Safety Kleen Corp Santa Ana Bra

Facility Overview

Safety Kleen Corp Santa Ana Bra is operating under a active permit of type: Industrial. Primary industry: Petroleum Bulk Stations and Terminals. Secondary industry: Refuse Systems.

The facility covers a total area of 4 Acres, with an active operational area of 4 Acres.

The site has self-reported imperviousness of %. In the context of the Industrial General Permit for stormwater runoff, imperviousness refers to the percentage of the facility's surface area that doesn't allow water to penetrate, such as concrete, asphalt, or rooftops. The higher the imperviousness percentage, the more potential impact on local water quality as there is a greater surface area to accumulate pollutants.

In terms of water impact, the facility directly affects the Santa Ana River and the downstream waters. This information is crucial for understanding the facility's potential environmental influence on local water resources.

2120 S Yale St, Santa Ana, CA 92704

Additional Details

Permit Status: Active
County: Orange
WDID: 8 30I001837
Application ID: 208230

The information displayed on the map and this report is derived from publicly available data, including reports submitted through the California State Water Resources Control Board's SMARTS database, and is provided for informational purposes only. Blanks or missing data reflects a lack of data provided by the facility or improperly uploaded data. Facilities identified on this map as having exceedances, missing reports, or other potential issues are flagged as suspected of non-compliance only. A flag on this map does not mean a facility has been found, or is, in violation of the IGP or any other law.

Historical Exceedances

This facility has historically exceeded limits for the following parameters:

  • Arsenic, Total

    Arsenic is a toxic metalloid that can cause various health problems in wildlife and humans. It can accumulate in sediments and bioaccumulate in the food chain.

  • Oil and Grease

    Oil and grease can form films on water surfaces, reducing oxygen levels and harming aquatic life. They can also contaminate sediments and be toxic to organisms.

  • Magnesium, Total

    While essential in small amounts, excessive magnesium can contribute to water hardness, affecting aquatic life and ecosystem balance.

  • Cyanide, Total (as CN)

    Cyanide is extremely toxic to aquatic life, even in low concentrations. It can cause immediate mortality in fish and other organisms.

  • Silver, Total Recoverable

    Silver is highly toxic to aquatic organisms, particularly in its ionic form. It can disrupt fish gill function and affect lower trophic level organisms.

  • Mercury, Total Recoverable

    Mercury is a potent neurotoxin that bioaccumulates in the food chain. It can cause severe neurological and reproductive issues in wildlife and humans.

  • Magnesium, Total Recoverable

    While essential in small amounts, excessive magnesium can contribute to water hardness, affecting aquatic life and ecosystem balance.

These limits reflect Water Quality Standards promulgated to protect human health or the environment, or standards that the State or EPA developed to indicate the Facility may be failing to implement best practices to protect storm water.

Most IGP facilities are required to collect storm water samples four times per year during qualifying storm events. Where fewer than four samples are shown below, the facility may not be meeting this requirement. When a facility fails to sample at the required frequency, or samples outside of qualifying events, the resulting data may not accurately reflect its actual discharges to receiving waters. As a result, missing or incomplete sampling data can make a facility's reports appear to show less environmental impact than is actually occurring.

Discharge Reports Summary

YearSample ReportsExceedancesStatus
202448Exceedances Detected
202344Exceedances Detected
202212Exceedances Detected
202133Exceedances Detected
202023Exceedances Detected
201933Exceedances Detected
201822Exceedances Detected
201611Exceedances Detected