Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.

Returning straw to deep soil layers by using a deep-ditching-ridge-ploughing method is an innovative management practice that improves soil quality by increasing the soil organic carbon (SOC) content. However, the optimum quantity of straw return has not been determined. To solve this practical prod...

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Main Authors: Hongtao Zou, Xuhong Ye, Jiaqi Li, Jia Lu, Qingfeng Fan, Na Yu, Yuling Zhang, Xiuli Dang, Yulong Zhang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4849761?pdf=render
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spelling doaj-ed002f6805eb40df94783daf2c27f9982020-11-25T01:01:40ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01114e015321410.1371/journal.pone.0153214Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.Hongtao ZouXuhong YeJiaqi LiJia LuQingfeng FanNa YuYuling ZhangXiuli DangYulong ZhangReturning straw to deep soil layers by using a deep-ditching-ridge-ploughing method is an innovative management practice that improves soil quality by increasing the soil organic carbon (SOC) content. However, the optimum quantity of straw return has not been determined. To solve this practical production problem, the following treatments with different amounts of corn straw were investigated: no straw return, CK; 400 kg ha-1 straw, S400; 800 kg ha-1 straw, S800; 1200 kg ha-1 straw, S1200; and 1600 kg ha-1 straw, S1600. After straw was returned to the soil for two years, the microbial biomass C (MBC), easily oxidized organic C (EOC), dissolved organic C (DOC) and light fraction organic C (LFOC) content were measured at three soil depths (0-10, 10-20, and 20-40 cm). The results showed that the combined application of 800 kg ha-1 straw significantly increased the EOC, MBC, and LFOC contents and was a suitable agricultural practice for this region. Moreover, our results demonstrated that returning straw to deep soil layers was effective for increasing the SOC content.http://europepmc.org/articles/PMC4849761?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hongtao Zou
Xuhong Ye
Jiaqi Li
Jia Lu
Qingfeng Fan
Na Yu
Yuling Zhang
Xiuli Dang
Yulong Zhang
spellingShingle Hongtao Zou
Xuhong Ye
Jiaqi Li
Jia Lu
Qingfeng Fan
Na Yu
Yuling Zhang
Xiuli Dang
Yulong Zhang
Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
PLoS ONE
author_facet Hongtao Zou
Xuhong Ye
Jiaqi Li
Jia Lu
Qingfeng Fan
Na Yu
Yuling Zhang
Xiuli Dang
Yulong Zhang
author_sort Hongtao Zou
title Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
title_short Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
title_full Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
title_fullStr Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
title_full_unstemmed Effects of Straw Return in Deep Soils with Urea Addition on the Soil Organic Carbon Fractions in a Semi-Arid Temperate Cornfield.
title_sort effects of straw return in deep soils with urea addition on the soil organic carbon fractions in a semi-arid temperate cornfield.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description Returning straw to deep soil layers by using a deep-ditching-ridge-ploughing method is an innovative management practice that improves soil quality by increasing the soil organic carbon (SOC) content. However, the optimum quantity of straw return has not been determined. To solve this practical production problem, the following treatments with different amounts of corn straw were investigated: no straw return, CK; 400 kg ha-1 straw, S400; 800 kg ha-1 straw, S800; 1200 kg ha-1 straw, S1200; and 1600 kg ha-1 straw, S1600. After straw was returned to the soil for two years, the microbial biomass C (MBC), easily oxidized organic C (EOC), dissolved organic C (DOC) and light fraction organic C (LFOC) content were measured at three soil depths (0-10, 10-20, and 20-40 cm). The results showed that the combined application of 800 kg ha-1 straw significantly increased the EOC, MBC, and LFOC contents and was a suitable agricultural practice for this region. Moreover, our results demonstrated that returning straw to deep soil layers was effective for increasing the SOC content.
url http://europepmc.org/articles/PMC4849761?pdf=render
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