Study on the effect of biomass charcoal-biogas application technology on soil carbon and nitrogen fractions and soil microbiological properties based on biomass charcoal-biogas application technology
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Chen, J., Luo, Y., Van Groenigen, K. J., Hungate, B. A., Cao, J., Zhou, X., & Wang, R. W. (2018). A keystone microbial enzyme for nitrogen control of soil carbon storage. Science Advances, 4(8), eaaq1689.Search in Google Scholar
Liao, X., Mao, S., Chen, Y., Zhang, J., Muller, C., & Malghani, S. (2022). Combined effects of biochar and biogas slurry on soil nitrogen transformation rates and N2O emission in a subtropical poplar plantation. Science of the Total Environment, 848, 157766.Search in Google Scholar
Zhou, Z., Wang, C., Zheng, M., Jiang, L., & Luo, Y. (2017). Patterns and mechanisms of responses by soil microbial communities to nitrogen addition. Soil Biology and Biochemistry, 115, 433-441.Search in Google Scholar
Huang, X., Miao, X., Chu, X., Luo, L., Zhang, H., & Sun, Y. (2023). Enhancement effect of biochar addition on anaerobic co-digestion of pig manure and corn straw under biogas slurry circulation. Bioresource Technology, 372, 128654.Search in Google Scholar
Ren, C., Zhang, W., Zhong, Z., Han, X., Yang, G., Feng, Y., & Ren, G. (2018). Differential responses of soil microbial biomass, diversity, and compositions to altitudinal gradients depend on plant and soil characteristics. Science of the Total Environment, 610, 750-758.Search in Google Scholar
Li, B., Jing, F., Hu, Z., Liu, Y., Xiao, B., & Guo, D. (2021). Simultaneous recovery of nitrogen and phosphorus from biogas slurry by Fe-modified biochar. Journal of Saudi Chemical Society, 25(4), 101213.Search in Google Scholar
Li, Y., Chang, S. X., Tian, L., & Zhang, Q. (2018). Conservation agriculture practices increase soil microbial biomass carbon and nitrogen in agricultural soils: A global meta-analysis. Soil Biology and Biochemistry, 121, 50-58.Search in Google Scholar
He, L., Wang, D., Zhu, T., Lv, Y., & Li, S. (2023). Pyrolysis recycling of pig manure biochar adsorption material for decreasing ammonia nitrogen in biogas slurry. Science of The Total Environment, 881, 163315.Search in Google Scholar
Song, Y., Liu, C., Wang, X., Ma, X., Jiang, L., Zhu, J., ... & Song, C. (2020). Microbial abundance as an indicator of soil carbon and nitrogen nutrient in permafrost peatlands. Ecological Indicators, 115, 106362.Search in Google Scholar
Chen, J., Jiang, X., Zhang, Y., Zhang, Y., Sun, Y., & Zhang, L. (2022). Organic matter conversion and contributors to bioavailability in biogas slurry treated by biochar/persulfate during the oxidation pond process. Journal of Cleaner Production, 355, 131770.Search in Google Scholar
Li, Y., Nie, C., Liu, Y., Du, W., & He, P. (2019). Soil microbial community composition closely associates with specific enzyme activities and soil carbon chemistry in a long-term nitrogen fertilized grassland. Science of the Total Environment, 654, 264-274.Search in Google Scholar
Liao, X., Chen, Y., Ruan, H., & Malghani, S. (2021). Incapability of biochar to mitigate biogas slurry induced N2O emissions: Field investigations after 7 years of biochar application in a poplar plantation. Science of the Total Environment, 794, 148572.Search in Google Scholar
Jia, X., Zhong, Y., Liu, J., Zhu, G., Shangguan, Z., & Yan, W. (2020). Effects of nitrogen enrichment on soil microbial characteristics: From biomass to enzyme activities. Geoderma, 366, 114256.Search in Google Scholar
Kumar, M., Dutta, S., You, S., Luo, G., Zhang, S., Show, P. L., ... & Tsang, D. C. (2021). A critical review on biochar for enhancing biogas production from anaerobic digestion of food waste and sludge. Journal of Cleaner Production, 305, 127143.Search in Google Scholar
Li, L. J., Zhu-Barker, X., Ye, R., Doane, T. A., & Horwath, W. R. (2018). Soil microbial biomass size and soil carbon influence the priming effect from carbon inputs depending on nitrogen availability. Soil Biology and Biochemistry, 119, 41-49.Search in Google Scholar
Liang, X., Wang, C., Wang, H., Qiu, X., Ji, H., Ju, H., & Wang, J. (2023). Synergistic effect on soil health from combined application of biogas slurry and biochar. Chemosphere, 343, 140228.Search in Google Scholar
Luo, Z., Wen, H., Zhang, H., Li, Y., Mai, X., Zhang, Y., ... & Zhang, Z. (2022). Biogas residue biochar integrated with phosphate from its ash for the effective recovery of nutrients from piggery biogas slurry. Biochar, 4(1), 23.Search in Google Scholar
Du, Z., Xiao, Y., Qi, X., Liu, Y., Fan, X., & Li, Z. (2018). Peanut-shell biochar and biogas slurry improve soil properties in the North China Plain: a four-year field study. Scientific reports, 8(1), 13724.Search in Google Scholar
Abbas, A., Naveed, M., Azeem, M., Yaseen, M., Ullah, R., Alamri, S., ... & Siddiqui, M. H. (2020). Efficiency of wheat straw biochar in combination with compost and biogas slurry for enhancing nutritional status and productivity of soil and plant. Plants, 9(11), 1516.Search in Google Scholar
Eltohamy, K. M., Milham, P. J., Gouda, M., Menezes-Blackburn, D., Khan, S., Liu, B., ... & Liang, X. (2023). Size and composition of colloidal phosphorus across agricultural soils amended with biochar, manure and biogas slurry. Carbon Research, 2(1), 16.Search in Google Scholar
Abdo, A. I. (2021). Changes in sandy soil hydro-physical properties as function of biochar and biogas slurry amendments. Soil Use and Management, 37(4), 762-771.Search in Google Scholar
Kubar, A. A., Huang, Q., Sajjad, M., Yang, C., Lian, F., Wang, J., & Kubar, K. A. (2021). The recovery of phosphate and ammonium from biogas slurry as value-added fertilizer by biochar and struvite co-precipitation. Sustainability, 13(7), 3827.Search in Google Scholar
Ren, T., Liao, J., Jin, L., Delgado-Baquerizo, M., & Ruan, H. (2023). Application of biogas-slurry and biochar improves soil multifunctionality in a poplar plantation during afforestation processes. Plant and Soil, 1-17.Search in Google Scholar
Ye, C., Chen, D., Hall, S. J., Pan, S., Yan, X., Bai, T., ... & Hu, S. (2018). Reconciling multiple impacts of nitrogen enrichment on soil carbon: plant, microbial and geochemical controls. Ecology Letters, 21(8), 1162-1173.Search in Google Scholar
Zhou, Z., Wang, C., & Luo, Y. (2018). Effects of forest degradation on microbial communities and soil carbon cycling: a global meta-analysis. Global Ecology and Biogeography, 27(1), 110-124.Search in Google Scholar
Li, Z., Tian, D., Wang, B., Wang, J., Wang, S., Chen, H. Y., ... & Niu, S. (2019). Microbes drive global soil nitrogen mineralization and availability. Global change biology, 25(3), 1078-1088.Search in Google Scholar
Tian, J., Dungait, J. A., Lu, X., Yang, Y., Hartley, I. P., Zhang, W., ... & Kuzyakov, Y. (2019). Long-term nitrogen addition modifies microbial composition and functions for slow carbon cycling and increased sequestration in tropical forest soil. Global change biology, 25(10), 3267-3281.Search in Google Scholar
Zhaoming Chen,Jinchuan Ma,Junwei Ma,Jing Ye,Qiaogang Yu,Ping Zou... & Qiang Wang. (2024). Long-term biogas slurry application increases microbial necromass but not plant lignin contribution to soil organic carbon in paddy soils as regulated by fungal community. Waste Management254-264.Search in Google Scholar
Honglei Ren,Shengjun Xu,Fengyi Zhang,Mingming Sun & Ruiping Zhang. (2023). Cultivation and Nitrogen Management Practices Effect on Soil Carbon Fractions, Greenhouse Gas Emissions, and Maize Production under Dry-Land Farming System. Land(7).Search in Google Scholar
Niu Ziru,Su Yongzhong,An Fangjiao & Liu Tingna. (2021). Changes in soil carbon and nitrogen content, associated with aggregate fractions, after conversion of sandy desert to irrigation farmland, northwest China. Soil Use and Management(1),396-410.Search in Google Scholar
Sun Hua,Ding Hairong,Ding Chenglong,Yang Zhiqing,Shi Kai,An Chen... & Hou Fuyin. (2023). The Effect of Biogas Slurry Application on Biomass Production and the Silage Quality of Corn. Animal bioscience(12).Search in Google Scholar