首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Impact of pine chip biochar on trace greenhouse gas emissions and soil nutrient dynamics in an annual ryegrass system in California
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Impact of pine chip biochar on trace greenhouse gas emissions and soil nutrient dynamics in an annual ryegrass system in California

机译:加利福尼亚州一年生黑麦草系统中松木生物炭对痕量温室气体排放和土壤养分动态的影响

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Manure generated by dairy cattle is a useful soil amendment but contributes to greenhouse gas (GHG) emissions and water pollution from nutrient leaching. In order to assess the impact of pine chip biochar produced at a peak temperature of 550 degrees C when added to a dairy grassland system, a one-year field study was conducted on a sandy loam soil under annual ryegrass (Lolium multiflorum Lam.) grown for silage in Petaluma, California. Manure was applied to all plots at a rate of ca. 150 m(3) ha(-1) (410 kg N ha(-1)). Control plots received no biochar, high application biochar plots (FIB) received biochar (with a 17% ash content) at a rate of 18.8 t ha(-1), and low application biochar plots (LB) received the same biochar at 5.7 t ha(-1). Although the HB plots demonstrated the lowest cumulative nitrous oxide (N2O) and methane (CH4) emissions, there was no significant difference between treatments (p = 0.152 and p = 0.496, respectively). Soil pH results from samples collected throughout the year indicated a significant treatment effect (p = 0.046), though Tukey test results indicated that there was no difference between mean values. Soil total carbon was significantly higher in HB plots at the end of the experiment (p = 0.025) and nitrate (NO3-) intensity throughout the year (which expresses potential exposure of NO3- to the soil microbial community) was significantly lower in HB plots compared to the control (p = 0.001). Annual cumulative potassium (K+) loss from FIB plots was significantly higher than from the other treatments (p = 0.018). HB plots also demonstrated a short-term increase in phosphorus (P) and ammonium (NH4+) in leachate during the first rainfall event following manure and biochar application (p < 0.0001 and p = 0.0002, respectively) as well as a short-term decrease of NO3- in leachate during a heavy rainfall event following a long dry spell (p = 0.036), though differences between treatments for cumulative nutrient losses were not significant (p = 0.210, p = 0.061, and p = 0.295, respectively for P, NH4+, and NO3-). These data indicate that biochar produced from pine wood chips at 550 degrees C having high ash content (17%) is not likely to impact GHG emissions in systems with high manure application rates. Further research should be conducted in order to investigate the impact of biochar amendment on the dynamics and mobility of nutrients applied in subsequent repeated applications of dairy manure.
机译:奶牛产生的肥料是一种有用的土壤改良剂,但会导致温室气体(GHG)排放以及养分浸出而造成水污染。为了评估在添加到乳品草原系统中时在550℃的峰值温度下产生的松片生物炭的影响,对一年生黑麦草(多年生黑麦草)下的砂壤土进行了为期一年的田间研究。加利福尼亚Petaluma的青贮饲料。粪便以大约5%的比例施用于所有地块。 150 m(3)ha(-1)(410 kg N ha(-1))。对照地块未收到生物炭,高施用量生物炭小区(FIB)以18.8 t ha(-1)的速率接受了生物炭(灰分含量为17%),低施用量生物炭小区(LB)在5.7 t处收到了相同的生物炭。 ha(-1)。尽管HB图显示出最低的累积一氧化二氮(N2O)和甲烷(CH4)排放,但处理之间没有显着差异(分别为p = 0.152和p = 0.496)。全年采集的样品的土壤pH值结果显示出显着的处理效果(p = 0.046),尽管Tukey测试结果表明平均值之间没有差异。在实验结束时,HB样地的土壤总碳显着较高(p = 0.025),而全年硝酸盐(NO3-)的强度(表示NO3-暴露于土壤微生物群落的强度)显着降低。与对照组相比(p = 0.001)。 FIB样地的年度累积钾(K +)损失显着高于其他处理(p = 0.018)。 HB图还表明,在施用肥料和生物炭后的第一次降雨事件中,渗滤液中磷(P)和铵(NH4 +)的短期增加(分别为p <0.0001和p = 0.0002),以及短期的减少在长时间干旱后的强降雨事件中渗滤液中的NO3-(p = 0.036),尽管累积养分流失的处理之间的差异并不显着(P分别为p = 0.210,p = 0.061和p = 0.295, NH4 +和NO3-)。这些数据表明,由松木屑在550摄氏度下产生的生物炭具有高的灰分含量(17%)不太可能影响肥料施用率高的系统中的温室气体排放。为了研究生物炭改良剂对随后重复施用奶牛粪便中养分的动态性和流动性的影响,应进行进一步的研究。

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