土壤和水稻中正+六烷的结合残留
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* 国家自然科学基金


BOUND RESIDCE OF CETANE IN SOIL AND RICE PLANT
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    摘要:

    利用14C-正+六烷示踪技术、水稻盆栽和溶剂连续化学提取方法,研究了正+六烷在土壤水稻系统中的某些行为。结果表明,正+六烷容易进入水稻并累积于籽实,对人类健康产生不良影响。实验还探讨了土壤和水稻体内14C-正+六烷的存在和代谢转化过程。土壤中的正+六烷14C主要以溶剂可提取形式存在,大约占总14C的39%,其次是存在于土壤未分解的植物残体(大约占25%)和富啡酸组分(大约占23%)。以无机碳酸盐存在的大约占10%,进入胡敏酸(包括胡敏素)结构的数量较少,总计约占3%。正+六烷在水稻体内主要以结合残留态存在,大约占植物体总14C的98%,石油醚、乙醇和乙醇等有机溶剂可提取部分大约占2%。正+六烷进入水稻系统后,经历时间愈短,结合残留态愈少,溶剂可提态愈多。在石油醚提取液中,Rf值大于正+六烷的极性代谢物占21%。

    Abstract:

    Some environmental behavious of cetane were studied using the tracing technique of 14C-cetane, rice pot culture and sequential solvent extraction method. Results showed that cetane entered easily into rice plant and accumulated in rice grain, thus giving harmful effects on human health. Existing forms and metabolic process of 14C-cetane in soil and rice were also studied. 14C originated from cetane maily existed as solvent-extracted form (about 39% of all 14C), and second one in undecomposed remains of plants (about 25%) and fulvic acid (about 23%) in soil. 14C existing as carbonat was about 10%. 14C entering in humic acid (include humin) was less (about 3%). Cetane mainly existed as bound residue in rice, with amount being 98% of all 14C in plant. The organic solvents-extracted (petroleumether, ether and ethanol) amount was 2%. The shorter the time passed after cetane addition in rice system, and the less the form of bound residues,the more the petroleum etherextracted part.Polar metabolites with a bigger Rf-value accounted for 21% solvent extracted part.

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李书鼎,李雪莲,张少兰,马吉春.土壤和水稻中正+六烷的结合残留[J].土壤学报,1998,35(1):81-87. DOI:10.11766/trxb199606040112 Li Shu-ding, Li Xue-lian, Zhang Shao-lan, Ma Ji-chun. BOUND RESIDCE OF CETANE IN SOIL AND RICE PLANT[J]. Acta Pedologica Sinica,1998,35(1):81-87.

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  • 收稿日期:1996-06-04
  • 最后修改日期:1997-05-17
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  • 在线发布日期: 2013-02-25
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