不同处理方式的作物秸秆田间腐解特性研究
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中国科学院黄土高原土壤侵蚀与旱地农业国家重点实验室基金项目(K318009902-1310)和陕西省科技统筹创新工程计划项目(2011K01-48)


Decomposition Characteristics of Crop Residues among Different Agricultural Treatments
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    摘要:

    采用尼龙网袋法,结合热重分析,研究玉米和大豆秸秆在3种试验地(葡萄园、桃园、农田)腐解过程中的腐解率和组分变化,为秸秆还田措施提供理论依据。结果表明,腐解前期0~20d作物秸秆腐解20%以上,20~120d腐解率无明显变化,120d后继续腐解至60%~70%,大豆秸秆前期较玉米秸秆腐解快。热重分析得出,玉米秸秆在腐解期间(20~45d)会产生TG曲线上200~300℃阶段的失重(20%~30%),腐解后期,大豆秸秆在300~400℃的失重百分比高于玉米秸秆,TG-DTG曲线在600~700℃阶段的失重量到腐解末期(300d)均为6%左右,随着腐解的进行,固定碳和灰分百分比上升至40%。作物秸秆的腐解率、组分百分比在不同处理间(新鲜与干燥处理、大豆秸秆与玉米秸秆处理、加氮与未加氮处理)差异显著(P<0.05),在3个试验地之间则无明显差异(P>0.05),腐解率、固定碳与土壤温度和降水量都呈极显著正相关,挥发分与土壤温度、降水量呈显著负相关(P<0.05)。玉米和大豆秸秆还田有增加土壤碳含量的作用,作物秸秆种类、碳氮比、干湿程度以及土壤温度、降水条件都会影响作物秸秆在土壤中的腐解率和组分变化。

    Abstract:

    This study was about crop decomposition characteristic changes of corn and bean residues (with different water conditions and C/N ratios) decomposition in the fields of three land uses (vineyard, peach orchard, farmland), using nylon mesh bags method and thermogravimetry (TG), which can provide a scientific basis for the rational use of straw resources. The results showed that at the early stage of the decomposition (0~20d), the decomposition rate was more than 20% and the decomposition rate of bean straws was faster than that of corn straws. On 0~90d of the decomposition, they were relatively stable. Then the decomposition rates increased to 60%~70% at the end (300d). In TG-DTG curves, the mass loss of 200~300℃ stage(20%~30%) was caused by the corn straws during the decomposition (20~45d). At the end of decomposition, the 300~400℃ mass losses of bean straws were significantly higher than those of corn straws. The values of 600~700℃ in TG and DTG curves at the end of the decomposition (300d) were about 6%. The decomposition rates and percentages of fixed carbon and volatile matters were significantly different between fresh and dry treatments, corn residues and bean residues, and low C/N ratio and high C/N ratio treatments (P < 0.05). While, there were no obvious differences in three different land uses (P > 0.05). The decomposition rates and fixed carbon contents were significantly positively related to soil temperature and precipitation (P < 0.05), and volatile matters were negatively correlated with soil temperature and precipitation (P < 0.05). Corn and bean straws in soils could increase the carbon content. Type, C/N ratio and water condition of crop residues, and soil temperature and precipitation could affect the crop straw decomposition in the soil.

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曹莹菲,张红,刘克,吕家珑.不同处理方式的作物秸秆田间腐解特性研究[J].农业机械学报,2016,47(9):212-219.

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  • 收稿日期:2016-03-03
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  • 在线发布日期: 2016-09-10
  • 出版日期: 2016-09-10