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首页> 外文期刊>Soil Science >Field trials with poultry litter biochar and its effect on forages, green peppers, and soil properties.
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Field trials with poultry litter biochar and its effect on forages, green peppers, and soil properties.

机译:家禽垃圾生物炭的田间试验及其对饲草,青椒和土壤特性的影响。

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摘要

Pyrolysis offers a way to convert poultry litter into a carbon-rich soil amendment. This study was conducted to evaluate the effects of biochar made from poultry litter on soil chemical properties and plant production. The rates of 0, 4.5, and 9 Mg ha-1 were used at three field sites, and the rates were applied once a year in the early spring of 2009 and 2010. Biochar was surface applied on a tall fescue pasture (Lolium arundinaceum (Schreb.) Darbysh. (=Festuca arundinacea Schreb. subsp. arundinacea)) in the Shenandoah Valley and tilled in on two green pepper (Capsicum annuum L.) field sites in southwestern Virginia. The biochar had a carbon content of 25+or-1%, and application increased soil carbon by 0.51% after 2 years of application of 9 Mg ha-1 at the forage site where it was surface applied and by an average of 0.38% at the two green pepper sites where it was tilled in. The biochar had a pH of 9.57+or-0.01 and increased the pH of the soil where it was applied each year. Changes in soil cation exchange capacity showed no clear trends. Mehlich 1 P was increased by 57 mg kg-1 for each Mg ha-1 of biochar at the forage site and by an average of 39 mg kg-1 for each Mg ha-1 of biochar applied at the green pepper sites. The pH and Mehlich 1 P were increased above agronomic levels by the higher rates at all sites, suggesting these as limiting factors. Soluble salts numerically increased in the first year of application but were reduced at all sites through leaching when sampled in the early spring of 2011. No significant differences were found in yields at any of the three sites, but differences in forage quality were found at the tall fescue site probably because biochar increased the rate at which the forage matured.
机译:热解提供了一种将家禽垃圾转化为富含碳的土壤改良剂的方法。进行这项研究以评估由家禽垫料制成的生物炭对土壤化学性质和植物生产的影响。在三个田间地点分别使用0、4.5和9 Mg ha -1 的比率,并于2009年和2010年初的春季每年施用一次。高的羊茅牧场(Lolium arundinaceum(Schreb。)Darbysh。(= Festuca arundinacea Schreb。subsp。arundinacea))在雪兰多厄河谷中耕种,并在弗吉尼亚州西南部的两个青椒(Capsicum annuum L.)田间耕种。该生物炭的碳含量为25%或-1%,在草料表面施用9 Mg ha -1 2年后,施用使土壤碳增加0.51%。在耕种的两个青椒部位平均浓度为0.38%。生物炭的pH值为9.57+或-0.01,每年增加其施肥土壤的pH值。土壤阳离子交换能力的变化没有明显趋势。饲草中每Mg ha -1 的生物炭,Mehlich 1 P增加57 mg kg -1 ,平均增加39 mg kg -1 对于在青椒场所施用的每Mg ha -1 的生物炭。 pH和Mehlich 1 P在所有位点均以较高的速率升高至高于农艺水平,表明这些是限制因素。在施用的第一年,可溶性盐的数量有所增加,但在2011年早春取样时,通过浸出在所有地点的可溶性盐数量均减少。在这三个地点中,任何一个地点的产量均未发现显着差异,但在饲草质量方面却发现了差异。高的羊茅部位,可能是因为生物炭增加了草料的成熟速度。

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