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保护性耕作和养分管理 旱地耕作土壤结构和有机碳协同机制分析

保护性耕作和养分管理 旱地耕作土壤结构和有机碳协同机制分析

作者:武雪萍 等
出版社:中国农业科学技术出版社出版时间:2021-10-01
开本: 16开 页数: 288
本类榜单:农业/林业销量榜
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保护性耕作和养分管理 旱地耕作土壤结构和有机碳协同机制分析 版权信息

  • ISBN:9787511655202
  • 条形码:9787511655202 ; 978-7-5116-5520-2
  • 装帧:平装-胶订
  • 册数:暂无
  • 重量:暂无
  • 所属分类:>

保护性耕作和养分管理 旱地耕作土壤结构和有机碳协同机制分析 内容简介

陆地生态系统中的土壤是全球第三大碳储存场所,几乎是大气中碳储量的三倍。土壤碳库的细微改变就会导致全球碳平衡的改变(例如,大气二氧化碳浓度和土壤有机碳固存)。保护性耕作和施肥是旱作农业中常见的管理措施,能显著改变土壤结构和有机碳。因为土壤有机碳与土壤的很多生物、化学和物理功能密切相关,它在评估土壤稳定性、肥力和农业可持续生产力发展方面具有重要作用。另外,土壤结构不仅是土壤水分、养分、空气和微生物的储存空间,也是它们的运输场所,对土壤有机碳的变化有显著影响。因此,本书主要基于北方黄土高原区旱作农田土壤,揭示保护性耕作和施肥措施对土壤结构和有机碳影响的协同作用机制,对提升土壤碳储存和减少大气碳排放,提供了重要的理论基础和实践指导。

保护性耕作和养分管理 旱地耕作土壤结构和有机碳协同机制分析 目录

Chapter Ⅰ Soil structure and soil organic carbon in dryland farming 1.1 Soil structure 1.2 Soil structural stability 1.3 Soil organic carbon 1.4 S0C status in agroecosystem 1.5 Processes controlling S0C sequestration 1.6 The effect of tillage management on soil structure and S0C 1.7 The effect of long-term applications of organic materials on soil structure and SOC 1.8 The Loess Plateau of China Reference Chapter Ⅱ The effect of conservation tillage on grain yield by changing soil hydraulic properties and soil water availability 2.1 Overview of the study area and experimental design 2.2 Experimental indicator and statistical analysis 2.3 Is least limiting water range a useful indicator of the impact of tillage management on maize yield 2.4 Factors governing soil water repellency under tillage management: the role of pore structure and hydrophobic substances 2.5 Does soil water repellency reduce corn yield by changing soil water availability under long-term tillage management References Chapter Ⅲ The effect of conservation tillage on organic carbon and microbial properties 3.1 Overview of the study area and experimental design 3.2 Experimental indicator and statistical analysis 3.3 A meta-analysis of no-tillage impacts on soil aggregation and aggregate-associated organic carbon 3.4 Linking soil microbial keystone taxa and SOC accumulation under long-term conservation tillage practices 3.5 Nitrogen addition mediates the effect of microbial properties on soil microbial CUE under long-term tillage practices References Chapter IV Effect of long-term conservation tillage practices on soil structure and soil organic carbon dynamic in the Loess Plateau of China 4.1 Overview of the study area and experimental design 4.2 Experimental indicator and statistical analysis 4.3 Soil wet aggregate distribution and pore size distribution under different tillage systems after 16 years in the Loess Plateau of China 4.4 Effect of different tillage systems on aggregate structure and inner distribution of organic carbon 4.5 Effects of different long-term tillage systems on the composition of organic matter by 13C CP/TOSS NMR in physical fractions in the Loess Plateau of China References Chapter V The effect of organic materials on soil physical properties and organic carbon in dryland 5.1 Overview of the study area and experimental design 5.2 Measurements 5.3 Effects of long-term application of different organic materials on the structure and organic carbon of soil aggregates 5.4 Quantity and quality of organic matter in their relation to soil pore system allocation induced by long-ter m organic materials application in dryland 5.5 Long-term application of organic wastes improves soil carbon and structural properties in dryland affected by coal mining activity References Chapter VI The effect of organic amendment on soil organic carbon by changing soil microbial characteristics 6.1 Overview of the study area and experimental design 6.2 Experimental indicator and statistical analysis 6.3 The contribution of microorganisms to soil organic carbon stock under fertilization varies among aggregate size classes 6.4 The dominant microorganisms vary with aggregates sizes in promoting soil C accumulation under straw application References Attachments
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