Anaerobic Digestion

Solution Strengths, Weaknesses and Critical Indicators

Anaerobic Digestion:

  • Long usable life and can be run reliably
  • Creates energy and generates environmental credits
  • Proper feeding & system monitoring is required to avoid system downtime
  • Proven technology for odor control
  • Proven technology for GHG reduction
  • Proven technology for pathogen reduction
  • Different types of systems produce varying gas production rates
  • Requires proper preparation of the feedstock
  • Requires other technologies for energy utilization
  • Requires other technologies for digestate handling
  • Requires other technologies to prevent nitrogen loss
  • Complex systems may require expertise not available on-farm

Overall Summary

 Primary Application

  • Dairy farms with over 500 cows or farms with meaningful organics for co-digestion.
  • Vacuumed/scraped manure, manure slurries, bedded pack that is diluted with digester effluent.

 Economic/Return on Investment Considerations

  • Economics are almost always a challenge; on a value of renewable energy basis, AD is hard to justify, at present received prices for electricity and gas.
  • AD does provide several non-monetary benefits to a farm (see below).

 Industry Uptake

  • 200 dairy-based U.S. installations and thousands worldwide.

Technology Maturity

  • Refined, standard designs available from multiple technology providers.

Primary Benefits

  • Odor reduction – 70 to 95% reduction of indicator acids.
  • Manure organic matter reduction – 35%.
  • Renewable electrical energy production – 2,000 kWh/cow possible each year.
  • Pathogen reduction – 90%+ elimination of fecal coliform organisms as a typical indicator pathogen.
  • Greenhouse gas emission reduction – amount varies by location and farm-specific, but reductions can be large, on the order of 67%+.
  • Nutrient preservation/transformation – key crop nutrients in manure are not consumed by AD and the nutrient form is more plant available than when not digested.
  • Contributes to society’s goal for organic landfill diversion – co-digestion easily achieved enhancing above benefits.

Secondary Benefits

  • Pre-treatment for tertiary treatments like ammonia stripping.
  • Post treatment of waste separation can produce adequate recycled manure solids for bedding livestock.
  • Renewable thermal heat production – 13,500 Btu’s/cow or more possible each year.
  • Nutrients converted for a more plant available form.
  • Increased crop yields possible.
  • Possible reduction of impact on water quality.

How it Works

  • Raw or pre-treated manure is conveyed into a gas tight vessel on a regular basis (daily or more often) that operates at a set temperature (38 ⁰C in most cases).
  • Naturally occurring microbes in manure break solids down into energy-rich biogas.
  • Biogas is used to fuel engine-generators to make electricity or is cleaned to make a natural gas replacement.
  • Some of the produced gas, or heat produced by an engine-generator set is used to heat the digester making it a net energy production system.

 Pre-treatment and/or Post-treatment Required

  • Pre-treatment not required when organic material is used to bed stalls and/or when manure is not substantially diluted. Pre-treatment to remove bedding sand is required with sand-bedded stalls.
  • Pre-treatment may be used to remove excess moisture from influent from barns where hydraulic flushing is used.
  • Post-treatment not required but may be employed based on overall goals of the manure treatment system.

Limitations

  • Does not reduce volume.
  • Does not work well with raw manure containing bedding sand.
  • Does not work with highly diluted manure due to cost and heat demands for a large vessel.

Other Considerations

  • Currently, most systems are farmer managed, more consistent results may be achieved by dedicated operators.
  • Adding co-digestible material will increase the nutrient content of the digestate and will need to be addressed in the nutrient management plan.
  • A portion of nutrients are converted from organic to inorganic. More nutrients are available for immediate update by crops, so nutrient management plans should be updated to reduce the potential for water quality concerns.

Solutions Providers in order of 9-Point Scoring System

Plastic Fusion Fabricators installed their first floating lagoon cover in 1991. Since that time, they have installed over seven million square feet of covers for more than 120 projects. Over the last 27 years, they have partnered with their customers to design, engineer, install, and test anaerobic digester systems using…
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Biogas is a combustible fuel which is produced through the anaerobic digestion process. Anaerobic means “in the absence of oxygen”.  In the right set of circumstances, the organic fraction of liquid or solid biomass is converted into valuable fuel. Biogas consists of roughly 40% – 70% methane, with the rest…
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Paulson Development Group develops RNG Projects to be located on dairy farms. They manage the process from design to permitting, finance, legal, construction, asset management and operations. The Business has engaged with all service providers necessary to successfully execute the development plan, whom are among the most active in the market. They…
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The DRANCO-FARM technology combines the advantages and experience of the DRANCO technology for organic household waste and applies them to pure organic feedstocks such as energy crops, food waste, harvest residues, animal manures and solid industrial organics.
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OWS offers continuously stirred-tank reactors. This conventional digester concept was adjusted according to the high OWS standards concerning reliability and safety. The BES-CSTR digester was developed to treat rather wet agro-industrial waste, energy crops, crop residues, manure and food waste
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OWS offers a horizontal plug-flow fermenter designed and constructed according to the same high OWS standards as our DRANCO digesters. The fermenter is equipped with slow-turning paddle stirrers on the inside, developed to treat agro-industrial waste, energy crops, crop residues, food waste and manure.
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Northern Biogas provides a reliable yet affordable anaerobic digester that manages waste and odor while providing an economic value to the client. Best of all, Northern Biogas makes it easy for the client to operate. At Northern Biogas, great pride is taken in designing a system that is right for…
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Nijhuis Water Technology designs and supplies manure and co-digestion systems, the Taurus reactor. Under anaerobic circumstances agriculture wastes and organic substances are digested into biogas and a digestate. The feed into the process could consist of: Manure of animals. Agricultural wastes. Food factory wastes. Co-substrates, like maize, corn, grass and…
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Martin Construction Resource has designed and built over one hundred agricultural digesters, the first being constructed in 1982. Today, MCR routinely provides round, mixed-tank-digester and covered-lagoon-digester designs for bio-gas production from farm and/or food waste. The parent company, Martin Energy Group (MEG), provides bio-gas generator sets and digester controls. Custom…
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On a farm with 80 cows the yearly CH₄ emission of manure is equal to the CO₂ equivalent of 110 ton per year (that’s about 110 cars on the road). By placing a Biolectric biogas installation on your farm this waste and its CH₄ emission are converted into green energy…
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