The size, shape, compactness of activated sludge flocs, as well as the ratio and growth status of zoogloeal bacteria and filamentous bacteria constituting flocs, can well reflect wastewater treatment performance. Microscopic observation of floc microstructures enables preliminary judgment of sludge health status.
Note: Floc particle size is greatly affected by shear force generated by aeration and agitation; values vary under different operating conditions.
Observation of newly-formed zoogloeal flocs indicates abundant organic matter and vigorous bacterial proliferation. This is a typical feature in the initial sludge cultivation stage or under high organic loading, with clearly distinguishable bacterial morphology.
Healthy flocs possess the following characteristics:
Such flocs feature excellent adsorption and settling performance.
Disintegrated flocs are fundamentally different from newly-formed zoogloeal flocs. Although individual bacterial shapes are distinguishable in newly-formed zoogloeal flocs, bacteria inside poorly compacted, disintegrated flocs are ruptured. The floc structure becomes loose, and settling performance deteriorates significantly.
Sludge under different conditions shows obvious differences in sedimentation tests.
Large floc particles with clear edges, dense and closed structures. Flocs are supported by zoogloeal bacteria as the skeleton, with a small quantity of filamentous bacteria interspersed (far less abundant than zoogloeal bacteria). No free bacteria are detected. Microfauna are dominated by sessile ciliates (Vorticella, Opercularia, Epistylis, etc.); Aspidisca can be seen crawling on flocs, and rotifers grow actively. Countermeasure: Strengthen routine management and maintain current operating parameters.
Loose floc structure and reduced floc particle size. Massive increase in free-swimming ciliates (Colpidium, Paramecium, Bodo, Monas) and sarcodines (Amoeba). Cause: Bacteria consume extracellular polysaccharide matrix of zoogloea for self-maintenance, leading to loose floc structure. Countermeasure: Reduce sludge return flow, supplement nutrients, shorten sludge retention time (SRT) to raise sludge loading.
Similarly loose and smaller flocs, accompanied by large quantities of free bacteria. Cause: Abundant nutrients stimulate massive growth of free bacteria; flocculated zoogloeal bacteria tend to deflocculate into single free cells. Countermeasure: Reduce influent flow and sludge wasting to lower sludge loading.
Appearance of sulfur bacteria, spirochetes and Metopus. Countermeasure: Boost aeration in the aeration tank to elevate dissolved oxygen concentration.
When DO exceeds 5 mg/L, abundant sarcodines and rotifers emerge. Countermeasure: Reduce aeration volume.
Euplotes, Spirostomum, Rotaria, Arcella become dominant, indicating active nitrification. Countermeasure: Appropriately increase BOD loading.
Appearance of Litonotus, Loxophyllum, Trachelius signals activated sludge is recovering from deteriorated status toward normal. Tip: Positive signal; continue existing adjustment strategy.
Massive occurrence of rotifers and nematodes is associated with activated sludge aging, usually observed in the early aging phase.
Rising populations of Epistylis, Aspidisca, Amphileptus, Vorticella indicate improved effluent quality. However, when sludge structure deteriorates and loosens, free-swimming ciliates multiply drastically, causing turbid effluent.
表格
| Biological Phase Characteristics | Probable Causes | Countermeasures |
|---|---|---|
| Dominated by sessile ciliates | Normal operation | Maintain current conditions |
| Sharp increase of free-swimming ciliates | Excessively high or low loading | Adjust organic loading |
| Sharp rise of flagellates & amoebae | Poor treatment efficiency | Inspect influent quality and operating parameters |
| Presence of sulfur bacteria & spirochetes | Insufficient dissolved oxygen | Increase aeration rate |
| Abundant sarcodines & rotifers | Excess dissolved oxygen | Reduce aeration |
| Dominated by Euplotes, Arcella | Low loading, nitrification in progress | Increase BOD loading |
| Appearance of Litonotus, Loxophyllum | Sludge undergoing recovery | Continue ongoing adjustments |
| Massive rotifers and nematodes | Sludge aging | Increase sludge wasting |
| Presence of actinomycetes | Long hydraulic retention time / excessive aeration | Shorten sludge age and reduce aeration |