IDENTIFIERS

  • Current Taxon Name (Soil Name): Nona
  • OSD
  • Series Extent
  • User Site ID: S00TX241002
  • User Pedon ID: S00TX241002
  • Transect:
  • Transect Stop Number - 2
  • Lab Information:
  • Certified Lab Pedon Description - yes
  • Lab Source ID - TAMU
  • Lab Pedon # - S00TX241002
  • NCSS Pedon Lab Data NASIS Record ID - 45543
  • Print Date: 12/4/2024
  • LOCATION

  • Location In Web Soil Survey
  • AOI is roughly a square mile and pedon is marked in the center.
  • Location in SoilWeb
  • Location in Google Maps
  • Std. Latitude: 30.6230278
  • Std. Longitude: -93.9681931
  • Datum: WGS84
  • Location Description: Classification-Coarse Silty Vermaqualfs; Series-None; Slope-21%; Land Use-Forest; Assoc. Solis-Dallardsville Plank; Geol. Form-Lissie; Quad Name-Kirbyville; Series-Nona
  • PEDON

  • Describers Name: JKW, REL, ALS
  • Current Taxonomic Class: Fine-silty, siliceous, active, thermic Natric Vermaqualfs
  • Current Taxon Kind: series
  • Pedon Type: classifies to current taxon name, full description
  • Pedon Purpose: full pedon description
  • Pedon Record Orgin: NASIS
  • Correlated Information:
  • Soil Name - Nona
  • PSC - 0 to 200 cm.
  • Classificaton Date - 6/1/2012
  • Soil Taxonomic Edition - eleventh edition
  • Sampled As Information:
  • Soil Name - Nona
  • Classificaton Date - 7/13/2000
  • Dynamic Soil Properties:
  • Pedoderm Loose Cover Indicator - no
  • Hydric: no


  • SITE

  • Geology: Lissie formation.
  • Surface Fragments:
  • Benchmark Soil?: no
  • VEGETATION

    SITE OBSERVATION

  • Observation Date: 7/13/2000 (actual site observation date)
  • Surface Cover Properties:
  • Pedoderm Loose Cover Indicator - no
  • Drained? - no
  • Bedded Soil? - no
  • Forest Plantation? - no
  • Setting and Climate
    Slope Slope Length USLE Upslope Length Elev. Corr. Elev Aspect MAP REAP FFD MAAT MSAT MWAT MAST MSST MWST MFFP PE Index Climate Station ID Climate Station Name Climate Station Type
    % m degrees mm mm C mm

    A—0 to 11 centimeters (0.0 to 4.3 inches); moderate coarse prismatic parts to weak medium and coarse subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to weak medium and coarse subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to weak medium and coarse subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to weak medium and coarse subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to moderate medium subangular blocky, and moderate coarse prismatic parts to weak medium subangular blocky, and weak coarse prismatic parts to weak medium and coarse subangular blocky, and weak coarse prismatic parts to weak medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to weak medium subangular blocky, and weak coarse prismatic parts to weak medium and coarse subangular blocky, and weak coarse prismatic parts to weak medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to moderate medium subangular blocky, and weak coarse prismatic parts to weak medium subangular blocky, and moderate medium subangular blocky structure; 2.0 very fine roots and 10.0 very fine roots and 2.0 very fine roots and 2.0 very fine roots and 1.0 very coarse roots and 2.0 very coarse roots and 2.0 medium roots and 2.0 medium roots and 5.0 medium roots and 12.0 fine roots and 4.0 fine roots and 1.0 fine roots and 4.0 fine roots and 1.0 fine roots and 3.0 fine roots; 2.0 very fine irregular and 3.0 medium vesicular and 3.0 medium irregular and 1.0 medium tubular and 4.0 fine irregular and 1.0 fine irregular and 2.0 fine vesicular and 2.0 fine tubular and 2.0 fine tubular and 2.0 fine tubular and 4.0 fine tubular pores; 1 percent faint light gray (10YR 7/1), moist, clay films on all faces of peds and 2 percent distinct light gray (10YR 7/1), moist, clay films on all faces of peds and 2 percent distinct light gray (10YR 7/1), moist, clay films on all faces of peds and 2 percent distinct gray (10YR 6/1), moist, clay films on all faces of peds; 1 percent fine prominent reddish brown (5YR 5/4), moist, manganese masses with diffuse boundaries and 2 percent medium prominent dark reddish brown (5YR 3/2), moist, iron-manganese concretions with sharp boundaries in matrix and 2 percent very coarse prominent dark brown (7.5YR 3/2), moist, iron-manganese concretions with clear boundaries in matrix and 2 percent fine prominent dark brown (7.5YR 3/2), moist, iron-manganese concretions with clear boundaries in matrix and 2 percent fine prominent dark brown (7.5YR 3/2), moist, iron-manganese concretions with clear boundaries in matrix and 4 percent coarse prominent light greenish gray (5BG 7/1), moist, iron depletions with diffuse boundaries and 4 percent fine prominent strong brown (7.5YR 5/8), moist, masses of oxidized iron with clear boundaries in matrix and 4 percent fine prominent yellowish red (5YR 5/8), moist, masses of oxidized iron with clear boundaries lining pores and 4 percent fine prominent yellowish red (5YR 5/8), moist, masses of oxidized iron with clear boundaries lining pores and 4 percent fine distinct yellowish brown (10YR 5/6), moist, masses of oxidized iron with clear boundaries in matrix and 5 percent coarse prominent light greenish gray (5BG 7/1), moist, iron depletions with diffuse boundaries and 6 percent fine prominent strong brown (7.5YR 5/8), moist, masses of oxidized iron with clear boundaries and 6 percent fine prominent yellowish red (5YR 5/8), moist, masses of oxidized iron with sharp boundaries and 6 percent fine prominent yellowish red (5YR 5/6), moist, masses of oxidized iron with clear boundaries in matrix and 6 percent fine prominent strong brown (7.5YR 5/8), moist, masses of oxidized iron with clear boundaries in matrix and 8 percent fine distinct pink (7.5YR 7/3), moist, masses of oxidized iron with clear boundaries in matrix and 10 percent fine prominent red (2.5YR 5/8), moist, masses of oxidized iron with clear boundaries in matrix and 10 percent fine prominent yellowish red (5YR 5/8), moist, masses of oxidized iron with clear boundaries in matrix and 10 percent fine prominent strong brown (7.5YR 5/6), moist, masses of oxidized iron with clear boundaries lining pores and 16 percent very coarse distinct brownish yellow (10YR 6/6), moist, masses of oxidized iron with clear boundaries in matrix and 18 percent very coarse distinct brownish yellow (10YR 6/6), moist, masses of oxidized iron with clear boundaries in matrix and 20 percent very coarse distinct brownish yellow (10YR 6/8), moist, masses of oxidized iron with clear boundaries in matrix and 28 percent very coarse distinct brownish yellow (10YR 6/8), moist, masses of oxidized iron with clear boundaries in matrix and 34 percent very coarse distinct brownish yellow (10YR 6/6), moist, masses of oxidized iron with clear boundaries in matrix; fragments; clear smooth boundary. Lab sample # TAMU6587
    Bg1—11 to 45 centimeters (4.3 to 17.7 inches); fragments; clear smooth boundary. Lab sample # TAMU6588
    Bg2—45 to 76 centimeters (17.7 to 29.9 inches); fragments; clear smooth boundary. Lab sample # TAMU6589
    Btg/Eg1—76 to 107 centimeters (29.9 to 42.1 inches); fragments; gradual smooth boundary. Lab sample # TAMU6590
    Btg/Eg2—107 to 142 centimeters (42.1 to 55.9 inches); fragments; gradual smooth boundary. Lab sample # TAMU6591
    Btg/Eg3—142 to 180 centimeters (55.9 to 70.9 inches); 50 percent gray (10YR 5/1) and 32 percent light brownish gray (10YR 6/2) and 15 percent gray (10YR 6/1) and 5 percent light brownish gray (10YR 6/2) and 14 percent gray (10YR 6/1) and 10 percent light gray (10YR 7/2) and 37 percent gray (10YR 6/1) and 22 percent light brownish gray (10YR 6/2) and 25 percent light gray (10YR 7/1) and 16 percent light gray (10YR 7/2) and 48 percent light gray (10YR 7/1) and 18 percent light gray (10YR 7/2) and 37 percent light gray (10YR 7/1) and 35 percent light gray (10YR 7/2); fragments; gradual smooth boundary. Lab sample # TAMU6592
    Btg/Eg4—180 to 200 centimeters (70.9 to 78.7 inches); fragments. Lab sample # TAMU6593