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通風(fēng)方式對牛糞堆肥氨氣排放與氮素轉(zhuǎn)化的影響
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甘肅農(nóng)業(yè)大學(xué)科技創(chuàng)新基金項目(GSAU-XKJS-2018-204)和國家重點研發(fā)計劃項目(2017YFD0800200)


Influence of Ventilation Modes on Ammonia Emission and Nitrogen Conversion in Cattle Manure Composting
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    摘要:

    為揭示通風(fēng)方式對好氧堆肥過程中氮素轉(zhuǎn)化及損失的影響,設(shè)置連續(xù)通風(fēng)T1(通風(fēng)速率0.2L/(min·kg))和間歇通風(fēng)T2(平均通風(fēng)速率0.2L/(min·kg),,通風(fēng)10min,,間歇10min)2個處理,以牛糞和玉米秸稈為原料在反應(yīng)器中進(jìn)行好氧堆肥試驗,。結(jié)果表明,,堆肥結(jié)束后T1和T2處理總氮(TN)損失分別占初始 TN 23.25%和21.12%, TN的損失以NH3揮發(fā)為主,,分別占 TN損失的74.76%和61.84%,,而以N2O排放損失的氮僅占 TN損失的1.12%和1.37%。NH3揮發(fā)主要集中在堆肥初期,,主要是因為較高的溫度和pH值所致,,至堆肥結(jié)束時T2處理NH3累積排放量比T1處理少24.37%。不同通風(fēng)方式對堆肥過程中NH+4N和NO-3N的含量變化也產(chǎn)生顯著影響,到堆肥結(jié)束時,,T2處理相比T1處理,,其NH+4N含量低11%,而NO-3N含量高6.7%,,T2處理酸解總有機(jī)氮含量比T1處理高12.4%,,說明間歇通風(fēng)有利于硝化作用和氨同化作用的進(jìn)行。結(jié)構(gòu)方程模型(SEM)顯示,,T2處理不同有機(jī)氮對NH+4N含量的總影響從大到小順序為:酰胺態(tài)氮(1.006),、氨基糖態(tài)氮(0.485)、酸解未知態(tài)氮(0.034),、氨基酸態(tài)氮(-0.852),,說明NH+4N來源于酰胺態(tài)氮、氨基糖態(tài)氮和酸解未知態(tài)氮,,同時NH+4N可以通過氨同化作用生成氨基酸態(tài)氮,,間歇通風(fēng)能促進(jìn)NH+4N向氨基酸態(tài)氮的轉(zhuǎn)化。間歇通風(fēng)方式通過抑制有機(jī)氮向NH+4N的轉(zhuǎn)化,,降低堆肥過程中由NH3排放造成的氮素?fù)p失,。

    Abstract:

    To reveal the influence of different ventilation modes on nitrogen conversion and loss during the aerobic composting process, the experiment with cattle manure and corn stalk was conducted in the reactor under two different treatments of ventilation modes (continuous ventilation T1 and intermittent ventilation T2). The results showed that the losses of total nitrogen in T1 and T2 accounted for 23.25% and 21.12% of the initial total nitrogen, respectively. Total nitrogen loss was dominated by NH3 volatilization. The nitrogen loss of T1 and T2 treatment from NH3 volatilization accounted for 74.76% and 61.84% and from N2O emission accounted for 1.12% and 1.37% of the total nitrogen loss. NH3 volatilization mainly occurred in the early stage of composting. The cumulative NH3 emissions of T2 treatment was 24.37% less than that in T1 treatment. Different ventilation modes also had significant influences on the content of NH+4N and NO-3N during composting. At the end of composting, compared with T1 treatment, the content of NH+4N in T2 treatment was 11% lower, while the content of NO-3N in T2 treatment was 6.7% higher and the content of total acid-hydrolyzed organic nitrogen was 12.4% higher than that in T1 treatment. T2 treatment could promote the nitration reaction and ammonia assimilation. Structural equation modeling (SEM) indicated that the total effects of different types of organic nitrogen on the content of NH+4N during composting was decreased as follows: amine nitrogen (1.006), amino sugar nitrogen (0.485), hydrolyzable unknown nitrogen (0.034), and amino acid nitrogen (-0.852). Amino sugar nitrogen, hydrolyzable unknown nitrogen and amine nitrogen were most easily converted into NH+4N, while amino acid nitrogen was synthesized from NH+4N during composting. T2 treatment could facilitate the transformations from NH+4N to amino acid nitrogen. Intermittent ventilation could stimulate the growth and activity of microorganisms, and so increasing the accumulation of amino sugar nitrogen. Intermittent ventilation should inhibit the conversion of organic nitrogen to NH+4N, thus reducing the nitrogen loss caused by NH3 emission in the composting process.

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王友玲,邱慧珍,PHILIP Ghanney,李孟嬋,張春紅.通風(fēng)方式對牛糞堆肥氨氣排放與氮素轉(zhuǎn)化的影響[J].農(nóng)業(yè)機(jī)械學(xué)報,2020,51(11):313-320. WANG Youling, QIU Huizhen, PHILIP Ghanney, LI Mengchan, ZHANG Chunhong. Influence of Ventilation Modes on Ammonia Emission and Nitrogen Conversion in Cattle Manure Composting[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(11):313-320.

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  • 收稿日期:2020-08-20
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  • 在線發(fā)布日期: 2020-11-10
  • 出版日期: 2020-11-25
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