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Effects of Biochar on Container Substrate Properties and Growth of Plants—A Review

机译:生物炭对容器基质特性和植物生长的影响—综述

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Biochar refers to a processed, carbon-rich material made from biomass. This article provides a brief summary on the effects of biochar on container substrate properties and plant growth. Biochar could be produced through pyrolysis, gasification, and hydrothermal carbonization of various feedstocks. Biochar produced through different production conditions and feedstocks affect its properties and how it performs when incorporated in container substrates. Biochar incorporation affects the physical and chemical properties of container substrates, including bulk density, total porosity, container capacity, nutrient availability, pH, electrical conductivity and cation exchange capacity. Biochar could also affect microbial activities. The effects of biochar incorporation on plant growth in container substrates depend on biochar properties, plant type, percentage of biochar applied and other container substrates components mixed with biochar. A review of the literature on the impact of biochar on container-grown plants without other factors (such as irrigation or fertilization rates) indicated that 77.3% of the studies found that certain percentages of biochar addition in container substrates promoted plant growth, and 50% of the studies revealed that plant growth decreased due to certain percentages of biochar incorporation. Most of the plants tested in these studies were herbaceous plants. More plant species should be tested for a broader assessment of the use of biochar. Toxic substances (heavy metals, polycyclic aromatic hydrocarbons and dioxin) in biochars used in container substrates has rarely been studied. Caution is needed when selecting feedstocks and setting up biochar production conditions, which might cause toxic contaminants in the biochar products that could have negative effects on plant growth.
机译:生物炭是指由生物质制成的经过加工的富碳材料。本文简要介绍了生物炭对容器基质特性和植物生长的影响。生物炭可以通过各种原料的热解,气化和水热碳化来生产。通过不同的生产条件和原料生产的生物炭会影响其性能以及将其掺入容器基材时的性能。生物炭的掺入会影响容器基质的物理和化学性质,包括堆积密度,总孔隙率,容器容量,养分利用率,pH,电导率和阳离子交换容量。生物炭也可能影响微生物活动。生物炭掺入对容器基质中植物生长的影响取决于生物炭性质,植物类型,施用的生物炭百分比以及与生物炭混合的其他容器基质成分。在没有其他因素(例如灌溉或施肥率)的情况下,有关生物炭对容器生长植物的影响的文献综述表明,有77.3%的研究发现,在容器底物中添加一定比例的生物炭可促进植物生长,而50%的研究表明,由于一定比例的生物炭掺入,植物生长下降。在这些研究中测试的大多数植物是草本植物。应该测试更多的植物物种,以更广泛地评估生物炭的使用。很少研究用于容器底物的生物炭中的有毒物质(重金属,多环芳烃和二恶英)。选择原料和设置生物炭生产条件时需要谨慎,这可能会在生物炭产品中引起有毒污染物,可能对植物生长产生负面影响。

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