Application scenarios:
The hydrolytic acidification process package refers to the upflow coupled hydrolytic reactor, a composite hydrolytic reactor featuring upflow mode and point-to-point water distribution.Inclined enzyme-floating fillers are installed inside the reactor, which enhances solid-liquid separation while coupling with biofilm reactions. It serves as an excellent solution for the anaerobic pretreatment of refractory organic wastewater from municipal, industrial and park sources.
Structure&Principle:
Structurally, it is divided from top to bottom into the water distribution zone, effluent collection zone, sedimentation-coupled reaction zone, sludge reaction zone, and influent distribution zone.It is a hydrolysis reactor integrating physicochemical processes including sedimentation adsorption, interception and bioflocculation, as well as biodegradation functions such as hydrolysis and acidification.
Main Features:
1、Uniform water:distribution:Conventional water distribution adopts multi-point water replenishment and pulse modes, which solves the problems of uneven water distribution, short-circuit flow and easy clogging of water distribution holes in traditional upflow hydrolytic acidification tanks.
2、High hydrolysis efficiency:The sedimentation-coupled reaction zone is filled with enzyme-suspended carriers, which act as microbial carriers to increase the biomass in the reactor and enrich the microbial community.
3、Capable of primary sedimentation:A large number of microorganisms in the reactor increase the B/C ratio of the wastewater, while effectively retaining inert substances and inorganic particles through bio-enhanced flocculation. SS can be removed via sludge discharge.
4、Sludge is not easily lost:The inclined installation of enzymefloating fillers effectively increases the separation area, improves solidliquid separation efficiency, and prevents sludge loss.
5、Stable process operation:The water distributor is equipped with an automatic backwashing function to realize fully automatic cleaning, ensuring no clogging and maintenance-free operation of the system, as well as uniform water distribution and stable process performance.
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