Designed, built, and serviced in Sullivan, Ohio since 1985
Diagnostic · disposal cost

Reduce coolant disposal costs.

Coolant disposal cost is driven primarily by the volume of waste fluid generated and the applicable handling requirements. C.R.O.S.S. keeps usable coolant in service longer, reducing disposal costs by up to 90% and new-fluid purchases by up to 85%.

Up to 90%
reduction in disposal cost, on the C.R.O.S.S.
Up to 85%
reduction in new fluid purchases, on the C.R.O.S.S.
Direct costs
replacement fluid and waste-fluid disposal
99.75%
tramp oil and particulate removed by volume

Cost overview

Reducing waste-fluid volume lowers disposal cost. Recycling removes contaminants and maintains coolant for continued use, reducing both premature disposal and the corresponding replacement-fluid purchases.

Disposal-cost drivers

Four factors that increase disposal volume

Disposal cost increases as coolant degrades and change-outs become more frequent. Review the operating factors below to identify where fluid life can be extended.

01
Fixed-schedule change-outs without condition review
Observed practice
Sumps are emptied on a fixed schedule without first determining whether the coolant remains within its usable-condition criteria.
Corrective action
Use scheduled condition monitoring rather than the calendar alone. Evaluate concentration, pH, contamination, and other fluid-supplier or facility criteria before deciding whether a change-out is required. See the coolant management guide.
02
Tramp oil degrading coolant prematurely
Observed condition
A persistent tramp-oil film can reduce oxygen transfer, support bacterial growth, and contribute to premature coolant degradation.
Corrective action
Separate free and mechanically dispersed tramp oil to reduce a major source of contamination. See the tramp oil guide and the T.O.S.S. separator.
03
Particulate accumulation drives change-outs
Observed condition
Chips and fines accumulate as sludge until the coolant requires removal for sump cleaning.
Corrective action
Select filtration for the particulate type, loading, required flow, and cleanliness target. A paper bed handles mixed solids, while a magnetic separator targets ferrous material.
04
Usable coolant is not currently recycled
Observed practice
Coolant is replaced and disposed of whenever contamination or concentration drift forces a change-out, even when a recycling process could extend its useful life.
Corrective action
C.R.O.S.S. removes 99.75% of tramp oil and particulate by volume, uses automatic replenishment to mix coolant at the required concentration, and keeps clean coolant available for immediate use 24/7/365. It can reduce disposal costs by up to 90%.
Savings estimate

Estimate savings from facility operating data

Use annual disposal and fluid-purchase records with adjustable assumptions that remain within the stated maximum reductions.

Step 01

Current baseline

Annual hauler cost plus new-fluid spend, from your purchasing and manifest records.

Step 02

Projected reductions

C.R.O.S.S. can reduce disposal costs by up to 90% and new-fluid purchases by up to 85% by keeping coolant in productive service.

Step 03

Simple-payback estimate

Divide the quoted system investment by projected monthly gross operational savings to estimate simple payback in months.

Step 04

Compliance considerations

Lower waste-fluid volume can reduce associated handling and records. Waste classification and generator status depend on the facility's total regulated waste. See sustainability.

Related questions

Common questions about coolant disposal costs

How much can recycling cut my disposal bill?+
C.R.O.S.S. can reduce disposal costs by up to 90% by keeping usable coolant in service longer. Actual results depend on the current change-out frequency, fluid condition, contamination load, and disposal practices. Use the calculator with your own operating costs.
Is recycled coolant as good as new?+
Coolant may remain suitable for reuse when contaminants are removed and the fluid stays within its required operating range. C.R.O.S.S. filters particulate, separates tramp oil, and uses automatic replenishment to mix additional coolant at the required concentration. Severely degraded coolant cannot always be recovered and may require replacement.
What is the payback on a recycling system?+
Payback depends on current fluid purchases, disposal costs, selected reduction assumptions, operating conditions, and quoted system investment. Divide the investment by projected monthly gross operational savings to estimate simple payback. See the ROI guide for the calculation method.
Does cutting disposal volume reduce my compliance burden?+
It can reduce handling, transportation, and records associated with the waste-fluid volume. Hazardous-waste generator category depends on the facility's total regulated waste generation, not coolant volume alone, and all remaining hazardous waste must still be managed correctly. Review the RCRA information on the sustainability page.