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生物炭对有效细菌群落的影响及其对玉米秸秆堆肥的作用。

Effect of corn straw biochar on corn straw composting by affecting effective bacterial community.

机构信息

Agricultural College, Shenyang Agricultural University, Shenyang, China.

Liaoning Biochar Engineering and Technology Research Center, Shenyang, China.

出版信息

Prep Biochem Biotechnol. 2021;51(8):792-802. doi: 10.1080/10826068.2020.1858428. Epub 2020 Dec 25.

Abstract

This study investigated the effect of corn straw biochar on the decomposition, nutrient transformation, and bacterial community characteristics in the corn straw decomposition process. A 90-day microcosm incubation experiment was performed to assess the effects of corn straw biochar (500 °C, 1 h) on the corn straw decomposition process and the resulting product. Four biochar amendment rates (0%, 5, 10, and 15%, as mass fractions of biochar) and three different addition times (1st day, 30th day, and 60th day) were set in total. The results showed that corn straw biochar significantly increased the pH of the corn straw decomposition process by 0.71-0.73 and increased the electrical conductivity value by 0.64-1.07 μS/cm over that of the controls. In addition, biochar was shown to increase the temperature rise rate and temperature peak of the straw maturation system, and advance the process of straw maturation by 10 days. Thus, treatment with corn straw biochar could accelerate the corn straw decomposition process and change the conditions for microorganisms involved in the process. Furthermore, biochar additions significantly decreased the organic matter content by 9.67% under B3 and T treatment, and enhanced the N, PO, and KO contents of the straw decomposition product by 0.36, 0.19, and 0.88% under B3 and T treatment. Biochar additions could increase the abundance of several effective bacteria closely related to the N, PO, and KO contents of the straw maturation product. The growth of these bacteria was likely to be affected by the increase in pH with biochar addition, which enabled the improvement of the nutrient mineralization process.

摘要

本研究考察了玉米秸秆生物炭对玉米秸秆分解过程中分解、养分转化和细菌群落特征的影响。采用 90 天的微宇宙培养实验评估了 500°C、1h 制备的玉米秸秆生物炭对玉米秸秆分解过程及其产物的影响。共设置了 4 个生物炭添加率(0%、5%、10%和 15%,以生物炭质量分数计)和 3 个不同的添加时间(第 1 天、第 30 天和第 60 天)。结果表明,玉米秸秆生物炭显著提高了玉米秸秆分解过程的 pH 值,比对照提高了 0.71-0.73,电导率值提高了 0.64-1.07μS/cm。此外,生物炭还提高了秸秆成熟系统的升温速率和温度峰值,使秸秆成熟过程提前了 10 天。因此,玉米秸秆生物炭的处理可以加速玉米秸秆的分解过程,并改变参与该过程的微生物的条件。此外,生物炭添加处理 B3 和 T 使有机物质含量分别降低了 9.67%,使秸秆分解产物中的 N、PO 和 KO 含量分别提高了 0.36%、0.19%和 0.88%。生物炭添加处理可增加与秸秆成熟产物 N、PO 和 KO 含量密切相关的几种有效细菌的丰度。这些细菌的生长可能受到生物炭添加导致 pH 值升高的影响,从而改善了养分矿化过程。

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