Parameter | Target window | Why it matters |
|---|
pH | 6.8–7.2 (methanogens) | Below 6.5, methanogenesis collapses; correction lags the drop |
Alkalinity | 2,000–5,000 mg/L CaCO₃ | Buffers VFA spikes; the early-warning reservoir |
VFA:alkalinity (FOS/TAC) | < 0.3 stable · 0.3–0.4 watch · >0.4 act | Most reliable single indicator of a souring digester |
Temperature | Mesophilic 35–40 °C · Thermophilic 50–57 °C | ±1–2 °C swings stress methanogens; thermophilic is faster but fragile |
OLR | 2–4 kg VS/m³·day | Overloading outpaces methanogen uptake → VFA build-up |
C:N ratio | 20:1 – 30:1 | High N (manure/protein) risks ammonia toxicity; high C starves biology |
Free ammonia (FAN) | < 80–150 mg/L NH₃ | Rises with pH & temperature; classic manure-digester inhibitor |
Trace-element (micronutrient) dosing
Methanogen enzymes are metalloenzymes. Digesters running on energy crops, food waste or low-diversity feedstocks routinely become trace-metal limited long before anyone suspects biology. Controlled dosing of iron, cobalt, nickel, selenium, molybdenum and tungsten restores enzymatic activity and is one of the fastest ways to lift a stalled methane yield. Typical maintenance targets sit in the low mg/L to µg/L range and must be matched to feedstock and lab data — overdosing wastes chemical and can be inhibitory.
Antifoam
Foaming — driven by surfactants, protein-rich feed, overloading or filamentous growth — carries biomass into gas lines, fouls foam traps and can trip the plant. Automated, event-triggered antifoam dosing (rather than continuous overdosing) controls it at the lowest chemical cost.