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{"title":"海藻盛开的设计","authors":"Xiwei Shen, Jiawen Chen, Qiuyi Yang, Mengting Ge","doi":"10.3368/er.41.2-3.78","DOIUrl":null,"url":null,"abstract":"doi:10.3368/er.41.2–3.78 Ecological Restoration Vol. 41, Nos. 2–3, 2023 ISSN 1522-4740 E-ISSN 1543-4079 ©2023 by the Board of Regents of the University of Wisconsin System. Harper, J.L., J.T. Williams and G.R. Sagar. 1965. The behaviour of seeds in soil: I. The heterogeneity of soil surfaces and its role in determining the establishment of plants from seed. Journal of Ecology 53:273–286. Jírová, A., A. Klaudisová and K. Prach. 2012. Spontaneous restoration of target vegetation in old-fields in a central European landscape: a repeated analysis after three decades. Applied Vegetation Science 15:245–252. Mills, A.J. and R.M. Cowling. 2006. Rate of carbon sequestration at two thicket restoration sites in the Eastern Cape, South Africa. Restoration Ecology 14:38–49. Mucina, L. and M.C. Rutherford. 2006. The vegetation of South Africa, Lesotho and Swaziland. Strelitzia 19, South African National Biodiversity Institute, Pretoria. Ruwanza, S. 2017. Furrows as centers of restoration in old fields of Renosterveld, South Africa. Ecological Restoration 35:289–29. Ruwanza, S. 2019. Nurse plants have the potential to accelerate vegetation recovery in Lapalala Wilderness old fields, South Africa. African Journal of Ecology 57:82–91. Ruwanza, S. 2022. Microtopographic variations in soil physicochemical properties in oldfield targeted for ecological restoration. African Journal of Ecology 60:750–758. Shiponeni, N.N. and S.J. Milton. 2006. Seed dispersal in the dung of large herbivores: implications for restoration of Renosterveld shrubland old fields. Biodiversity and Conservation 15: 3161–3175. Sojnekova, M. and M. Chytrý. 2015. From arable land to species-rich semi-natural grasslands, Succession in abandoned fields in a dry region of central Europe. Ecological Engineering 77:373–381. 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Design with Algae Bloom
doi:10.3368/er.41.2–3.78 Ecological Restoration Vol. 41, Nos. 2–3, 2023 ISSN 1522-4740 E-ISSN 1543-4079 ©2023 by the Board of Regents of the University of Wisconsin System. Harper, J.L., J.T. Williams and G.R. Sagar. 1965. The behaviour of seeds in soil: I. The heterogeneity of soil surfaces and its role in determining the establishment of plants from seed. Journal of Ecology 53:273–286. Jírová, A., A. Klaudisová and K. Prach. 2012. Spontaneous restoration of target vegetation in old-fields in a central European landscape: a repeated analysis after three decades. Applied Vegetation Science 15:245–252. Mills, A.J. and R.M. Cowling. 2006. Rate of carbon sequestration at two thicket restoration sites in the Eastern Cape, South Africa. Restoration Ecology 14:38–49. Mucina, L. and M.C. Rutherford. 2006. The vegetation of South Africa, Lesotho and Swaziland. Strelitzia 19, South African National Biodiversity Institute, Pretoria. Ruwanza, S. 2017. Furrows as centers of restoration in old fields of Renosterveld, South Africa. Ecological Restoration 35:289–29. Ruwanza, S. 2019. Nurse plants have the potential to accelerate vegetation recovery in Lapalala Wilderness old fields, South Africa. African Journal of Ecology 57:82–91. Ruwanza, S. 2022. Microtopographic variations in soil physicochemical properties in oldfield targeted for ecological restoration. African Journal of Ecology 60:750–758. Shiponeni, N.N. and S.J. Milton. 2006. Seed dispersal in the dung of large herbivores: implications for restoration of Renosterveld shrubland old fields. Biodiversity and Conservation 15: 3161–3175. Sojnekova, M. and M. Chytrý. 2015. From arable land to species-rich semi-natural grasslands, Succession in abandoned fields in a dry region of central Europe. Ecological Engineering 77:373–381. Zedler, J.B. and P.H. Zedler. 1969. Association of species and their relationship to microtopography within old fields. Ecology 50: 432–442.