Biosolids Compost Informational Handout

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Transcription:

Biosolids Compost Informational Handout Table of Contents Section 1.0 Section 1.1 Section 2.0 Section 3.0 Section 4.0 Section 5.0 Section 6.0 Table 1: Table 2: Biosolids Compost Benefits of Using Compost Handling Requirements and Guidelines on Using Compost Nutrient Loading Disclaimer Acknowledgement Plant Growth Parameters Compost Product Trace Metal and Pathogen Content

1.0 BIOSOLIDS COMPOST Biosolids compost is a product of wastewater biosolids that has been biologically decomposed and stabilized under controlled conditions to a state in which it can be safely handled, stored, and applied to the land. 1.1 BENEFITS OF USING COMPOST A. Creates a better plant root environment by improving soil structure and porosity, and reduces soil density to resist compaction. B. Has a high quantity of organic matter, which is essential for a healthy soil biota. C. Improves and stabilizes soil ph. D. Supplies a variety of macro and micronutrients such as Nitrogen, Phosphorous, Potassium, Calcium, Magnesium, and Iron. E. Improves cation exchange capacity (CEC) of soils and growing media, thus improving their ability to hold nutrients for plant use. F. Supplies beneficial microorganisms to soils and growing media. G. Increases infiltration and permeability of heavy soils, thus reducing erosion and runoff. H. Improves water holding capacity, thus reducing potential water loss and leaching I. May control or suppress certain soil-borne plant pathogens J. Can bind and degrade specific pollutants. 2.0 HANDLING Compost, like topsoil, contains living microorganisms. Wash hands with soap after handling material. 3.0 REQUIREMENTS AND GUIDELINES ON USING COMPOST User shall agree to use biosolids compost in compliance with Federal and State Regulations. A. IMPROVING MARGINAL SOILS Evenly apply 1 to 2 inch layer of compost and incorporate into the soil to a depth of 4 to 6 inches, for a volumetric inclusion rate of 25% to 50%, using a plow, rototiller, or disc until compost is uniformly mixed. B. VEGETABLE GARDENS Evenly apply 1 to 1.5 inch layer of compost on ground and incorporate the compost to an approximate depth of 6 inches using plow, disc, or other appropriate tools.

C. TURF ESTABLISHMENT Evenly apply 1 to 2 inch layer of compost on ground and incorporate the compost to an approximate depth of 5 to 7 inches, using rototiller or disc until compost is uniformly mixed. D. LANDSCAPE MULCH Evenly apply up to 2 inches of compost around base of trees, shrubs, and other plants using shovel, rake, or other appropriate equipment. Avoid placing mulch against the plant s trunk or stem to avoid potential disease and insect damage. A soil rim or berm may be formed around tree trunk before mulching to help capture water. Once applied, mulch may be watered to help keep it in place. 4.0 NUTRIENT LOADING Research on biosolids compost has found the following nitrogen mineralization (available to plants) rates: First season 10%-15% Second season 5% Third season 2%-3% For example, a 1.5 inch layer of GHU biosolids compost applied on 1000 S.F. will have approximately 25 pounds of total nitrogen, but the available nitrogen the first season will be 25lbs X 10% = 2.5 pounds of plant available nitrogen. Typically, bluegrass has a nitrogen requirement of 2 to 3.5 pounds of nitrogen per year. Additional information and assistance concerning application rates will be available to user upon request. 5.0 DISCLAIMER The suggested usage of compost describes processes used successfully by end users and demonstrated effective through research in specific situations and with specific compost products. The suggested rates and data were developed to provide general assistance relative to the use of compost, and should not be considered as formal recommendations for any specific product or project. Due to variations in local field conditions and crops used, consultation with local soil experts, cooperative extension, soil conservation service, or agriculture laboratories is advisable. 6.0 ACKNOWLEGMENT/ REFERENCES The Compost Council. 1996. Field Guide to Compost Use. The Compost Council, Alexandria, VA. The United States Environmental Protection Agency. 1994. A Plain English Guide to the EPA Part 503 Biosolids Rule The Art & Science of Composting. 1990. The JG Press, Inc. E&A Environmental Consultants, Inc. Bothell, WA.

Table 1: Plant Growth Parameters Parameter Units GHU Compost Organic matter content % 31.7 Bulk density Ib/yd 3 988 ph standard units 8.3 Conductivity ms/cm 4.8 Total kjeldahl nitrogen mg/dry kg 28,725 Nitrate mg/dry kg 2.4 Potassium mg/dry kg 3,638 Phosphorous mg/dry kg 27,550 Calcium mg/dry kg 23,075 Magnesium mg/dry kg 3,425 Sieve Analysis (percent passing respective size) 1 inch 100* 1/2 inch 87.45* 3/8 inch 89.30* 1/4 inch 69.40* 3/16 inch 51.60* 3/32 inch 27.70* 1/25 inch 7.60* *Historical Data Revised April 2017

Table 2: Compost Product Trace Metal and Pathogen Content Parameter Units GHU US EPA Compost EQ Limit Arsenic -total mg/dry kg 25 41 Cadmium -total mg/dry kg 2 39 Chromium -total mg/dry kg 17 1,200 Lead -total mg/dry kg 30 300 Mercury -total mg/dry kg 2 17 Selenium -total mg/dry kg 4 36 Copper -total mg/dry kg 525 1,500 Nickel -total mg/dry kg 13 420 Molybdenum -total mg/dry kg 10 18 Zinc -total mg/dry kg 938 2,800 Fecal coliform mpn/g <2 <1000 nd -not detected mpn -most probable number EQ -exceptional quality < -less than Revised April 2017