Changes
On November 27, 2023 at 6:42:54 PM UTC, William Fawcett:
-
Changed value of field
data_source
toNMBGMR
in Hydrogeology and Water Resource Assessment of the Pueblo of Picuris, Taos County, New Mexico - Open-file Report 596 -
Changed value of field
data_publishing_method
towebsite, print
in Hydrogeology and Water Resource Assessment of the Pueblo of Picuris, Taos County, New Mexico - Open-file Report 596
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28 | y-and-water-resource-assessment-of-the-pueblo-of-picuris-taos-county", | 29 | y-and-water-resource-assessment-of-the-pueblo-of-picuris-taos-county", | ||
29 | "notes": "From October 2000 through June 2002, the New Mexico Bureau | 30 | "notes": "From October 2000 through June 2002, the New Mexico Bureau | ||
30 | of Geology and Mineral Resources conducted geologic mapping on the | 31 | of Geology and Mineral Resources conducted geologic mapping on the | ||
31 | Pueblo of Picuris as part of a three phase hydrogeologic project for | 32 | Pueblo of Picuris as part of a three phase hydrogeologic project for | ||
32 | the Pueblo. This work produced a geologic map of the Picuris | 33 | the Pueblo. This work produced a geologic map of the Picuris | ||
33 | reservation, and results were summarized in a Phase 1 Final Technical | 34 | reservation, and results were summarized in a Phase 1 Final Technical | ||
34 | Report dated June 2002. From June 2003 through December 2004, the | 35 | Report dated June 2002. From June 2003 through December 2004, the | ||
35 | Bureau continued work on the hydrologic and water quality aspects of | 36 | Bureau continued work on the hydrologic and water quality aspects of | ||
36 | the project, which comprised phases 2 and 3 of the study. These phases | 37 | the project, which comprised phases 2 and 3 of the study. These phases | ||
37 | of work included a well and spring inventory, water level | 38 | of work included a well and spring inventory, water level | ||
38 | measurements, assessment of the quality of groundwater and surface | 39 | measurements, assessment of the quality of groundwater and surface | ||
39 | water, evaluations of the subsurface hydrogeology of aquifers and the | 40 | water, evaluations of the subsurface hydrogeology of aquifers and the | ||
40 | interaction between groundwater, surface water and potential sources | 41 | interaction between groundwater, surface water and potential sources | ||
41 | of contamination in the vicinity of the confluence of the Rio Pueblo | 42 | of contamination in the vicinity of the confluence of the Rio Pueblo | ||
42 | de Picuris, Rio Santa Barbara, Rio Chiquito, and Chamizal Creek. This | 43 | de Picuris, Rio Santa Barbara, Rio Chiquito, and Chamizal Creek. This | ||
43 | report summarizes the data collected and findings of these final two | 44 | report summarizes the data collected and findings of these final two | ||
44 | phases of the hydrogeologic assessment of groundwater and surface | 45 | phases of the hydrogeologic assessment of groundwater and surface | ||
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83 | mapping on the Pueblo of Picuris as part of a three phase | 85 | mapping on the Pueblo of Picuris as part of a three phase | ||
84 | hydrogeologic project for the Pueblo. This work produced a geologic | 86 | hydrogeologic project for the Pueblo. This work produced a geologic | ||
85 | map of the Picuris reservation, and results were summarized in a Phase | 87 | map of the Picuris reservation, and results were summarized in a Phase | ||
86 | 1 Final Technical Report dated June 2002. From June 2003 through | 88 | 1 Final Technical Report dated June 2002. From June 2003 through | ||
87 | December 2004, the Bureau continued work on the hydrologic and water | 89 | December 2004, the Bureau continued work on the hydrologic and water | ||
88 | quality aspects of the project, which comprised phases 2 and 3 of the | 90 | quality aspects of the project, which comprised phases 2 and 3 of the | ||
89 | study. These phases of work included a well and spring inventory, | 91 | study. These phases of work included a well and spring inventory, | ||
90 | water level measurements, assessment of the quality of groundwater and | 92 | water level measurements, assessment of the quality of groundwater and | ||
91 | surface water, evaluations of the subsurface hydrogeology of aquifers | 93 | surface water, evaluations of the subsurface hydrogeology of aquifers | ||
92 | and the interaction between groundwater, surface water and potential | 94 | and the interaction between groundwater, surface water and potential | ||
93 | sources of contamination in the vicinity of the confluence of the Rio | 95 | sources of contamination in the vicinity of the confluence of the Rio | ||
94 | Pueblo de Picuris, Rio Santa Barbara, Rio Chiquito, and Chamizal | 96 | Pueblo de Picuris, Rio Santa Barbara, Rio Chiquito, and Chamizal | ||
95 | Creek. This report summarizes the data collected and findings of these | 97 | Creek. This report summarizes the data collected and findings of these | ||
96 | final two phases of the hydrogeologic assessment of groundwater and | 98 | final two phases of the hydrogeologic assessment of groundwater and | ||
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528 | "id": "39780ba7-c5d9-4f05-96f0-c2626d57f21f", | 531 | "id": "39780ba7-c5d9-4f05-96f0-c2626d57f21f", | ||
529 | "name": "contamination", | 532 | "name": "contamination", | ||
530 | "state": "active", | 533 | "state": "active", | ||
531 | "vocabulary_id": null | 534 | "vocabulary_id": null | ||
532 | }, | 535 | }, | ||
533 | { | 536 | { | ||
534 | "display_name": "geologic cross sections", | 537 | "display_name": "geologic cross sections", | ||
535 | "id": "6114f75f-a4ee-435d-b0c0-f5811a4f1f8d", | 538 | "id": "6114f75f-a4ee-435d-b0c0-f5811a4f1f8d", | ||
536 | "name": "geologic cross sections", | 539 | "name": "geologic cross sections", | ||
537 | "state": "active", | 540 | "state": "active", | ||
538 | "vocabulary_id": null | 541 | "vocabulary_id": null | ||
539 | }, | 542 | }, | ||
540 | { | 543 | { | ||
541 | "display_name": "geologic mapping", | 544 | "display_name": "geologic mapping", | ||
542 | "id": "3cb34054-fd70-4d8e-b76c-534a6c26095c", | 545 | "id": "3cb34054-fd70-4d8e-b76c-534a6c26095c", | ||
543 | "name": "geologic mapping", | 546 | "name": "geologic mapping", | ||
544 | "state": "active", | 547 | "state": "active", | ||
545 | "vocabulary_id": null | 548 | "vocabulary_id": null | ||
546 | }, | 549 | }, | ||
547 | { | 550 | { | ||
548 | "display_name": "groundwater levels", | 551 | "display_name": "groundwater levels", | ||
549 | "id": "0904d63c-1b8d-4e04-93ac-a0796206bd4c", | 552 | "id": "0904d63c-1b8d-4e04-93ac-a0796206bd4c", | ||
550 | "name": "groundwater levels", | 553 | "name": "groundwater levels", | ||
551 | "state": "active", | 554 | "state": "active", | ||
552 | "vocabulary_id": null | 555 | "vocabulary_id": null | ||
553 | }, | 556 | }, | ||
554 | { | 557 | { | ||
555 | "display_name": "groundwater quality", | 558 | "display_name": "groundwater quality", | ||
556 | "id": "13d7adf4-320e-437c-bc0c-6724f0f06cfe", | 559 | "id": "13d7adf4-320e-437c-bc0c-6724f0f06cfe", | ||
557 | "name": "groundwater quality", | 560 | "name": "groundwater quality", | ||
558 | "state": "active", | 561 | "state": "active", | ||
559 | "vocabulary_id": null | 562 | "vocabulary_id": null | ||
560 | }, | 563 | }, | ||
561 | { | 564 | { | ||
562 | "display_name": "groundwater-surface water interactions", | 565 | "display_name": "groundwater-surface water interactions", | ||
563 | "id": "cc98ef92-4628-4e03-989e-b366d5475639", | 566 | "id": "cc98ef92-4628-4e03-989e-b366d5475639", | ||
564 | "name": "groundwater-surface water interactions", | 567 | "name": "groundwater-surface water interactions", | ||
565 | "state": "active", | 568 | "state": "active", | ||
566 | "vocabulary_id": null | 569 | "vocabulary_id": null | ||
567 | }, | 570 | }, | ||
568 | { | 571 | { | ||
569 | "display_name": "hydrogeology", | 572 | "display_name": "hydrogeology", | ||
570 | "id": "ad7eb358-d90f-4f45-ab72-5918725adf75", | 573 | "id": "ad7eb358-d90f-4f45-ab72-5918725adf75", | ||
571 | "name": "hydrogeology", | 574 | "name": "hydrogeology", | ||
572 | "state": "active", | 575 | "state": "active", | ||
573 | "vocabulary_id": null | 576 | "vocabulary_id": null | ||
574 | }, | 577 | }, | ||
575 | { | 578 | { | ||
576 | "display_name": "springs", | 579 | "display_name": "springs", | ||
577 | "id": "fc058c46-efa8-461d-b676-b8d6fd00ddc8", | 580 | "id": "fc058c46-efa8-461d-b676-b8d6fd00ddc8", | ||
578 | "name": "springs", | 581 | "name": "springs", | ||
579 | "state": "active", | 582 | "state": "active", | ||
580 | "vocabulary_id": null | 583 | "vocabulary_id": null | ||
581 | }, | 584 | }, | ||
582 | { | 585 | { | ||
583 | "display_name": "surface water levels", | 586 | "display_name": "surface water levels", | ||
584 | "id": "4f078da9-e17a-48a6-a2a5-397e58f867e7", | 587 | "id": "4f078da9-e17a-48a6-a2a5-397e58f867e7", | ||
585 | "name": "surface water levels", | 588 | "name": "surface water levels", | ||
586 | "state": "active", | 589 | "state": "active", | ||
587 | "vocabulary_id": null | 590 | "vocabulary_id": null | ||
588 | }, | 591 | }, | ||
589 | { | 592 | { | ||
590 | "display_name": "surface water quality", | 593 | "display_name": "surface water quality", | ||
591 | "id": "b7ec2a97-60e7-4267-9996-695e18001718", | 594 | "id": "b7ec2a97-60e7-4267-9996-695e18001718", | ||
592 | "name": "surface water quality", | 595 | "name": "surface water quality", | ||
593 | "state": "active", | 596 | "state": "active", | ||
594 | "vocabulary_id": null | 597 | "vocabulary_id": null | ||
595 | }, | 598 | }, | ||
596 | { | 599 | { | ||
597 | "display_name": "water chemistry", | 600 | "display_name": "water chemistry", | ||
598 | "id": "3630cddd-1b77-4c2a-9886-12a7db1b30f2", | 601 | "id": "3630cddd-1b77-4c2a-9886-12a7db1b30f2", | ||
599 | "name": "water chemistry", | 602 | "name": "water chemistry", | ||
600 | "state": "active", | 603 | "state": "active", | ||
601 | "vocabulary_id": null | 604 | "vocabulary_id": null | ||
602 | }, | 605 | }, | ||
603 | { | 606 | { | ||
604 | "display_name": "water chemistry data", | 607 | "display_name": "water chemistry data", | ||
605 | "id": "5592cb27-83e2-4e59-944a-da5553f77044", | 608 | "id": "5592cb27-83e2-4e59-944a-da5553f77044", | ||
606 | "name": "water chemistry data", | 609 | "name": "water chemistry data", | ||
607 | "state": "active", | 610 | "state": "active", | ||
608 | "vocabulary_id": null | 611 | "vocabulary_id": null | ||
609 | }, | 612 | }, | ||
610 | { | 613 | { | ||
611 | "display_name": "water wells", | 614 | "display_name": "water wells", | ||
612 | "id": "6d71b4bc-dd6d-409f-818e-9cc5f0679410", | 615 | "id": "6d71b4bc-dd6d-409f-818e-9cc5f0679410", | ||
613 | "name": "water wells", | 616 | "name": "water wells", | ||
614 | "state": "active", | 617 | "state": "active", | ||
615 | "vocabulary_id": null | 618 | "vocabulary_id": null | ||
616 | } | 619 | } | ||
617 | ], | 620 | ], | ||
618 | "title": "Hydrogeology and Water Resource Assessment of the Pueblo | 621 | "title": "Hydrogeology and Water Resource Assessment of the Pueblo | ||
619 | of Picuris, Taos County, New Mexico - Open-file Report 596", | 622 | of Picuris, Taos County, New Mexico - Open-file Report 596", | ||
620 | "type": "dataset", | 623 | "type": "dataset", | ||
621 | "url": null, | 624 | "url": null, | ||
622 | "version": "1.0" | 625 | "version": "1.0" | ||
623 | } | 626 | } |