THE ARC PROCESS
Proven technologies that turn waste into valuable resources.
ARC Ento Tech combines biological and mechanical processes to recover nutrients, carbon, and energy from waste streams that would otherwise go to landfill.
Proven Processes. Real Circular Outcomes.
We recover nutrients, carbon, and energy from waste streams, transforming materials that would otherwise go to landfill into valuable, sustainable products.
Recover. Reform. Repurpose.
ARC Ento Tech uses biological and mechanical systems to turn waste into high-value resources for agriculture and industry.
Mechanical Process
Industrial Engineering: SynCoal™ (Carbon & Hydrogen Recovery)
A sustainable alternative to coking coal
Through the ARC Process™, residual waste streams, particularly hard-to-recycle plastics and selected inorganics, are recovered, reformed, and re-purposed into SynCoal™, an engineered, carbon-rich product.
SynCoal™ provides a commercially viable source of carbon and hydrogen for industrial applications, offering a practical substitute for natural coal and hydrocarbons.
Key Attributes:
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Utilises residual plastics and mixed solid waste fractions that are otherwise difficult to valorise.
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Tailored to meet downstream specifications for metallurgical reductants, process heat, and other industrial uses.
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Diverts challenging materials from landfill and creates a reliable offtake pathway aligned with circular economy goals.
End-to-end resource recovery
Together, ARC’s BSF bioconversion and SynCoal™ platforms deliver complete resource recovery — returning organics to soils and feeds, and converting residuals into purposeful carbon and hydrogen.
This integrated approach closes the loop with practical, scalable infrastructure designed for real-world waste streams.
BIOLOGICAL PROCESS
Working with Nature: Black Soldier Fly
Bioconversion Nutrient Recovery
We harness the bioconversion capacity of the Black Soldier Fly (BSF) in a controlled, biosecure process. BSF larvae rapidly stabilise putrescible organics, even when commingled with non-organics, allowing contaminants to be separated, resources to be recovered, and nutrients returned to productive use.
This process delivers a fast, low-emission pathway that diverts waste from landfill, reduces methane risk, and produces consistent, high-value outputs under robust quality management.
Value-Added Outputs
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High-quality ingredients suitable for formulated feed and material applications, produced to defined nutritional specifications.
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A biologically active soil amendment that supports nutrient-use efficiency and soil health, available in screened, flowable grades.
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A versatile lipid fraction for energy and industrial uses, refined to align with downstream requirements.
Together, these streams demonstrate circular design, transforming organic residues into reliable inputs for agriculture, industry, and innovation.