首页> 外文期刊>Journal of Environmental Science and Health. Part B, Pesticides, Food Contaminants and Agricultural Wastes >Effects of biochar on the emissions, soil distribution, and nematode control of 1,3-dichloropropene
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Effects of biochar on the emissions, soil distribution, and nematode control of 1,3-dichloropropene

机译:生物炭对1,3-二氯丙烯排放,土壤分布和线虫控制的影响

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摘要

Emissions of volatile soil fumigant 1,3-dichloropropene (1,3-D) from soil to air are a significant concern in relation to air quality, and cost-effective strategies to reduce such emissions are urgently required by growers to help them comply with increasingly stringent regulations. In this work, application of a rice husk-derived biochar to the surface of a sandy loam soil chamber reduced soil-air emissions of 1,3-D from 42% in a control (no biochar) to 8% due to adsorption onto the biochar. This adsorbed 1,3-D showed a potential for re-volatilization into air and solubilization into the soil-liquid phase. Biochar at the soil surface also reduced soil-gas concentrations in the upper soil; based on the determination of concentration-time values, this may limit 1,3-D-induced nematode control in the upper soil. In batch studies, the mixing of biochar into the soil severely limited nematode control; 1,3-D application rates around four times greater than the maximum permissible limit would be required to give nematode control under such conditions. Therefore, the use of biochar as a surface amendment, while showing an emission reduction benefit, may limit pest control during subsequent fumigations if, as seems probable, it is plowed into the soil.
机译:从土壤到空气的挥发性土壤熏蒸剂1,3-二氯丙烯(1,3-D)排放是与空气质量相关的重大问题,种植者迫切需要经济有效的策略来减少此类排放,以帮助他们遵守越来越严格的法规。在这项工作中,将稻壳衍生的生物炭应用到沙壤土土壤室的表面,将土壤中的1,3-D排放量从对照中的42%(无生物炭)减少到8%,这是由于吸附到土壤生物炭。吸附的1,3-D表现出重新挥发成空气和溶解成土壤-液相的潜力。土壤表面的生物炭也降低了上层土壤中的土壤气体浓度;基于浓度时间值的确定,这可能会限制上层土壤中1,3-D引起的线虫控制。在批处理研究中,将生物炭混入土壤中严重限制了线虫的控制。为了在这种条件下进行线虫控制,需要大约最大允许极限四倍的1,3-D施用量。因此,使用生物炭作为表面改良剂虽然显示出减少排放的好处,但如果将其耕种到土壤中,则可能会限制后续熏蒸过程中的有害生物控制。

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