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通过化学修饰提高稻草生物炭的阳离子和阴离子交换能力,以增加植物养分保留。

Enhancing cation and anion exchange capacity of rice straw biochar by chemical modification for increased plant nutrient retention.

机构信息

Division of Soil Science and Agricultural Chemistry, Indian Council of Agricultural Research-Indian Agricultural Research Institute, New Delhi 110012, India.

Division of Soil Science and Agricultural Chemistry, Indian Council of Agricultural Research-Indian Agricultural Research Institute, New Delhi 110012, India.

出版信息

Sci Total Environ. 2023 Aug 15;886:163681. doi: 10.1016/j.scitotenv.2023.163681. Epub 2023 Apr 25.

Abstract

Biochar, a potential alternative of infield crop residue burning, can prevent nutrient leaching from soil and augment soil fertility. However, pristine biochar contains low cation (CEC) and anion (AEC) exchange capacity. This study developed fourteen engineered biochar by treating a rice straw biochar (RBC-W) first separately with different CEC and AEC enhancing chemicals, and then with their combined treatments to increase CEC and AEC in the novel biochar composites. Following a screening experiment, promising engineered biochar, namely RBC-W treated with O-HCl-FeCl (RBC-O-Cl), HSO-HNO-HCl-FeCl (RBC-A-Cl), and NaOH-Fe(NO)(RBC-OH-Fe), underwent physicochemical characterization and soil leaching-cum nutrient retention studies. RBC-O-Cl, RBC-A-Cl, and RBC-OH-Fe recorded a spectacular rise in CEC and AEC over RBC-W. All the engineered biochar remarkably reduced the leaching of NH-N, NO -N, PO-P and K from a sandy loam soil and increased retention of these nutrients. RBC-O-Cl at 4.46 g kg dosage emerged as the most effective soil amendment increasing the retention of above ions by 33.7, 27.8, 15.0, and 5.74 % over a comparable dose of RBC-W. The engineered biochar could thus enhance plants' nutrient use efficiency and reduce the use of costly chemical fertilizers that are harmful to environmental quality.

摘要

生物炭是一种替代田间作物秸秆燃烧的潜在选择,可以防止养分从土壤中淋失,并提高土壤肥力。然而,原始生物炭的阳离子(CEC)和阴离子(AEC)交换容量较低。本研究通过分别用不同的 CEC 和 AEC 增强化学品处理一种水稻秸秆生物炭(RBC-W),然后用它们的组合处理来提高新型生物炭复合材料中的 CEC 和 AEC,开发了 14 种工程生物炭。经过筛选实验,有前途的工程生物炭,即经过 O-HCl-FeCl(RBC-O-Cl)、HSO-HNO-HCl-FeCl(RBC-A-Cl)和 NaOH-Fe(NO)(RBC-OH-Fe)处理的 RBC-W,进行了物理化学特性表征和土壤淋滤-养分保留研究。RBC-O-Cl、RBC-A-Cl 和 RBC-OH-Fe 的 CEC 和 AEC 比 RBC-W 显著增加。所有工程生物炭都显著减少了砂壤土中 NH-N、NO -N、PO-P 和 K 的淋失,并增加了这些养分的保留。在 4.46 g kg 剂量下,RBC-O-Cl 作为最有效的土壤改良剂,与可比剂量的 RBC-W 相比,将上述离子的保留率提高了 33.7%、27.8%、15.0%和 5.74%。因此,工程生物炭可以提高植物的养分利用效率,减少对环境质量有害的昂贵化肥的使用。

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