MOBILITY AND PLANT UPTAKE OF INORGANIC C-14 AND C-14-LABELED PCB IN SOILS OF HIGH AND LOW RETENTION

被引:29
作者
SHEPPARD, MI
SHEPPARD, SC
AMIRO, BD
机构
[1] Environmental Science Branch, AECL Research, Whiteshell Laboratories, ROE 1L0, Pinawa, Manitoba
来源
HEALTH PHYSICS | 1991年 / 61卷 / 04期
关键词
D O I
10.1097/00004032-199110000-00003
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Quantifying and understanding the mobility of C-14 and organic pollutants in soils is important, especially in the context of underground waste disposal. We studied migration of C-14 applied as NaHCO3 (C-14-CO3) and as 2,2',5,5' tetrachlorobiphenyl (C-14-PCB) in carbonated, high-organic-matter-content and acidic, low-organic-matter-content undisturbed soil cores. The mobility of C-14-PCB depends on the profile distribution and amount of soil organic matter, whereas the mobility of C-14-CO3 depends primarily on the soil carbonate content. The solid/liquid partition coefficients (K(d)) for C-14-CO3 were 6.7 and 1.2 mL g-1 for the two soils, respectively. For the C-14-PCB, the corresponding K(d) values were 49 and 22 mL g-1. Plant/soil concentration ratios (CR) for inorganic C-14 have previously been derived using overly conservative assumptions. Using plants grown in outdoor lysimeters, CR values for C-14-CO3 of 0.7 and 1.3, on a dry-weight basis, were measured for the two soils. These values are about 25-fold lower than the currently used values. The corresponding CR values for C-14-PCB were 0.014 and 0.088. For both C-14 sources, there was evidence of atmospheric transfer from the soil to the plants. This was especially important for C-14-CO3, where it may have been dominant. Detailed modelling of C-14 transport from underground waste disposal should include volatilization as a loss process from soil as well as a source for plants.
引用
收藏
页码:481 / 492
页数:12
相关论文
共 50 条
[21]   C-14-LABELED ALPHADIAZOKETONES - VERSATILE INTERMEDIATES FOR THE SYNTHESIS OF C-14-LABELED COMPOUNDS [J].
PARNES, H .
APPLIED RADIATION AND ISOTOPES, 1988, 39 (06) :554-554
[22]   Tissue sites of uptake of C-14-labeled C-60 [J].
BullardDillard, R ;
Creek, KE ;
Scrivens, WA ;
Tour, JM .
BIOORGANIC CHEMISTRY, 1996, 24 (04) :376-385
[23]   [C-14] LIGNIN-LABELED LIGNOCELLULOSES AND C-14-LABELED MILLED WOOD LIGNINS - PREPARATION, CHARACTERIZATION, AND USES [J].
CRAWFORD, RL ;
CRAWFORD, DL .
METHODS IN ENZYMOLOGY, 1988, 161 :18-31
[24]   DIFFUSION AND ANALYSIS OF C-14 LABELED DIELDRIN IN SOILS [J].
FARMER, WJ ;
JENSEN, CR .
SOIL SCIENCE SOCIETY OF AMERICA PROCEEDINGS, 1970, 34 (01) :28-&
[25]   FATE OF C-14 LABELED CHLORONEB IN PLANTS AND SOILS [J].
RHODES, RC ;
PEASE, HL ;
BRANTLEY, RK .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1971, 19 (04) :745-&
[26]   METABOLISM OF C-14-LABELED GLYCEROL AND C-14-LABELED PYRUVATE BY RAT LIVER, INVITRO [J].
TENG, CT ;
HASTINGS, AB ;
NESBETT, FB .
FEDERATION PROCEEDINGS, 1951, 10 (01) :258-258
[27]   INCORPORATION OF [C-14]-LABELED PHENYLALANINE AND [C-14]-LABELED MEVALONATE IN SOYBEAN PHYTOALEXINS [J].
KOCH, MF ;
FUCHS, A ;
DEVRIES, FW .
ACTA BOTANICA NEERLANDICA, 1980, 29 (2-3) :218-218
[28]   EFFECT OF MCPA ON C-14-LABELED DICLOFOP UPTAKE AND TRANSLOCATION [J].
OLSON, W ;
NALEWAJA, JD .
WEED SCIENCE, 1982, 30 (01) :59-63
[29]   SYNTHESIS OF 2 C-14-LABELED FORMS OF PRINOMIDE, A POTENTIAL ANTIINFLAMMATORY COMPOUND AND ITS HYDROXY METABOLITE, LABELED WITH C-14 [J].
CHAUDHURI, NK ;
MARKUS, B .
JOURNAL OF LABELLED COMPOUNDS & RADIOPHARMACEUTICALS, 1990, 28 (03) :321-327
[30]   C-14-EXCRETION AND C-14-RETENTION AFTER APPLICATION OF C-14-LABELED ADENINE TO RATS WITH SPECIAL REGARD TO (CO2)-C-14-LABELED LIBERATION AS A PARAMETER OF METABOLIC PROCESS [J].
GREIFE, HA ;
MOLNAR, S .
ZEITSCHRIFT FUR TIERPHYSIOLOGIE TIERERNAHRUNG UND FUTTERMITTELKUNDE-JOURNAL OF ANIMAL PHYSIOLOGY AND ANIMAL NUTRITION, 1982, 47 (01) :10-20