Wan, H.; Cao, G.; Zhang, X.; Xie, N.; Ma, J.; Di, Y.; Ye, H.; Hou, J.; Wei, Z.; Zhang, H.;
et al. Differential Responses of Soil Thermal Conductivity, Microbial Carbon Use Efficiency, and Soil Organic Carbon to Feedstock-Specific Biochar Under Alternate Drying–Wetting Cycles. Agronomy 2026, 16, 1262.
https://doi.org/10.3390/agronomy16131262
AMA Style
Wan H, Cao G, Zhang X, Xie N, Ma J, Di Y, Ye H, Hou J, Wei Z, Zhang H,
et al. Differential Responses of Soil Thermal Conductivity, Microbial Carbon Use Efficiency, and Soil Organic Carbon to Feedstock-Specific Biochar Under Alternate Drying–Wetting Cycles. Agronomy. 2026; 16(13):1262.
https://doi.org/10.3390/agronomy16131262
Chicago/Turabian Style
Wan, Heng, Gang Cao, Xiangyang Zhang, Ninghui Xie, Jinhui Ma, Yunfei Di, He Ye, Jingxiang Hou, Zhenhua Wei, Hailin Zhang,
and et al. 2026. "Differential Responses of Soil Thermal Conductivity, Microbial Carbon Use Efficiency, and Soil Organic Carbon to Feedstock-Specific Biochar Under Alternate Drying–Wetting Cycles" Agronomy 16, no. 13: 1262.
https://doi.org/10.3390/agronomy16131262
APA Style
Wan, H., Cao, G., Zhang, X., Xie, N., Ma, J., Di, Y., Ye, H., Hou, J., Wei, Z., Zhang, H., Li, F., Hong, M., & Liu, F.
(2026). Differential Responses of Soil Thermal Conductivity, Microbial Carbon Use Efficiency, and Soil Organic Carbon to Feedstock-Specific Biochar Under Alternate Drying–Wetting Cycles. Agronomy, 16(13), 1262.
https://doi.org/10.3390/agronomy16131262