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首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Change in nutrient composition of biochar from rice husk and sugarcane bagasse at varying pyrolytic temperatures
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Change in nutrient composition of biochar from rice husk and sugarcane bagasse at varying pyrolytic temperatures

机译:不同热解温度下稻壳和甘蔗渣中生物碳营养成分的变化

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h3 class="Heading"Purpose/h3p id="Par1" class="Para"Waste management is one of the significant challenges facing Nigeria’s agricultural sector. To manage this problem, the conversion of agricultural wastes to biochar is a practical solution. h3 class="Heading"Methods/h3p id="Par2" class="Para"In this work, the chemical composition of biochar from rice husk and sugarcane bagasse, two predominant agricultural wastes, commonly generated in Nigeria was studied. These wastes were pyrolyzed at 300–700 and 350–700?°C for rice husk biochar (RHB) and sugarcane bagasse biochar (SBB), respectively. h3 class="Heading"Results/h3p id="Par3" class="Para"It was found that biochar yield and total nitrogen decreased with increasing pyrolysis temperature while ash content, pH, EC, total carbon, extractable Ca, Mg, Na, available phosphorus and silica were increased. In RHB, extractable K increased with increasing pyrolysis temperature, while in SBB it decreased with its maximum observed in RHB. h3 class="Heading"Conclusions/h3p id="Par4" class="Para"Rice husk pyrolyzed at high temperature may produce nutrient-rich biochar with high nutrient contents and these could ameliorate acidic soils. Finally, SBB could give high available silicon with acid pre-treatment.
机译:class =“ Heading”>目的 id =“ Par1” class =“ Para”>废物管理是尼日利亚农业部门面临的重大挑战之一。为了解决这个问题,将农业废物转化为生物碳是一种切实可行的解决方案。 class =“ Heading”>方法 id =“ Par2” class =“ Para”>在这项工作中,稻壳和甘蔗渣中的生物炭化学成分是两种主要的农业废物,通常在对尼日利亚进行了研究。这些废物分别在300–700和350–700?C下热解为稻壳生物炭(RHB)和甘蔗渣生物炭(SBB)。 class =“ Heading”>结果 id =“ Par3” class =“ Para”>已发现,随着热解温度的升高,生物炭产量和总氮降低,而灰分,pH,EC,总碳,增加了可提取的钙,镁,钠,有效磷和二氧化硅。在RHB中,可萃取的K随着热解温度的升高而增加,而在SBB中,其可降解的K随RHB的最大值而降低。 class =“ Heading”>结论 id =“ Par4” class =“ Para”>在高温下热解的稻壳可能会产生营养成分丰富的生物炭,这些生物炭可以改善酸性土壤。最后,SBB可以通过酸预处理获得高利用率的硅。

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