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Positive effects of composted biochar on plant growth and soil fertility

机译:堆肥生物炭对植物生长和土壤肥力的积极影响

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Mankind is actually facing serious issues due to the overexploitation of fossil fuels, biomass, soils, nitrogen, and phosphorus. It is claimed that biochar addition to soil improves C sequestration to prevent C02 from atmospheric cycling. Biochar addition should also increase soil fertility in a similar way as anthropogenic dark earths of Central Amazonia. Previous studies have shown that biochar stimulates plant growth and increase fertilizer efficiency, especially when biochar is combined with organic fertilizers such as compost. However, little is known about optimum addition amounts and mixture ratios of biochar and compost. Indeed most experiments to mimic Terra preta de Indio focused on biochar alone or biochar in combination with mineral fertilizers. Therefore, we studied optimum biochar and compost amounts and mixture ratios with respect to plant response and soil fertility. We tested the effect of total amount from 0 to 200 Mg/ha, and biochar proportion from 0 % to 50 % biochar, of 18 different compost mixtures on growth of oat (Avena sativa L.) and soil properties in a fully randomized greenhouse study with sandy and loamy soil substrates. We sampled soil substrates before and after plant growth and analyzed plant growth and yield, totalorganic carbon (TOC), total nitrogen (TN), mineralized nitrogen (Nmin), soil reaction (pH), and electrical conductivity (EC) applying standard procedures. Results show that biomass production was increased with rising biochar and compost amounts. Oat plant height and seed weight was improved only with rising biochar amounts, but not with compost amounts. This could be explained by increase of total organic C and total N but not by plant-available ammonium and nitrate. The positive influence of composted biochar on plant growth and soil properties suggests that composting is a good way to overcome biochar's inherent nutrient deficiency, making it a suitable technique helping to refine farm-scale nutrient cycles.
机译:由于化石燃料,生物质,土壤,氮和磷的过度开发,人类实际上面临着严重的问题。据称,向土壤中添加生物炭可改善C的固存,以防止CO2进入大气循环。添加生物碳还应以类似于人为的亚马逊中部暗土增加土壤肥力。先前的研究表明,生物炭可刺激植物生长并提高肥料利用率,尤其是当生物炭与有机肥料(例如堆肥)结合使用时。但是,关于生物炭和堆肥的最佳添加量和混合比例知之甚少。实际上,大多数模仿Terra preta de Indio的实验都集中在单独使用生物炭或将生物炭与矿物肥料结合使用。因此,我们研究了关于植物响应和土壤肥力的最佳生物炭和堆肥量以及混合比。在完全随机的温室研究中,我们测试了18种不同的堆肥混合物的总量(0至200 Mg / ha,生物炭比例为0%至50%生物炭)对燕麦(Avena sativa L.)生长和土壤特性的影响含沙质和肥沃的土壤基质。我们在植物生长前后对土壤基质进行了采样,并采用标准程序分析了植物生长和产量,总有机碳(TOC),总氮(TN),矿化氮(Nmin),土壤反应(pH)和电导率(EC)。结果表明,生物炭产量随着生物炭和堆肥数量的增加而增加。燕麦的株高和种子重量仅随着生物炭含量的增加而改善,而堆肥量则没有。这可以用总有机碳和总氮的增加来解释,而不是用植物可用的铵和硝酸盐来解释。堆肥生物炭对植物生长和土壤特性的积极影响表明,堆肥是克服生物炭固有的养分缺乏的好方法,使其成为有助于改善农场规模养分循环的合适技术。

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