closed🌐 palmdalewater21-611
Pre-Purchase of a 0.8% On-Site Sodium Hypochlorite Generation System for the Leslie O. Carter Treatment Plant
palmdalewater / Engineering
Description
The Palmdale Water District is accepting proposals from qualified vendors for the pre-purchase, finalize system connections, start-up and testing of an on-site sodium hypochlorite generation system at the Leslie O. Carter Treatment Plant. The Leslie O. Carter Treatment Plant is a 35 million gallon per day (MGD) conventional drinking water facility serving the people of Palmdale, California. Disinfection is achieved by using 0.8% sodium hypochlorite solution where sodium hypochlorite is fed at headworks, settled (pre-filtration), and effluent locations. The complete on-site sodium hypochlorite generation system shall meet a maximum flow of 35 MGD at 5 ppm (1500 pounds per day) with single cell out of service. See #Scope of Work for more information.
Details?
- Posted
- Dec 7, 2021
- Response deadline
- Jan 11, 2022, 9:00 PM UTC
- Status
- closed
- Buyer
- palmdalewater
- Department
- Engineering
- Jurisdiction
- palmdalewater
- Reference #
- 21-611
- Summary
- <p>The Palmdale Water District is accepting proposals from qualified vendors for the pre-purchase, finalize system connections, start-up and testing of an on-site sodium hypochlorite generation system
- Is Paused
- false
- Template Title
- Request for Proposals (Products and Services)
- Copy Count
- 1
- Government Organization City
- Palmdale
- Government Organization Logo
- https://assets.procurement.opengov.com/logos/pwd.jpeg
- Government Organization Name
- Palmdale Water District
- Government Organization State
- CA
- Government Organization Website
- https://www.palmdalewater.org/
- Government Organization Zip Code
- 93550
- Government Organization Address1
- 2029 E Avenue Q
- Government Organization Timezone
- America/Los_Angeles
- Government Organization Country Code
- US
- Closed Substatus
- awarded
Finding similar opportunities…
This listing is a summary from palmdalewater's open procurement data. We ingest every field the feed publishes; the full solicitation documents are on the source portal.
Raw record
{
"id": 13842,
"_slug": "palmdalewater",
"title": "Pre-Purchase of a 0.8% On-Site Sodium Hypochlorite Generation System for the Leslie O. Carter Treatment Plant",
"status": "closed",
"summary": "<p>The Palmdale Water District is accepting proposals from qualified vendors for the pre-purchase, finalize system connections, start-up and testing of an on-site sodium hypochlorite generation system at the Leslie O. Carter Treatment Plant. The Leslie O. Carter Treatment Plant is a 35 million gallon per day (MGD) conventional drinking water facility serving the people of Palmdale, California. Disinfection is achieved by using 0.8% sodium hypochlorite solution where sodium hypochlorite is fed at headworks, settled (pre-filtration), and effluent locations. The complete on-site sodium hypochlorite generation system shall meet a maximum flow of 35 MGD at 5 ppm (1500 pounds per day) with single cell out of service. See <a href=\"https://secure.procurenow.com/portal/palmdalewater/projects/13842/document?section=96617\">#Scope of Work</a> for more information.</p>",
"isPaused": false,
"template": {
"title": "Request for Proposals (Products and Services)"
},
"addendums": [
{
"id": 5707
}
],
"copyCount": 1,
"isPrivate": false,
"comingSoon": null,
"created_at": "2021-11-08T15:56:09.000Z",
"department": {
"id": 262,
"name": "Engineering"
},
"government": {
"code": "palmdalewater",
"organization": {
"city": "Palmdale",
"logo": "https://assets.procurement.opengov.com/logos/pwd.jpeg",
"name": "Palmdale Water District",
"phone": null,
"state": "CA",
"website": "https://www.palmdalewater.org/",
"zipCode": "93550",
"address1": "2029 E Avenue Q",
"address2": null,
"phoneExt": null,
"timezone": "America/Los_Angeles",
"countryCode": "US",
"phoneCountry": "1"
}
},
"financialId": "21-611",
"closeOutReason": null,
"closedSubstatus": "awarded",
"proposalDeadline": "2022-01-11T21:00:00.000Z",
"releaseProjectDate": "2021-12-07T16:20:23.018Z"
}