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施用玉米秸秆和接种蚯蚓后几种土壤活性有机碳的动态变化 被引量:9
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作者 袁新田 朱玲 +3 位作者 焦加国 刘满强 李辉信 胡锋 《生态学报》 CAS CSCD 北大核心 2010年第19期5264-5271,共8页
通过室内培养试验,研究在施用玉米秸秆和接种蚯蚓后,土壤微生物生物量碳(SMBC),水提取碳(WEOC),碳水化合物(CHOC)和酚类物质(PEOC)等活性有机碳组分的动态变化。研究结果表明,在不施秸秆或表施秸秆的情况下,接种蚯蚓对四种活性有机碳组... 通过室内培养试验,研究在施用玉米秸秆和接种蚯蚓后,土壤微生物生物量碳(SMBC),水提取碳(WEOC),碳水化合物(CHOC)和酚类物质(PEOC)等活性有机碳组分的动态变化。研究结果表明,在不施秸秆或表施秸秆的情况下,接种蚯蚓对四种活性有机碳组分含量都有一定的促进作用,且在表施秸秆的情况下达到显著水平,其SMBC、WEOC、CHOC和PEOC的含量与不接种蚯蚓相比,分别增加了33.50%、43.13%、68.21%和30.28%。接种蚯蚓在混施秸秆的处理中只有WEOC的含量增加,而SMBC和CHOC含量分别降低了11.04%和16.63%,PEOC的变化不明显。不论接种蚯蚓与否,秸秆的施用对4种组分都有显著的促进作用,其中秸秆混施处理的作用最显著。接种蚯蚓和秸秆施用都能提高土壤WEOC的质量(CHOC/PEOC的比值)。方差分析表明,蚯蚓、秸秆和时间对活性碳组分含量都有显著影响,并且因子间存在强烈的交互作用。土壤活性有机碳各组分除SMBC以外,WEOC、CHOC和PEOC的含量变化受秸秆因子的影响最大,方差解释比例v分别达到82.35%、62.53%和75.82%。试验结果也表现出较一致的随时间的波动性。相关性分析表明,所测定项目SMBC、WEOC、CHOC和PEOC之间有显著的相关性。 展开更多
关键词 蚯蚓 玉米秸秆 微生物生物量 水提取有机碳 化合物 酚类化合物
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Water-Extractable Carbon Pools and Microbial Biomass Carbon in Sodic Water-Irrigated Soils Amended with Gypsum and Organic Manures 被引量:1
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作者 O.P.CHOUDHARY J.K.GILL BIJAY-SINGH 《Pedosphere》 SCIE CAS CSCD 2013年第1期88-97,共10页
Microbial biomass carbon (MBC), a small fraction of soil organic matter, has a rapid turnover rate and is a reservoir of labile nutrients. The water-extractable carbon pools provide a fairly good estimate of labile C ... Microbial biomass carbon (MBC), a small fraction of soil organic matter, has a rapid turnover rate and is a reservoir of labile nutrients. The water-extractable carbon pools provide a fairly good estimate of labile C present in soil and can be easily quantified. Changes in soil MBC and water-extractable organic carbon pools were studied in a 14-year long-term experiment in plots of rice-wheat rotation irrigated with canal water (CW), sodic water (SW, 10-12.5 mmol c L-1 residual sodium carbonate), and SW amended with gypsum with or without application of organic amendments including farmyard manure (FYM), green manure (GM), and wheat straw (WS). Irrigation with SW increased soil exchangeable sodium percentage by more than 13 times compared to irrigation with CW. Sodic water irrigation significantly decreased hot water-extractable organic carbon (HWOC) from 330 to 286 mg kg-1 soil and cold water-extractable organic carbon (CWOC) from 53 to 22 mg kg-1 soil in the top 0-7.5 cm soil layer. In the lower soil layer (7.5-15 cm), reduction in HWOC was not significant. Application of gypsum alone resulted in a decrease in HWOC in the SW plots, whereas an increase was recorded in the SW plots with application of both gypsum and organic amendments in both the soil layers. Nevertheless, application of gypsum and organic amendments increased the mean CWOC as compared with application of gypsum alone. CWOC was significantly correlated with MBC but did not truly reflect the changes in MBC in the treatments with gypsum and organic amendments applied. For the treatments without organic amendments, HWOC was negatively correlated with MBC (r = 0.57*) in the 0-7.5 cm soil layer, whereas for the treatments with organic amendments, both were positively correlated. Irrigation with SW significantly reduced the rice yield by 3 t ha-1 and the yield of rice and wheat by 5 t ha-1 as compared to irrigation with canal water. Application of amendments significantly increased rice and wheat yields. Both the rice yield and the yield of rice and wheat were significantly correlated with MBC (r = 0.49**-0.56**, n = 60). HWOC did not exhibit any relation with the crop yields under the treatments without organic amendments; however, CWOC showed a positive but weak correlation with the crop yields. Therefore, we found that under sodic water irrigation, HWOC or CWOC in the soils was not related to MBC. 展开更多
关键词 cold water exchangeable sodium percentage hot water organic carbon YIELD
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