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1)  pit waste water
矿坑废水
1.
The maximum amounts of pit waste water and tailings reservoir waste water can reach 800 m~3/h .
产生的矿坑废水、尾矿库废水最高可达800m~3/h。
2)  acid mine drainage
酸性矿坑废水
1.
A new bacterial strain,designated as strain DX1-1,was isolated from acid mine drainage of Dexing mine,Jiangxi Province,China.
从取自江西德兴铜矿的酸性矿坑废水中分离出一株菌株(DX1-1),对其形态特征、生理生化、底物利用等特性进行了分析,结果表明该菌具有兼性菌的典型特征。
2.
This technique produces less air pollution and damage to geological formations, but mining companies should be careful of pollution that may generate from 'acid mine drainage' .
这种方法对空气产生的污染少,对地质构成的破坏小;但产生酸性矿坑废水(AMD:Acid Mine Drainage)污染水体。
3)  abandoned mining pit
废弃矿坑
1.
There are many abandoned mining pits in China,which have tremendous hidden danger to environment, also have important military value.
中国存在大量的废弃矿坑,这些矿坑一方面存在很大的环境隐患,另一方对也存在着重要的军用价值。
4)  effluent pit
废水坑
5)  wastewater from ashpit
灰坑废水
6)  Mine water
矿坑水
1.
Treatment of low As-containing mine water by the precipitation-flocculation process
沉淀-絮凝法处理低砷矿坑水的研究
2.
Taking Maluping mine,Kaiyang Phosphate Ore Zone as an example,change of mine water amount,its evolution process and law of correlated factors to crush into the pit due to ground surface crack with increases in mining depth,are described.
以开阳磷矿区马路坪矿为例,描述其矿山随着采矿深度的增加造成地表开裂变化及其矿坑水的水量变化和溃入矿坑的相关因素的演变过程和规律。
3.
Different paths and measures to fulfill the requirement of water supply to basin according to water quality are discussed herein based on water quality evaluation and classification of mine water in Feicheng basin.
本文在肥城盆地矿坑水的水质利用评价和分类基础上,根据盆地实际需水要求,探讨了盆地实现分质供水目标,而应采取的不同途径和方式,可达到工农业用水水质要求。
补充资料:焦化厂含酚氰废水处理设计(见含酚氰废水处理设计)


焦化厂含酚氰废水处理设计(见含酚氰废水处理设计)
design of phenolic and cyanic waste water treatment for coking plant

J iaohuaehang honfenging feishui ehuli sheji焦化厂含酚氛废水处理设计(design of phe-nolie and eyanie waste water treatment foreoking plant)见含酚氛度水处理设计。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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