I have embraced “closing the circle” as a positive paradigm for biosolids resource recovery. Macy’s exhortation for a wholehearted commitment to humanity’s just and safe relationship to Earth reminded me of two issues that, with biosolids recycling to soil, niggle at me, just a little – microbial risks and persistent organic pollutants.
The feature of this blog is the organic byproduct (biosolids) of water reclamation (sewage treatment), in which the recovery of resources is the global objective. That is, the flushing of water, organic matter, nutrients and energy gives society opportunity to reclaim the water for re-use and to reclaim value. This is the essence of "closing the circle" in a sustainable, circular economy.
Thursday, February 23, 2017
The Great Turning with Biosolids
I have embraced “closing the circle” as a positive paradigm for biosolids resource recovery. Macy’s exhortation for a wholehearted commitment to humanity’s just and safe relationship to Earth reminded me of two issues that, with biosolids recycling to soil, niggle at me, just a little – microbial risks and persistent organic pollutants.
One Water, One Residual
This was the main theme for the new WERF, that is WE&RF: the new Water Environment and Reuse Foundation. Most of you recognize WERF as the Water Environment Research Foundation. But you may not know the other Alexandria- based group called WRRF, or the Water ReUse Research Foundation. Two groups with such homonymous and mission similarities would make a synergistic merger as WE&RF seem, in retrospect at least, obvious. And that is what they did this summer. This important development is described in a recent WEF article: WERF and WateReuse Merge To Advance Concept of One Water.
The new executive director for WE&RF, Melissa Meeker, said in a WEF article: “for the utility of the future that seeks to maximize recovery and deliver fit-for-purpose water…[a] “One Water’ concept emphasizes that water quality is our focus, not the history of where the water has been … [This] will have a positive impact on the public’s understanding of water quality issues in general.”
But do biosolids, in the case of wastewater, and brine, in the case of reuse processes, fit into ONE WATER? Not really.
How about “ONE RESIDUAL”?
Many of us have already played with the notion that biosolids deserves to play in the same sandbox as manure and other organic residuals. We took on many years ago the regulatory discrimination of biosolids made part of the USDA’s National Organic Program, and lost, salving our feelings with the notion that this was a marketing decision, not a science-based decision.
More recently there was Whole Foods. We were alerted to its pending “policy” on biosolids [Whole Foods to stop selling produce grown in human sewage sludge], which was pressed on them by the same group, PR Watch, that brought you Toxic Sludge is Good for You program. But we again faced a marketing campaign that had no interest in considering scientific and rational arguments. A quick tour of the CDC’s Food Safety News will give you the source of real health risks from food (General Mills flour and E coli…. Hmmm, how did that happen?), and that risk isn’t from biosolids. Occasionally “organic” products show up in the CDC site. But when it comes to biosolids, the marketing people at the USDA and Whole Foods just aren’t interested in science.
Noble is also the conceptualizer of a “bioproducts market,” with feedstock, technology and products comprising three legs. His background analysis contains estimates that show biosolids is a mere 1 percent of the total organic biomass available for conversion into useful bioproducts for the marketplace. He estimates that over two-thirds of the biomass in the US and Canada is animal manures. Our industry’s paltry 7 million dry tons annually of biosolids contrasts to the 500 million dry tons of animal manures.
Oh my! How can we confirm this wide gap in tonnages when there is no “Manure Environment Federation” nor a “National Manure Partnership?” 500 million tons annually of manure apparently is not sufficient to cause a professional organization to be formed, as we have with wastewater and biosolids. This is sarcasm.
Few national summary reports are available on the topic of environmental effects of concentrated animal feedlots. One such is Understanding Concentrated Animal Feeding Operations and Their Impact on Communities, prepared by the National Association of Local Boards of Health. It concludes that local health officials have very many reasons to be alert to CAFOs.
The science of manure and the science of biosolids should share considerable common ground. For instance, how does research into manure compare to research on biosolids on the lively topic of TOrCs (Toxic Organic Compounds)? In biosolids we have many dozens of papers, and WE&RF has a couple of projects completed and in the pipeline. But what is known about TOrCs in manure?
Not as much as one might hope. This is from an abstract of a literature review for December 2016 publication (already?!), Occurrence and transformation of veterinary pharmaceuticals and biocides in manure: a literature review : “Within the 27 evaluated publications, 1568 manure samples were analyzed and 39 different active substances for VMPs [veterinary medicinal products]and 11 metabolites and transformation products of VMPs could be found in manure. Most often, the samples were analyzed for sulfonamides, tetracyclines, and fluoroquinolones. Not one study searched for biocides or worked with a non-target approach. For sulfadiazine and chlortetracycline, concentrations exceeding the predicted environmental concentrations were found.”
Ancient Network Intelligence
The bottom line is that, if good fungal functioning is an important parameter of soil quality, then biosolids is at least not a negative factor.
How biosolids affects soil health is “fertile” research ground even today. While we intuitively understand biosolids benefits, scientists are looking for performance measures in soil health. This is not just for biosolids, but also for a full sweep of agricultural practices and nutrient sources. As explained in Understanding and Enhancing Soil Biological Health: The Solution for Reversing Soil Degradation “biological relationships are by far the most complex with large deficiencies in basic understanding. Many new tools and techniques have been or are being developed, thus making it more feasible to unravel these complex systems. desperately needs to meet the rapidly increasing food, feed, fiber, and fuel needs of an expanding global population.”
Saturday, April 23, 2016
The Miracle of Life... in Digesters!
Saturday, February 1, 2014
Becoming Part of the World Consciousness
Imagining today the significance of the stress of nine billion people on Earth in 2050 is a necessary aspect of the global human consciousness if we as a species have any hope of avoiding catastrophe of disease, warfare, and pollution arising from abuse of natural systems.
The individual challenge is for us to be mindful that we are each part of the evolving human consciousness. Might I be so bold as to assert that those of us in the humble service of recovering resources from wastewater can make and defend our case that our's is an example of a future that works. We are doing it today, and we must boldly set ourselves in the camp of those who advocate for a sustainable future in which all peoples live with fulfillment and health.
Share on Tumblr
Wednesday, March 23, 2011
Innovations in the Biosolids Fields
A “fevered pitch” may be a bit hyperbolic a description for technology advances in biosolids stabilization. A review of the agenda at recent conference will reveal a swing toward advanced digestion and chemical treatment processes to improve pathogen destruction, biogas production, and odor reduction. Yet, articles on our fundamental mission area, land spreading of biosolids, have almost disappeared. So it is a good thing to read that breakthrough new approaches are being studied for delivering solid byproducts to soil for crop fertilization in new ways.
Those of us engaged in biosolids application to farm fields have shared some concern for the uneasy relationship between agricultural practices associated with no-till and conservation tillage and the use of biosolids. No-till farming achieves the protection of soil structure and soil infiltration capacity, but at the expense of reliance on aggressive chemical weed control. Biosolids on such no-till fields may be surface applied, as are manures in the same practice, but with the risk that nutrients and organic matter might be carried to surface waters during heavy storm events.
The drive to address the issue of solid manure spreading while minimizing risk of environmental releases has been focused in sensitive watersheds, notably those within the Chesapeake basin. The drive has produced innovation. And reports of successful new approaches are now being released.
A recent JEQ article (see; https://www.soils.org/publications/jeq/articles/40/2/287) discusses novel manure application methods to reduce N and P losses in no-till systems of agriculture. This article introduces the positive qualities of a new subsurface applicator for poultry litter, which is the first subsurface applicator available for solid manures. The biosolids profession should be among early adopters of equipment that advances the goal of reduced nutrient losses while conserving soil structure.
PBDEs and Biosolids
Science has now provided a picture of the exposures to PBDEs in the world environment. The recent issue of Environmental Science & Technology contains an article by David Trudel, et al, “Total Consumer Exposure to Polybrominated Diphenyl Ethers in North America and Europe” (Environ. Sci. Technol. 2011, 45, 2391–2397; http://pubs.acs.org/doi/pdfplus/10.1021/es1035046). It synthesizes an enormous body of work across the world and across ecological systems—water, air and land.
Trudel’s article sparked in me some sharp memories from a full ten years ago. In July 2001, against the backdrop of the crashing waves in Ocean City, MD, on an outdoor patio on which biosolids folks gathered to confer, Rhonda Bowen from Hampton Roads took a cellphone call from her boss. A researcher at the Virginia Marine Institute, Rob Hale, had a Nature magazine article reporting concentrations of a class of persistent organic pollutants known as “PBDEs” in sediments from the same watershed in which land application of biosolids had been practiced. Dr. Hale had intended to implicate biosolids as a source, although even with the meager information available to us on such pollutants, a meaningful link seemed farfetched. A response by the biosolids profession was needed. A full year would go by before the scientific community would see a thorough, peer-reviewed article sources and potential pathways of this class of contaminants (De Wit, C. A. “An overview of brominated flame retardants in the environment.” Chemosphere 2002, 46, 583–624. ).
The present article in ES&T, based on the vigorous response by the scientific community, has now put the issue in perspective. Biosolids is nowhere to be found in the article, as household dust and widespread atmospheric deposition on animal-grazed fields are now understood to be major sources.
I take solace in the observation that biosolids both concentrates persistent organics like PBDEs as well as concentrates the scientific community’s attention to emerging issues, like society’s use of high production chemicals.
Perhaps, the biosolids profession should take a leadership role in advocating responsible stewardship by industries in their choices for chemical inputs to consumer products that may persist in the environment. While the biosolids profession may be the unwitting recipients of the residuals from manufactured goods, all too often the profession takes the public blame for its presence in the environment. Against this tendency we need to have a strategy that deploys sound science and risk assessment, and one that anticipates, rather than merely reacts to, issues of public concern.