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黄棕壤铁铝氧化物与土壤稳定性有机碳和氮的关系
引用本文:衡利沙,王代长,蒋新,饶伟,张文豪,郭春燕,李腾.黄棕壤铁铝氧化物与土壤稳定性有机碳和氮的关系[J].环境科学,2010,31(11):2748-2755.
作者姓名:衡利沙  王代长  蒋新  饶伟  张文豪  郭春燕  李腾
作者单位:1. 河南农业大学资源与环境学院,河南省高校农业资源与环境工程技术研究中心,郑州,450002
2. 河南农业大学资源与环境学院,河南省高校农业资源与环境工程技术研究中心,郑州,450002;中国科学院南京土壤研究所土壤与农业可持续发展国家重点实验室,南京,210008
3. 中国科学院南京土壤研究所土壤与农业可持续发展国家重点实验室,南京,210008
基金项目:河南省自然科学基金项目(2009B210014);土壤与农业可持续发展国家重点实验室的开放基金项目(0751010004);国家杰出青年科学基金项目(40325001)
摘    要:用6%NaOCl氧化不同粒级的黄棕壤,得到稳定性有机碳和氮的样品.用选择性溶提技术提取铁铝氧化物的含量,与稳定性有机碳和氮的关系表明:在2~250μm粒级上,游离铁、无定形铁和络合态铁含量的变化范围分别为6~60.8g/kg、0.13~4.8g·kg-1和0.03~0.47g·kg-1,在2μm粒级上分别为43.1~170g·kg-1、5.9~14.0g·kg-1和0.28~0.78g·kg-1.在2μm粒级上,无定形铝和络合态铝含量变化范围分别为0.08~1.34g/kg和0.11~0.47g/kg,在2μm粒级上分别为2.96~6.20g·kg-1和0.38~0.78g·kg-1.水稻土黄棕壤的选择性溶提铁的含量一般高于旱地黄棕壤,而选择性溶提铝的含量低于旱地黄棕壤.在2~250μm粒级上,土壤稳定性有机碳和有机氮含量变幅分别为0.93~6.0g·kg-1和0.05~0.36g·kg-1,在2μm粒级上分别为6.05~19.3g·kg-1和0.61~2.1g·kg-1,水稻土的稳定性有机碳和氮的含量高于旱地黄棕壤.在2~250μm粒级上,稳定性有机碳与有机氮比值(C稳/N稳)的变幅为9.50~22.0,在2μm粒级上分别为7.43~11.54.在2~250μm粒级上,土壤有机碳(氮)的稳定性指数SIC和SIN的变化分别为14.3~50.0和11.9~55.6,在2μm粒级上分别为53.72~88.80和40.64~70.0;旱地黄棕壤的SIC和SIN一般低于水稻土的,水稻土黄棕壤有利于有机碳和氮的保存.各种形态的铁铝氧化物含量与稳定性有机碳(氮)含量呈极显著正相关,且氧化物铁铝含量和稳定性有机碳(氮)含量在黏粒部分最高,即细粒级能保护土壤有机碳(氮).

关 键 词:黄棕壤    铁铝氧化物    稳定性有机碳    稳定性有机氮    C/N    稳定性指数(SI)
收稿时间:2009/12/31 0:00:00
修稿时间:2010/3/17 0:00:00

Relationship Between Fe, Al Oxides and Stable Organic Carbon, Nitrogen in the Yellow-Brown Soils
HENG Li-sh,WANG Dai-zhang,JIANG Xin,RAO Wei,ZHANG Wen-hao,GUO Chun-yan and LI Teng.Relationship Between Fe, Al Oxides and Stable Organic Carbon, Nitrogen in the Yellow-Brown Soils[J].Chinese Journal of Environmental Science,2010,31(11):2748-2755.
Authors:HENG Li-sh  WANG Dai-zhang  JIANG Xin  RAO Wei  ZHANG Wen-hao  GUO Chun-yan and LI Teng
Institution:Engineering Research Center of Agricultural Resources and Environment, Colleges and Universities of Henan Province, Henan Agricultural University, Zhengzhou 450002, China. lishaheng@126.com
Abstract:The stable organic carbon and nitrogen of the different particles were gained by oxidation of 6% NaOCl in the yellow-brown soils. The relationships between the contents of selective extractable Fe/Al and the stable organic carbon/nitrogen were investigated. It shown that amounts of dithionite-citrate-(Fe(d)) and oxalate-(Fe(o)) and pyrophosphate extractable (Fe(p)) were 6-60.8 g x kg(-1) and 0.13-4.8 g x kg(-1) and 0.03-0.47 g x kg(-1) in 2-250 microm particles, respectively; 43.1-170 g x kg(-1) and 5.9-14.0 g x kg(-1) and 0.28-0.78 g x kg(-1) in < 2 microm particles, respectively. The contents of oxalate-(Al(o)) and pyrophosphate extractable (Al(p)) were 0.08-1.34 g x kg(-10 and 0.11-0.47 g x kg(-1) in 2-250 microm particles, respectively; 2.96-6.20 g x kg(-1) and 0.38-0.78 g x kg(-1) in < 2 microm particles, respectively. And amounts of selective extractable Fe are generally higher in paddy yellow-brown soils than in arid yellow-brown soils, and that of selective extractable Al are lower in the former than in the latter. Amounts of the stable organic carbon and nitrogen, higher in paddy yellow-brown soils than in arid yellow-brown soils, were 0.93-6.0 g x kg(-1) and 0.05-0.36 g x kg(-1) in 2-250 microm particles, respectively; 6.05-19.3 g x kg(-1) and 0.61-2.1 g x kg(-1) in < 2 microm particles, respectively. The ratio of the stable organic carbon and nitrogen (C(stable)/N(stable)) were 9.50-22.0 in 2-250 microm particles and 7.43-11.54 in < 2 microm particles, respectively. The stabilization index (SI(C) and SI(N)) of the organic carbon and nitrogen were 14.3-50.0 and 11.9-55.6 in 2-250 microm particles, respectively; 53.72-88.80 and 40.64-70.0 in < 2 microm particles, respectively. According to SI, it is lower in arid yellow-brown soils than in paddy yellow-brown soils. The organic carbon and nitrogen are advantageously conserved in paddy yellow-brown soil. An extremely significant positive correlation of the stable organic carbon and nitrogen with selective extractable Fe/Al is observed. The most amounts between the stable organic carbon and nitrogen and selective extractable Fe/Al appear in clay particles, namely the clay particles could protect the soil organic carbon and nitrogen.
Keywords:yellow-brown soil    Fe  Al oxides  stable organic carbon  stable organic nitrogen  
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