭示了氮污染的形成机理。
补充资料:污染
分子式:
CAS号:
性质:现今绝大多数发酵过程为纯种培养过程,即在培养过程中只允许一种微生物生长,若有其他种微生物窜入培养液中生长则叫污染,也叫染菌。发酵过程被杂菌污染后,由于杂菌生长会与生产菌种争夺营养和溶氧,杂菌所分泌的代谢物不但会影响目标产物的纯度还可能降低或升高pH值,还可能对生产菌种起抑制作用,大大干扰生产菌的生长,甚至使生产菌死亡,对发酵造成极大的危害。
CAS号:
性质:现今绝大多数发酵过程为纯种培养过程,即在培养过程中只允许一种微生物生长,若有其他种微生物窜入培养液中生长则叫污染,也叫染菌。发酵过程被杂菌污染后,由于杂菌生长会与生产菌种争夺营养和溶氧,杂菌所分泌的代谢物不但会影响目标产物的纯度还可能降低或升高pH值,还可能对生产菌种起抑制作用,大大干扰生产菌的生长,甚至使生产菌死亡,对发酵造成极大的危害。
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