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  • PANGAEA  (15,885)
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Keywords
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  • 1
    Publication Date: 2023-05-12
    Description: At present time, there is a lack of knowledge on the interannual climate-related variability of zooplankton communities of the tropical Atlantic, central Mediterranean Sea, Caspian Sea, and Aral Sea, due to the absence of appropriate databases. In the mid latitudes, the North Atlantic Oscillation (NAO) is the dominant mode of atmospheric fluctuations over eastern North America, the northern Atlantic Ocean and Europe. Therefore, one of the issues that need to be addressed through data synthesis is the evaluation of interannual patterns in species abundance and species diversity over these regions in regard to the NAO. The database has been used to investigate the ecological role of the NAO in interannual variations of mesozooplankton abundance and biomass along the zonal array of the NAO influence. Basic approach to the proposed research involved: (1) development of co-operation between experts and data holders in Ukraine, Russia, Kazakhstan, Azerbaijan, UK, and USA to rescue and compile the oceanographic data sets and release them on CD-ROM, (2) organization and compilation of a database based on FSU cruises to the above regions, (3) analysis of the basin-scale interannual variability of the zooplankton species abundance, biomass, and species diversity.
    Keywords: AAK106; AAK62; AAK65; AAK7/1; AAK7/2; AAK7/3; AAK7/4; AAK7/5; AAK71; AAK88; AAK90; AAK95; Adriatic Sea; Aegean Sea; Akademik A Kovalyevskiy; Akademik Vernadsky; AKov_106-track; AKov_62-track; AKov_65-track; AKov_7/1-track; AKov_7/2-track; AKov_7/3-track; AKov_7/4-track; AKov_7/5-track; AKov_71-track; AKov_88-track; AKov_90-track; AKov_95-track; Arabian Sea; Aral_Sea; Atlantic Ocean; AV10; AV10_938-1; AV10_938-2; AV10_939-1; AV10_939-2; AV10_940-1; AV10_940-2; AV10_941-1; AV10_941-2; AV10_942-1; AV10_942-2; AV10_943-1; AV10_943-2; AV10_944-1; AV10_944-2; AV10_945-1; AV10_945-2; AV10_946-1; AV10_947-1; AV10_948-1; AV10_948-2; AV10_949-1; AV10_949-2; AV10_950-1; AV10_950-2; AV10_950-3; AV10_950-4; AV10_951-1; AV10_951-2; AV10_952-1; AV10_952-2; AV10_953-1; AV10_953-2; AV10_954-1; AV10_954-2; AV10_955-1; AV10_955-2; AV10_956-1; AV10_956-2; AV10_957-1; AV10_958-1; AV10_959-1; AV10_960-1; AV10_961-1; AV10_961-10; AV10_961-100; AV10_961-101; AV10_961-102; AV10_961-103; AV10_961-104; AV10_961-105; AV10_961-106; AV10_961-107; AV10_961-108; AV10_961-109; AV10_961-11; AV10_961-110; AV10_961-111; AV10_961-112; AV10_961-113; AV10_961-114; AV10_961-115; AV10_961-116; AV10_961-117; AV10_961-118; AV10_961-119; AV10_961-12; AV10_961-120; AV10_961-121; AV10_961-122; AV10_961-123; AV10_961-124; AV10_961-125; AV10_961-126; AV10_961-127; AV10_961-128; AV10_961-129; AV10_961-13; AV10_961-130; AV10_961-131; AV10_961-132; AV10_961-133; AV10_961-134; AV10_961-135; AV10_961-136; AV10_961-137; AV10_961-138; AV10_961-139; AV10_961-14; AV10_961-140; AV10_961-141; AV10_961-142; AV10_961-143; AV10_961-144; AV10_961-145; AV10_961-146; AV10_961-147; AV10_961-148; AV10_961-149; AV10_961-15; AV10_961-150; AV10_961-151; AV10_961-152; AV10_961-153; AV10_961-154; AV10_961-155; AV10_961-156; AV10_961-157; AV10_961-158; AV10_961-159; AV10_961-16; AV10_961-160; AV10_961-161; AV10_961-162; AV10_961-163; AV10_961-164; AV10_961-165; AV10_961-166; AV10_961-167; AV10_961-168; AV10_961-169; AV10_961-17; AV10_961-170; AV10_961-171; AV10_961-172; AV10_961-173; AV10_961-174; AV10_961-175; AV10_961-176; AV10_961-177; AV10_961-178; AV10_961-179; AV10_961-18; AV10_961-180; AV10_961-181; AV10_961-182; AV10_961-183; AV10_961-184; AV10_961-185; AV10_961-186; AV10_961-187; AV10_961-188; AV10_961-189; AV10_961-19; AV10_961-190; AV10_961-191; AV10_961-192; AV10_961-193; AV10_961-194; AV10_961-195; AV10_961-196; AV10_961-197; AV10_961-198; AV10_961-199; AV10_961-2; AV10_961-20; AV10_961-200; AV10_961-201; AV10_961-202; AV10_961-203; AV10_961-204; AV10_961-205; AV10_961-206; AV10_961-207; AV10_961-208; AV10_961-209; AV10_961-21; AV10_961-210; AV10_961-211; AV10_961-212; AV10_961-213; AV10_961-214; AV10_961-215; AV10_961-216; AV10_961-217; AV10_961-218; AV10_961-219; AV10_961-22; AV10_961-220; AV10_961-221; AV10_961-222; AV10_961-223; AV10_961-224; AV10_961-225; AV10_961-226; AV10_961-227; AV10_961-228; AV10_961-229; AV10_961-23; AV10_961-230; AV10_961-231; AV10_961-232; AV10_961-233; AV10_961-234; AV10_961-235; AV10_961-236; AV10_961-237; AV10_961-238; AV10_961-239; AV10_961-24; AV10_961-240; AV10_961-241; AV10_961-242; AV10_961-243; AV10_961-244; AV10_961-245; AV10_961-246; AV10_961-247; AV10_961-248; AV10_961-249; AV10_961-25; AV10_961-250; AV10_961-251; AV10_961-252; AV10_961-253; AV10_961-254; AV10_961-255; AV10_961-256; AV10_961-257; AV10_961-258; AV10_961-259; AV10_961-26; AV10_961-260; AV10_961-261; AV10_961-262; AV10_961-263; AV10_961-264; AV10_961-265; AV10_961-266; AV10_961-267; AV10_961-268; AV10_961-269; AV10_961-27; AV10_961-270; AV10_961-271; AV10_961-272; AV10_961-273; AV10_961-274; AV10_961-275; AV10_961-276; AV10_961-277; AV10_961-2771; AV10_961-278; AV10_961-279; AV10_961-28; AV10_961-280; AV10_961-281; AV10_961-282; AV10_961-283; AV10_961-284; AV10_961-285; AV10_961-286; AV10_961-287; AV10_961-288; AV10_961-289; AV10_961-29; AV10_961-290; AV10_961-291; AV10_961-292; AV10_961-293; AV10_961-294; AV10_961-295; AV10_961-296; AV10_961-297; AV10_961-298; AV10_961-299; AV10_961-3; AV10_961-30; AV10_961-300; AV10_961-301; AV10_961-302; AV10_961-303; AV10_961-304; AV10_961-305; AV10_961-306; AV10_961-307; AV10_961-308; AV10_961-309; AV10_961-31; AV10_961-310; AV10_961-311; AV10_961-312; AV10_961-313; AV10_961-314; AV10_961-315; AV10_961-316; AV10_961-317; AV10_961-318; AV10_961-319; AV10_961-32; AV10_961-320; AV10_961-321; AV10_961-322; AV10_961-323; AV10_961-324; AV10_961-325; AV10_961-326; AV10_961-327; AV10_961-328; AV10_961-329; AV10_961-33; AV10_961-330; AV10_961-331; AV10_961-332; AV10_961-333; AV10_961-334; AV10_961-34; AV10_961-35; AV10_961-36; AV10_961-37; AV10_961-38; AV10_961-39; AV10_961-4; AV10_961-40; AV10_961-41; AV10_961-42; AV10_961-43; AV10_961-44; AV10_961-45; AV10_961-46; AV10_961-47; AV10_961-48; AV10_961-49; AV10_961-5; AV10_961-50; AV10_961-51; AV10_961-52; AV10_961-53; AV10_961-54; AV10_961-55; AV10_961-56; AV10_961-57; AV10_961-58; AV10_961-59; AV10_961-6; AV10_961-60; AV10_961-61; AV10_961-62; AV10_961-63; AV10_961-64; AV10_961-65; AV10_961-66; AV10_961-67; AV10_961-68; AV10_961-69; AV10_961-7; AV10_961-70; AV10_961-71; AV10_961-72; AV10_961-73; AV10_961-74; AV10_961-75; AV10_961-76; AV10_961-77; AV10_961-78; AV10_961-79; AV10_961-8; AV10_961-80; AV10_961-81; AV10_961-82; AV10_961-83; AV10_961-84; AV10_961-85; AV10_961-86; AV10_961-862; AV10_961-87; AV10_961-88; AV10_961-89; AV10_961-9; AV10_961-90; AV10_961-91; AV10_961-92; AV10_961-93; AV10_961-94; AV10_961-95; AV10_961-96; AV10_961-97; AV10_961-98; AV10_961-99; AV10_962-1; AV10_963-1; AV10_964-1; AV10_965-1; AV10_966-1; AV10_967-1; AV10_968-2; AV10_969-2; AV10_970-1; AV10_970-2; AV10_971-2; AV10_974-1; AV11; AV11_1000-2; AV11_1001-2; AV11_1002-2; AV11_1003-1; AV11_1005-1; AV11_1006-1; AV11_1006-10; AV11_1006-11; AV11_1006-12; AV11_1006-13; AV11_1006-15; AV11_1006-16; AV11_1006-17; AV11_1006-18; AV11_1006-19; AV11_1006-2; AV11_1006-20; AV11_1006-21; AV11_1006-22; AV11_1006-23; AV11_1006-24; AV11_1006-25; AV11_1006-26; AV11_1006-27; AV11_1006-28; AV11_1006-29; AV11_1006-3; AV11_1006-30; AV11_1006-31; AV11_1006-32; AV11_1006-33; AV11_1006-34; AV11_1006-35; AV11_1006-36; AV11_1006-37; AV11_1006-38; AV11_1006-39; AV11_1006-4; AV11_1006-40; AV11_1006-41; AV11_1006-42; AV11_1006-43; AV11_1006-44; AV11_1006-45; AV11_1006-46; AV11_1006-47; AV11_1006-48; AV11_1006-49; AV11_1006-5; AV11_1006-50; AV11_1006-51; AV11_1006-52; AV11_1006-6; AV11_1006-7; AV11_1006-8; AV11_1006-9; AV11_1007-10; AV11_1007-11; AV11_1007-12; AV11_1007-13; AV11_1007-14; AV11_1007-15; AV11_1007-16; AV11_1007-17; AV11_1007-18; AV11_1007-19; AV11_1007-2; AV11_1007-20; AV11_1007-21; AV11_1007-22; AV11_1007-23; AV11_1007-24; AV11_1007-25; AV11_1007-26; AV11_1007-27; AV11_1007-28; AV11_1007-29; AV11_1007-3; AV11_1007-30; AV11_1007-31; AV11_1007-32; AV11_1007-33; AV11_1007-34; AV11_1007-35; AV11_1007-36; AV11_1007-37; AV11_1007-38; AV11_1007-39; AV11_1007-4; AV11_1007-40; AV11_1007-41; AV11_1007-42; AV11_1007-43; AV11_1007-44; AV11_1007-45; AV11_1007-46; AV11_1007-47; AV11_1007-48; AV11_1007-49; AV11_1007-5; AV11_1007-50; AV11_1007-51; AV11_1007-52; AV11_1007-53; AV11_1007-54; AV11_1007-55; AV11_1007-56; AV11_1007-57; AV11_1007-58; AV11_1007-59; AV11_1007-6; AV11_1007-60; AV11_1007-61; AV11_1007-62; AV11_1007-63; AV11_1007-7; AV11_1007-8; AV11_1007-9; AV11_1008-1; AV11_1010-1; AV11_1010-2; AV11_1011-1; AV11_1011-2; AV11_1012-1; AV11_1013-1; AV11_1013-2; AV11_1014-1; AV11_1014-2; AV11_1015-1; AV11_1015-2; AV11_1016-1; AV11_1016-2; AV11_1017-1; AV11_1017-2; AV11_1018-1; AV11_1018-2; AV11_1019-1; AV11_1019-2; AV11_1021-2; AV11_1022-2; AV11_1023-2; AV11_1024-2; AV11_1025-2; AV11_1026-2; AV11_1027-2; AV11_1028-2; AV11_1029-2; AV11_1030-2; AV11_1032-2; AV11_1033-2; AV11_1034-2; AV11_1035-2; AV11_1036-2; AV11_1037-2; AV11_1038-2; AV11_1039-2; AV11_1040-2; AV11_1041-2; AV11_1042-2; AV11_1043-2; AV11_1044-2; AV11_1045-2; AV11_1046-2; AV11_1051-1; AV11_1051-10; AV11_1051-11; AV11_1051-12; AV11_1051-13; AV11_1051-14; AV11_1051-15; AV11_1051-16; AV11_1051-17; AV11_1051-18;
    Type: Dataset
    Format: application/zip, 752 datasets
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-05-12
    Keywords: 118-D_Seamount; 128-D_Seamount; 129-D_Seamount; 142-D_Seamount; Age, dated; Age, dated standard deviation; Age, maximum/old; Age, minimum/young; Age, paleomagnetic; Archive of Ocean Data; ARCOD; Bikini_atoll_Seamount; Calculated; Cape_Johnson_Seamount; Cross_Seamount; Daikakuji_Seamount; Daini-kashima_Seamount; Darwin_Seamount; Eiko_Seamount; Elevation of event; Eniwetok_atoll_Seamount; Eniwetok Atoll, Central Pacific; Evelyn_Seamount; Event label; G-19171_Seamount; HD-1_Seamount; Hess_Seamount; Horizon_Seamount; Isakov_Seamount; Ita-Mai_Tai_Seamount; Jacklin_Seamount; Jingu_Seamount; Kanmu_Seamount; Kapsitotva_Seamount; Khachaturian_Seamount; Kinmei_Seamount; Koko_Seamount; Lamont_Seamount; Latitude of event; Longitude of event; Makarov_Seamount; Meiji_Seamount; Menard_Seamount; Miami_Seamount; Necker_Ridge_Seamount; Necker_Seamount; Nintoku_Seamount; Ojin_Seamount; Pacific Ocean; Paleoelevation; Rahmaninov_Seamount; Ryofu_Seamount; Scripps_Seamount; Seiko_Seamount; Seventoe_Seamount; Shepard_Seamount; Station_6348-V_Seamount; Stu_Seamount; Suiko_Seamount; Sylvania_Seamount; Sysoyev_Seamount; T.Washington_Seamount; Unnamed_Seamount; Wentworth_Seamount; Wilder_Seamount; Winterer_Seamount; Yomei_Seamount; Yuryaku_Seamount; Z-4-1_Seamount; Z-4-2_Seamount; Z-4-3_Seamount
    Type: Dataset
    Format: text/tab-separated-values, 254 data points
    Location Call Number Expected Availability
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  • 3
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Deroo, Gerard; Herbin, Jean-Paul; Roucaché, J; Boudou, J P; Robert, P; Jardiné, S; Marestang, P (1982): Geochemical and optical study of organic matter in some Pleistocene and Pliocene sediment from the Gulf of California: Leg 64, Holes 474 to 481A. In: Curray, JR; Moore, DG; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 64, 855-864, https://doi.org/10.2973/dsdp.proc.64.129.1982
    Publication Date: 2023-06-27
    Description: Pleisto-Pliocene hemipelagic and diatomaceous mud was recovered from Deep Sea Drilling Project (DSDP) Sites 474 through 481 in the Gulf of California. The organic matter is mostly marine and mainly derived from diatomaceous protoplasm. We found some continental organic matter in sediments near the bottom basalts or near dolerites (Holes 474A and 478). The organic matter in most of the samples is in an early stage of evolution.
    Keywords: 64-474A; 64-475; 64-476; 64-478; 64-479; 64-481; 64-481A; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg64; North Pacific/Gulf of California/BASIN; North Pacific/Gulf of California/CHANNEL; North Pacific/Gulf of California/SLOPE; North Pacific/Gulf of California/TERRACE
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Expected Availability
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  • 4
    Publication Date: 2023-06-27
    Keywords: 16-160; 16-161A; 16-162; 16-163; 17-164; 17-165; 17-166; 17-167; 17-168; 17-169; 17-170; 17-171; 18-172; 18-178; 19-183; 19-192A; 20-194; 20-195B; 20-196; 20-197; 20-198; 20-199; 20-200; 20-201; 21-204; 21-206; 21-207A; 21-208; 21-209; 21-210; 28-264; 28-267B; 28-269; 28-274; 29-275; 29-276; 29-277; 29-278; 29-280A; 29-281; 29-282; 29-283; 30-286; 30-287; 30-288A; 30-289; 31-290; 31-291; 32-303; 32-304; 32-305; 32-306; 32-307; 32-310; 32-313; 33-314; 33-315A; 33-316; 33-317; 33-317A; 33-318; 34-321; 35-322; 35-323; 5-32; 5-38; 5-39; 5-40; 5-41; 5-42; 55-430; 55-431; 55-432; 55-433; 56-436; 57-439; 62-463; 62-464; 62-465; 62-465A; 62-466; 6-44; 6-45; 6-46; 6-47; 6-48; 6-49; 6-50; 6-51; 6-52; 6-59; 7-61; 7-64; 7-65; 7-67; 8-68; 8-69; 8-69A; 8-70A; 8-71A; 8-72; 8-73; 8-74; 8-75; 9-77B; 9-78; Age, dated; Age, dated standard deviation; Age, paleomagnetic; Antarctic Ocean; Antarctic Ocean/BASIN; Antarctic Ocean/CONT RISE; Antarctic Ocean/PLAIN; Antarctic Ocean/PLATEAU; Antarctic Ocean/Tasman Sea; Antarctic Ocean/Tasman Sea/CONT RISE; Archive of Ocean Data; ARCOD; Calculated; Comment; Continuous seismic profiling; DRILL; Drilling/drill rig; Elevation of event; Event label; Glomar Challenger; Indian Ocean//PLATEAU; Isostasy; Latitude of event; Leg16; Leg17; Leg18; Leg19; Leg20; Leg21; Leg28; Leg29; Leg30; Leg31; Leg32; Leg33; Leg34; Leg35; Leg5; Leg55; Leg56; Leg57; Leg6; Leg62; Leg7; Leg8; Leg9; Longitude of event; North Pacific; North Pacific/ABYSSAL FLOOR; North Pacific/BASIN; North Pacific/CONT RISE; North Pacific/FAN; North Pacific/GUYOT; North Pacific/HILL; North Pacific/Philippine Sea/RIDGE; North Pacific/Philippine Sea/TRENCH; North Pacific/PLAIN; North Pacific/PLATEAU; North Pacific/RIDGE; North Pacific/SEAMOUNT; North Pacific/SEDIMENT POND; North Pacific/TERRACE; North Pacific/TRENCH; North Pacific/TROUGH; Paleoelevation; Sediment thickness; South Pacific; South Pacific/BASIN; South Pacific/CONT RISE; South Pacific/Coral Sea; South Pacific/Coral Sea/BASIN; South Pacific/Coral Sea/PLATEAU; South Pacific/PLATEAU; South Pacific/RIDGE; South Pacific/Tasman Sea/BASIN; South Pacific/Tasman Sea/CONT RISE; South Pacific/TRENCH
    Type: Dataset
    Format: text/tab-separated-values, 548 data points
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  • 5
    Publication Date: 2023-06-27
    Keywords: 64-475; 64-478; 64-479; Carbon, organic, total; Charmograph 6, Wösthoff; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Elevation of event; Event label; Fraction; Glomar Challenger; Humic compounds; Latitude of event; Leg64; Longitude of event; North Pacific/Gulf of California/BASIN; North Pacific/Gulf of California/CHANNEL; North Pacific/Gulf of California/SLOPE; Sample code/label
    Type: Dataset
    Format: text/tab-separated-values, 48 data points
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  • 6
    Publication Date: 2023-06-27
    Keywords: 64-475; 64-478; 64-479; Ash; Carbon, total; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Element analyser CHN, LECO; Elevation of event; Event label; Glomar Challenger; Hydrogen; Hydrogen/Carbon ratio; Iron; Latitude of event; Leg64; Longitude of event; Nitrogen, total; North Pacific/Gulf of California/BASIN; North Pacific/Gulf of California/CHANNEL; North Pacific/Gulf of California/SLOPE; Oxygen; Oxygen/Carbon ratio; Sample code/label; Sulfur, total
    Type: Dataset
    Format: text/tab-separated-values, 79 data points
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  • 7
    Publication Date: 2023-06-27
    Keywords: 64-474A; 64-475; 64-476; 64-478; 64-479; 64-481; 64-481A; Carbon, organic, total; Carbon, pyrolysis mineral; Carbonates; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Element analyser CHN, LECO; Elevation of event; Event label; Glomar Challenger; Hydrogen index, mass HC, per unit mass total organic carbon; Hydrogen index *; Latitude of event; Leg64; Longitude of event; North Pacific/Gulf of California/BASIN; North Pacific/Gulf of California/CHANNEL; North Pacific/Gulf of California/SLOPE; North Pacific/Gulf of California/TERRACE; Oxygen index, mass CO2, per unit mass total organic carbon; Pyrolysis temperature maximum; Rock eval pyrolysis (Espitalié et al. 1977); Sample code/label
    Type: Dataset
    Format: text/tab-separated-values, 323 data points
    Location Call Number Expected Availability
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  • 8
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Saby, Nicolas P A; Lemercier, Blandine; Arrouays, Dominique; Leménager, S; Louis, Benjamin P; Millet, Florent; Schellenberger, E; Squividant, H; Swiderski, Chloé; Toutain, Benoît F P; Walter, Christian; Bardy, Marion (2015): Le programme Base de Données des Analyses de Terre (BDAT): Bilan de 20 ans de collecte de résultats d'analyses. Étude et Gestion des Sols (Association Française pour l'Étude du Sol http://www.afes.fr), 21(1), 141-150, hdl:10013/epic.43358.d002
    Publication Date: 2023-05-12
    Description: In France, farmers commission about 250,000 soil-testing analyses per year to assist them managing soil fertility. The number and diversity of origin of the samples make these analyses an interesting and original information source regarding cultivated topsoil variability. Moreover, these analyses relate to several parameters strongly influenced by human activity (macronutrient contents, pH...), for which existing cartographic information is not very relevant. Compiling the results of these analyses into a database makes it possible to re-use these data within both a national and temporal framework. A database compilation relating to data collected over the period 1990-2009 has been recently achieved. So far, commercial soil-testing laboratories approved by the Ministry of Agriculture have provided analytical results from more than 2,000,000 samples. After the initial quality control stage, analytical results from more than 1,900,000 samples were available in the database. The anonymity of the landholders seeking soil analyses is perfectly preserved, as the only identifying information stored is the location of the nearest administrative city to the sample site. We present in this dataset a set of statistical parameters of the spatial distributions for several agronomic soil properties. These statistical parameters are calculated for 4 different nested spatial entities (administrative areas: e.g. regions, departments, counties and agricultural areas) and for 4 time periods (1990-1994, 1995-1999, 2000-2004, 2005-2009). Two kinds of agronomic soil properties are available: the firs one correspond to the quantitative variables like the organic carbon content and the second one corresponds to the qualitative variables like the texture class. For each spatial unit and temporal period, we calculated the following statistics stets: the first set is calculated for the quantitative variables and corresponds to the number of samples, the mean, the standard deviation and, the 2-,4-,10-quantiles; the second set is calculated for the qualitative variables and corresponds to the number of samples, the value of the dominant class, the number of samples of the dominant class, the second dominant class, the number of samples of the second dominant class.
    Type: Dataset
    Format: application/zip, 5.2 MBytes
    Location Call Number Expected Availability
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  • 9
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    Unknown
    PANGAEA
    In:  Supplement to: Volokitina, Lyudmila P; Sedov, Andrey P; Zonenshain, Lev P (1986): Paleobathymetry of the oceans 35 million years ago. Oceanology, 26(1), 71-79
    Publication Date: 2023-06-27
    Description: Data from deep sea drilling, linear magnetic anomalies and bathymetric measurements together with age and morphometric characteristics of seamounts have been used to construct a paleobathymetric map of the oceans 35 million years ago. A brief analysis of these results is presented.
    Keywords: 118-D_Seamount; 128-D_Seamount; 129-D_Seamount; 142-D_Seamount; 16-160; 16-161A; 16-162; 16-163; 17-164; 17-165; 17-166; 17-167; 17-168; 17-169; 17-170; 17-171; 18-172; 18-178; 19-183; 19-192A; 20-194; 20-195B; 20-196; 20-197; 20-198; 20-199; 20-200; 20-201; 21-204; 21-206; 21-207A; 21-208; 21-209; 21-210; 28-264; 28-267B; 28-269; 28-274; 29-275; 29-276; 29-277; 29-278; 29-280A; 29-281; 29-282; 29-283; 30-286; 30-287; 30-288A; 30-289; 31-290; 31-291; 32-303; 32-304; 32-305; 32-306; 32-307; 32-310; 32-313; 33-314; 33-315A; 33-316; 33-317; 33-317A; 33-318; 34-321; 35-322; 35-323; 5-32; 5-38; 5-39; 5-40; 5-41; 5-42; 55-430; 55-431; 55-432; 55-433; 56-436; 57-439; 62-463; 62-464; 62-465; 62-465A; 62-466; 6-44; 6-45; 6-46; 6-47; 6-48; 6-49; 6-50; 6-51; 6-52; 6-59; 7-61; 7-64; 7-65; 7-67; 8-68; 8-69; 8-69A; 8-70A; 8-71A; 8-72; 8-73; 8-74; 8-75; 9-77B; 9-78; Antarctic Ocean; Antarctic Ocean/BASIN; Antarctic Ocean/CONT RISE; Antarctic Ocean/PLAIN; Antarctic Ocean/PLATEAU; Antarctic Ocean/Tasman Sea; Antarctic Ocean/Tasman Sea/CONT RISE; Archive of Ocean Data; ARCOD; Bikini_atoll_Seamount; Cape_Johnson_Seamount; Cross_Seamount; Daikakuji_Seamount; Daini-kashima_Seamount; Darwin_Seamount; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Eiko_Seamount; Eniwetok_atoll_Seamount; Eniwetok Atoll, Central Pacific; Evelyn_Seamount; G-19171_Seamount; Glomar Challenger; HD-1_Seamount; Hess_Seamount; Horizon_Seamount; Indian Ocean//PLATEAU; Isakov_Seamount; Ita-Mai_Tai_Seamount; Jacklin_Seamount; Jingu_Seamount; Kanmu_Seamount; Kapsitotva_Seamount; Khachaturian_Seamount; Kinmei_Seamount; Koko_Seamount; Lamont_Seamount; Leg16; Leg17; Leg18; Leg19; Leg20; Leg21; Leg28; Leg29; Leg30; Leg31; Leg32; Leg33; Leg34; Leg35; Leg5; Leg55; Leg56; Leg57; Leg6; Leg62; Leg7; Leg8; Leg9; Makarov_Seamount; Meiji_Seamount; Menard_Seamount; Miami_Seamount; Necker_Ridge_Seamount; Necker_Seamount; Nintoku_Seamount; North Pacific; North Pacific/ABYSSAL FLOOR; North Pacific/BASIN; North Pacific/CONT RISE; North Pacific/FAN; North Pacific/GUYOT; North Pacific/HILL; North Pacific/Philippine Sea/RIDGE; North Pacific/Philippine Sea/TRENCH; North Pacific/PLAIN; North Pacific/PLATEAU; North Pacific/RIDGE; North Pacific/SEAMOUNT; North Pacific/SEDIMENT POND; North Pacific/TERRACE; North Pacific/TRENCH; North Pacific/TROUGH; Ojin_Seamount; Pacific Ocean; Rahmaninov_Seamount; Ryofu_Seamount; Scripps_Seamount; Seiko_Seamount; Seventoe_Seamount; Shepard_Seamount; South Pacific; South Pacific/BASIN; South Pacific/CONT RISE; South Pacific/Coral Sea; South Pacific/Coral Sea/BASIN; South Pacific/Coral Sea/PLATEAU; South Pacific/PLATEAU; South Pacific/RIDGE; South Pacific/Tasman Sea/BASIN; South Pacific/Tasman Sea/CONT RISE; South Pacific/TRENCH; Station_6348-V_Seamount; Stu_Seamount; Suiko_Seamount; Sylvania_Seamount; Sysoyev_Seamount; T.Washington_Seamount; Unnamed_Seamount; Wentworth_Seamount; Wilder_Seamount; Winterer_Seamount; Yomei_Seamount; Yuryaku_Seamount; Z-4-1_Seamount; Z-4-2_Seamount; Z-4-3_Seamount
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 10
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Brassell, Simon C; Comet, P A; Eglinton, Geoffrey; Isaacson, P J; McEvoy, James; Maxwell, James R; Thomson, I D; Tibbetts, P J C; Volkman, John K (1980): Preliminary lipid analyses of Sections 440A-7-6, 440B-3-5, 440B-8-4, 440B-68-2, and 436-11-4: Legs 56 and 57, Deep Sea Drilling Project. In: Scientific Party, Initial Reports of the Deep Sea Drilling Project, 56/57 (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 56-57, 1367-1390, https://doi.org/10.2973/dsdp.proc.5657.170.1980
    Publication Date: 2023-06-27
    Description: "Bound" and "free" solvent-extractable lipids have been examined from Sections 440A-7-6, 440B-3-5, 440B-8-4, 440B-68-2, and 436-11-4. The compound classes studied include aliphatic and aromatic hydrocarbons, ketones, alcohols, and carboxylic acids. Carotenoids and humic acids have also been examined. The quantitative results are considered in terms of input indicators, diagenesis parameters, and structural classes. A difference in input is deduced across the Japan Trench, with a higher proportion of autochthonous components on the western inner trench slope compared with the more easterly, outer trench, wall and greater input in the early Pleistocene than in the Miocene. A variety of diagenetic transformations is observed at Site 440 as sample depth increases. Results are compared with those of samples from Atlantic Cretaceous sediments and from the Walvis Bay high productivity area.
    Keywords: 56-436; 57-440A; 57-440B; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg56; Leg57; North Pacific/RIDGE; North Pacific/TRENCH
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Expected Availability
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