/* DATA DESCRIPTION:
Citation:	Gilbert, Deborah; Cunningham, Robert (1985): (Table 1) Age, total organic carbon, organic matter types, and pyrolysis results from DSDP Leg 84 Holes [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.804387, 
	Supplement to: Gilbert, D; Cunningham, R (1985): Organic facies variations in sediments from Leg 84, off Guatemala. In: von Heune, R; Aubouin, J; et al. (eds.), Initial Reports of the Deep Sea Drilling Project, Washington (U.S. Govt. Printing Office), 84, 739-742, https://doi.org/10.2973/dsdp.proc.84.131.1985
Abstract:	Continental slope samples offshore Guatemala contain organic matter derived from both terrestrial and marine sources. Upper Pleistocene samples are generally amorphous-rich, with TOCs averaging 2.4%. Pliocene and Miocene sediments contain varying amounts of terrestrial material that increase in proportion down toward the base of the slope. TOCs average 0.93%. The samples are currently immature for the generation of liquid hydrocarbons.
Project(s):	Deep Sea Drilling Project (DSDP) (URI: https://www.deepseadrilling.org/)
Coverage:	MEDIAN LATITUDE: 13.003125 * MEDIAN LONGITUDE: -90.991000 * SOUTH-BOUND LATITUDE: 12.716500 * WEST-BOUND LONGITUDE: -91.392800 * NORTH-BOUND LATITUDE: 13.285300 * EAST-BOUND LONGITUDE: -90.800000
	DATE/TIME START: 1982-01-29T00:00:00 * DATE/TIME END: 1982-02-17T00:00:00
	MINIMUM DEPTH, sediment/rock: 48 m * MAXIMUM DEPTH, sediment/rock: 406 m
Event(s):	84-567A * LATITUDE: 12.716500 * LONGITUDE: -90.932000 * DATE/TIME: 1982-01-29T00:00:00 * ELEVATION: -5500.0 m * PENETRATION: 501 m * RECOVERY: 104.2 m * LOCATION: North Pacific/SLOPE * CAMPAIGN: Leg84 * BASIS: Glomar Challenger (URI: https://www-odp.tamu.edu:443/glomar.html) * METHOD/DEVICE: Drilling/drill rig (DRILL) * COMMENT: 28 cores; 296.6 m cored; 8.9 m drilled; 35.1 % recovery
	84-568 * LATITUDE: 13.072200 * LONGITUDE: -90.800000 * DATE/TIME: 1982-02-08T00:00:00 * ELEVATION: -2010.0 m * PENETRATION: 417.7 m * RECOVERY: 307.6 m * LOCATION: North Pacific/SLOPE * CAMPAIGN: Leg84 * BASIS: Glomar Challenger (URI: https://www-odp.tamu.edu:443/glomar.html) * METHOD/DEVICE: Drilling/drill rig (DRILL) * COMMENT: 43 cores; 408 m cored; 9.7 m drilled; 75.4 % recovery
	84-569 * LATITUDE: 12.938500 * LONGITUDE: -90.839200 * DATE/TIME: 1982-02-12T00:00:00 * ELEVATION: -2744.0 m * PENETRATION: 250.7 m * RECOVERY: 134 m * LOCATION: North Pacific/SLOPE * CAMPAIGN: Leg84 * BASIS: Glomar Challenger (URI: https://www-odp.tamu.edu:443/glomar.html) * METHOD/DEVICE: Drilling/drill rig (DRILL) * COMMENT: 27 cores; 250.7 m cored; 0 m drilled; 53.5 % recovery
	84-570 * LATITUDE: 13.285300 * LONGITUDE: -91.392800 * DATE/TIME: 1982-02-17T00:00:00 * ELEVATION: -1698.0 m * PENETRATION: 401.9 m * RECOVERY: 164.5 m * LOCATION: North Pacific/SLOPE * CAMPAIGN: Leg84 * BASIS: Glomar Challenger (URI: https://www-odp.tamu.edu:443/glomar.html) * METHOD/DEVICE: Drilling/drill rig (DRILL) * COMMENT: 40 cores; 382.6 m cored; 19.3 m drilled; 43 % recovery
Parameter(s):	Event label (Event)
	Latitude of event (Latitude)
	Longitude of event (Longitude)
	Elevation of event [m] (Elevation)
	Sample code/label (Sample label) * PI: Gilbert, Deborah * METHOD/DEVICE: DSDP/ODP/IODP sample designation (URI: hdl:10013/epic.27914.d001)
	Site (Site) * PI: Gilbert, Deborah
	Depth, relative [m] (Depth rel) * PI: Gilbert, Deborah * COMMENT: Water depth + sediment depth
	DEPTH, sediment/rock [m] (Depth sed) * GEOCODE
	Carbon, organic, total [%] (TOC) * PI: Gilbert, Deborah * METHOD/DEVICE: Carbon analyser, LECO
	Thermal alteration index (TAI) * PI: Gilbert, Deborah
	Organic matter, amorphous [%] (AOM) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation
	Organic matter, aquatic [%] (OM aquatic) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Structured
	Organic matter, terrigenous [%] (OM terr) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Biodegraded
	Organic matter [%] (OM) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Pollen and spores
	Organic matter, terrigenous [%] (OM terr) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Structured
	Organic matter [%] (OM) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Inerty
	Organic matter [%] (OM) * PI: Gilbert, Deborah * METHOD/DEVICE: Visual observation * COMMENT: Round bodies
	Epoch (Epoch) * PI: Gilbert, Deborah
	Hydrogen index, mass HC, per unit mass total organic carbon [mg/g] (HI, HC/TOC) * PI: Gilbert, Deborah * METHOD/DEVICE: Rock eval pyrolysis (Espitalié et al. 1977) (URI: https://doi.org/10.2516/ogst:1977002)
	Oxygen index, mass CO2, per unit mass total organic carbon [mg/g] (OI, CO2/TOC) * PI: Gilbert, Deborah * METHOD/DEVICE: Rock eval pyrolysis (Espitalié et al. 1977) (URI: https://doi.org/10.2516/ogst:1977002)
	Pyrolysis temperature maximum [°C] (Tmax) * PI: Gilbert, Deborah * METHOD/DEVICE: Rock eval pyrolysis (Espitalié et al. 1977) (URI: https://doi.org/10.2516/ogst:1977002) * COMMENT: #1
	Pyrolysis temperature maximum [°C] (Tmax) * PI: Gilbert, Deborah * METHOD/DEVICE: Rock eval pyrolysis (Espitalié et al. 1977) (URI: https://doi.org/10.2516/ogst:1977002) * COMMENT: #2
License:	Creative Commons Attribution 3.0 Unported (CC-BY-3.0) (URI: https://creativecommons.org/licenses/by/3.0/)
Size:	397 data points
*/
Event	Latitude	Longitude	Elevation [m]	Sample label (DSDP/ODP/IODP sample designation)	Site	Depth rel [m] (Water depth + sediment depth)	Depth sed [m]	TOC [%] (Carbon analyser, LECO)	TAI	AOM [%] (Visual observation)	OM aquatic [%] (Structured, Visual observation)	OM terr [%] (Biodegraded, Visual observation)	OM [%] (Pollen and spores, Visual obs...)	OM terr [%] (Structured, Visual observation)	OM [%] (Inerty, Visual observation)	OM [%] (Round bodies, Visual observation)	Epoch	HI, HC/TOC [mg/g] (Rock eval pyrolysis (Espitali...)	OI, CO2/TOC [mg/g] (Rock eval pyrolysis (Espitali...)	Tmax [°C] (#1, Rock eval pyrolysis (Espi...)	Tmax [°C] (#2, Rock eval pyrolysis (Espi...)
84-567A	12.7165	-90.9320	-5500	84-567A-3-5,110-117	Base of slope	5751	251	2.75	1.3	95	0.00	0.00	0.00	0.00	0.00	0.00	lower Miocene	289	472	415	537
84-567A	12.7165	-90.9320	-5500	84-567A-6-3,120-127	Base of slope	5777	277	0.42	1.3	5	0.00	10.00	20.00	55.00	10.00	0.00	lower Miocene	652	2021	435	537
84-567A	12.7165	-90.9320	-5500	84-567A-9-5,120-127	Base of slope	5808	308	0.93	1.3	10	5.00	5.00	10.00	60.00	10.00	0.00	lower Miocene	16	111	422	
84-567A	12.7165	-90.9320	-5500	84-567A-12-4,110-120	Base of slope	5837	337	0.79	1.7	5	0.00	0.00	10.00	75.00	10.00	0.00	lower Miocene	15	918	425	
84-567A	12.7165	-90.9320	-5500	84-567A-14-1,120-127	Base of slope	5846	346	0.84	1.7	10	0.00	10.00	0.00	60.00	20.00	0.00	lower Miocene	178	234	413	500
84-569	12.9385	-90.8392	-2744	84-569-1-3,120-129	Mid-slope	2800	56	0.66	1.3	5	0.00	0.00	5.00	80.00	10.00	0.00	upper Pliocene	278	663	337	525
84-569	12.9385	-90.8392	-2744	84-569-11-1,120-130	Mid-slope	2888	144	0.76	1.7	20	0.00	0.00	10.00	50.00	10.00	10.00	upper Pliocene	353	656	420	520
84-569	12.9385	-90.8392	-2744	84-569-13-3,134-140	Mid-slope	2910	166	0.93	1.7	95	0.00	0.00	0.00	0.00	0.00	0.00	upper Miocene	243	748	418	537
84-569	12.9385	-90.8392	-2744	84-569-17-5,127-136	Mid-slope	2951	207	0.68	1.3	0	0.00	0.00	10.00	80.00	10.00	0.00	upper Miocene	223	267	361	537
84-569	12.9385	-90.8392	-2744	84-569-23-3,110-117	Mid-slope	3006	262	1.15	1.3	95	0.00	0.00	0.00	5.00	0.00	0.00	upper Miocene	252	275	393	550
84-569	12.9385	-90.8392	-2744	84-569-26-3,140-149	Mid-slope	3034	290	1.23	1.3	50	0.00	0.00	10.00	30.00	10.00	0.00	upper Oligocene	250	513	390	550
84-568	13.0722	-90.8000	-2010	84-568-4-4,120-127	Upper slope	2058	48	1.66	1.3	90	0.00	0.00	0.00	5.00	5.00	0.00	upper Pleistocene	186	531	430	
84-568	13.0722	-90.8000	-2010	84-568-7-1,120-127	Upper slope	2083	73	3.16	1.3	95	0.00	0.00	0.00	0.00	0.00	0.00	upper Pleistocene	198	394	415	
84-568	13.0722	-90.8000	-2010	84-568-10-1,120-127	Upper slope	2113	103	2.58	1.3	95	0.00	0.00	0.00	0.00	5.00	0.00	upper Pleistocene	46	441	419	
84-568	13.0722	-90.8000	-2010	84-568-13-2,14-24	Upper slope	2141	131	2.38	1.3	50	0.00	0.00	0.00	30.00	20.00	0.00	upper Pleistocene	48	453	417	
84-568	13.0722	-90.8000	-2010	84-568-17-5,123-131	Upper slope	2184	174	2.83	1.3	50	0.00	0.00	0.00	20.00	10.00	20.00	upper Pleistocene	48	401	410	
84-568	13.0722	-90.8000	-2010	84-568-19-5,120-130	Upper slope	2194	184	1.84	1.3	95	0.00	0.00	0.00	0.00	5.00	0.00	upper Pleistocene	45	434	420	
84-568	13.0722	-90.8000	-2010	84-568-22-4,122-131	Upper slope	2231	221	0.93	1.3	80	0.00	0.00	5.00	5.00	0.00	10.00	lower Pliocene-MM	561	325	415	537
84-568	13.0722	-90.8000	-2010	84-568-25-3,120-129	Upper slope	2262	252	0.82	1.3	10	0.00	0.00	30.00	50.00	10.00	0.00	lower Pliocene-MM	269	584	409	550
84-568	13.0722	-90.8000	-2010	84-568-28-5,120-129	Upper slope	2293	283	1.08	1.3	80	0.00	0.00	5.00	10.00	5.00	0.00	middle Miocene	200	676	417	
84-568	13.0722	-90.8000	-2010	84-568-33-6,115-125	Upper slope	2341	331	1.00	1.3	55	0.00	0.00	5.00	30.00	10.00	0.00	middle Miocene	208	836	418	
84-568	13.0722	-90.8000	-2010	84-568-36-4,126-135	Upper slope	2368	358	0.83	1.7	80	0.00	0.00	0.00	10.00	10.00	0.00	middle Miocene	197	667	370	550
84-568	13.0722	-90.8000	-2010	84-568-41-4,120-127	Upper slope	2416	406	0.96	2.0	20	0.00	0.00	5.00	60.00	10.00	5.00	lower Miocene	1471	454	381	537
84-570	13.2853	-91.3928	-1698	84-570-32-5,120-127	Upper slope	2023	325	3.32	1.3	95	0.00	0.00	0.00	0.00	0.00	0.00	upper Miocene	365	25	418	
