Printing
and dyeing waste water treatment technology
It is used to degrade the macromolecular
substances and insoluble substances to the macromolecular substances
and soluble substances in printing and dyeing wastewater, and improve
the water's biochemical properties and BOD5/CODCr number,
which has created good environment for the subsequent oxidation
and biochemical treatment. At the same time, the good oxygen biochemical
treatment is helpful to eliminate the mud.
Medicine
waste water treatment technology
We have designed the Deep Well Aeration
Technics for Suzhou 4th Medicine Factory.
Oil
contained waste water treatment technology
The technology of Oil Contained Chemical
Waste Water Treatment developed for North West Paint Factory is
a new type oxidation channel. It has good performances and has been
popularized in China Coating and Painting Industry. We have realized
the treatment of changing thick oil and wastewater to the water
for boiler, which can replace the fresh water. This technology has
made the oil field wastewater drainage to zero discharge and make
the high temperature thick oil waste to be a new resource.
Chemical
Waste water treatment technology
We have completed the wastewater treatment
engineering for Zhejiang Nice Chemical Industry Co., Ltd. This
project has solved the problems of chemical wastewater treatment
existing in China.
Membrane
biochemical reactor (MBR) technology
Membrane biochemical reactor is a newly
developed water treatment technology. It has integrated the Membrane
separation technology and biochemical technology effectively.
It can eliminate the harmful substances in the wastewater. It
is small and has high performances, widely used in city domestic
waste water treatment and recycling, industrial waste water treatment
and recycling, rubbish landfill percolating water treatment and
recycling, water treatment plant's influent water pretreatment
and follow-up treatment and cleaning production.
Tel: 86-20-87365421 Fax:
86-20-87365725
E-mail: sales@tinci.com
Person to Contac : Keer Wang
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