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Efficiency of Wheat Straw Biochar in Combination with Compost and Biogas Slurry for Enhancing Nutritional Status and Productivity of Soil and Plant

机译:小麦秸秆生物炭与堆肥和沼气浆料的效率提高土壤和植物营养状况及生产力

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摘要

In the present study, we investigated the impact of different combinations of wheat straw biochar, compost and biogas slurry on maize growth, physiology, and nutritional status in less productive soils. The experiment was performed as a completely randomized block design in a greenhouse pot experiment. The compost and biogas slurry were applied with and without biochar. The results revealed that a combination of biochar, compost, and biogas slurry enhanced the cation exchange capacity (31%), carbon (83%), phosphorus (67%) and potassium (81%) contents in the soil. Likewise, a significant increase in soil microbial biomass carbon (15%) and nitrogen (37%) was noticed with the combined use of all organic amendments. Moreover, the combined application of biochar, compost and biogas slurry enhanced soil urease and β-glucosidase activity up to 96% and 67% over control respectively. In addition, plant height, chlorophyll content, water use efficiency and 1000-grain weight were also enhanced up to 54%, 90%, 53% and 21% respectively, with the combined use of all amendments. Here, biochar addition helped to reduce the nutrient losses of compost and biogas slurry as well. It is concluded that biochar application in combination with compost and biogas slurry could be a more sustainable, environment-friendly and cost-effective approach, particularly for less fertile soils.
机译:在本研究中,我们调查了小麦秸秆生物炭,堆肥和沼气浆料不同组合对玉米生长,生理学和营养状况的影响。实验是在温室盆栽实验中的完全随机化块设计进行。堆肥和沼气浆料施用,没有生物炭。结果表明,生物炭,堆肥和沼气浆料的组合增强了土壤中阳离子交换能力(31%),碳(83%),磷(67%)和钾(81%)含量。同样地,通过联合使用所有有机型修改,注意到土壤微生物碳(15%)和氮气(15%)和氮气(37%)的显着增加。此外,生物炭,堆肥和沼气浆料的组合应用增强了土壤脲酶和β-葡萄糖苷酶活性,分别高达96%和67%的对照。此外,植物高度,叶绿素含量,用水效率和1000粒重量也增强了54%,90%,53%和21%,共同使用所有修正。在这里,Biochar添加有助于降低堆肥和沼气浆料的营养损失。结论是,生物炭施用与堆肥和沼气浆液组合可以是更可持续,环保且具有成本效益的方法,特别是对于较少的肥沃土壤。

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