Citation: | Christian Sonne, Changlei Xia, Su Shiung Lam. Is engineered wood China's way to carbon neutrality?[J]. Journal of Bioresources and Bioproducts, 2022, 7(2): 83-84. doi: 10.1016/j.jobab.2022.03.001 |
Anderegg, W.R.L., Trugman, A.T., Badgley, G., Anderson, C.M., Bartuska, A., Ciais, P., Cullenward, D., Field, C.B., Freeman, J., Goetz, S.J., Hicke, J.A., Huntzinger, D., Jackson, R.B., Nickerson, J., Pacala, S., Randerson, J.T., 2020. Climate-driven risks to the climate mitigation potential of forests. Science 368, eaaz7005. doi: 10.1126/science.aaz7005
|
Chen, C.X., Pierobon, F., Jones, S., Maples, I., Gong, Y.C., Ganguly, I., 2021. Comparative life cycle assessment of mass timber and concrete residential buildings: a case study in China. Sustainability 14, 144. doi: 10.3390/su14010144
|
Churkina, G., Organschi, A., Reyer, C.P.O., Ruff, A., Vinke, K., Liu, Z., Reck, B.K., Graedel, T.E., Schellnhuber, H.J., 2020. Buildings as a global carbon sink. Nat. Sustain. 3, 269-276. doi: 10.1038/s41893-019-0462-4
|
Duan, H.B., Zhou, S., Jiang, K.J., Bertram, C., Harmsen, M., Kriegler, E., van Vuuren, D.P., Wang, S.Y., Fujimori, S., Tavoni, M., Ming, X., Keramidas, K., Iyer, G., Edmonds, J., 2021. Assessing China's efforts to pursue the 1.5℃ warming limit. Science 372, 378-385. doi: 10.1126/science.aba8767
|
Hong, J.K., Shen, G.Q., Peng, Y., Feng, Y., Mao, C., 2016. Uncertainty analysis for measuring greenhouse gas emissions in the building construction phase: a case study in China. J. Clean. Prod. 129, 183-195. doi: 10.1016/j.jclepro.2016.04.085
|
IEA, 2019. Global Status Report for Buildings and Construction 2019. IEA, Paris, France.
|
Iqbal, A., 2021. Developments in tall wood and hybrid buildings and environmental impacts. Sustainability 13, 11881. doi: 10.3390/su132111881
|
Lenton, T.M., Rockström, J., Gaffney, O., Rahmstorf, S., Richardson, K., Steffen, W., Schellnhuber, H.J., 2019. Climate tipping points-too risky to bet against. Nature 575, 592-595. doi: 10.1038/d41586-019-03595-0
|
Voulpiotis, K., Köhler, J., Jockwer, R., Frangi, A., 2021. A holistic framework for designing for structural robustness in tall timber buildings. Eng. Struct. 227, 111432. doi: 10.1016/j.engstruct.2020.111432
|
Xia, Q.Q., Chen, C.J., Li, T., He, S.M., Gao, J.L., Wang, X.Z., Hu, L.B., 2021. Solar-assisted fabrication of large-scale, patternable transparent wood. Sci. Adv. 7, eabd7342. doi: 10.1126/sciadv.abd7342
|
Xiao, S.L., Chen, C.J., Xia, Q.Q., Liu, Y., Yao, Y., Chen, Q.Y., Hartsfield, M., Brozena, A., Tu, K.K., Eichhorn, S.J., Yao, Y.G., Li, J.G., Gan, W.T., Shi, S.Q., Yang, V.W., Lo Ricco, M., Zhu, J.Y., Burgert, I., Luo, A.L., Li, T., Hu, L.B., 2021. Lightweight, strong, moldable wood via cell wall engineering as a sustainable structural material. Science 374, 465-471. doi: 10.1126/science.abg9556
|
Zhu, L., Hughes, A.C., Zhao, X.Q., Zhou, L.J., Ma, K.P., Shen, X.L., Li, S., Liu, M.Z., Xu, W.B., Watson, J.E.M., 2021. Regional scalable priorities for national biodiversity and carbon conservation planning in. Asia. Sci. Adv. 7, eabe4261.
|