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    题名 作者 年代 出处 被引量
1Economic valuation of gas regulation as a service by rice-duck-fish complex ecosystem显示文摘Valuating the function of ecosystem services is crucial for accounting green GDP, making a conserva-tion policy of ecological environment and the decision of regional development as well as sustainable development strategy. Rice-duck-f ish symbiosis has been promoted in several developing countries as a way of increasing incomes for rice farmers, but investigations of its value have mainly focused on direct economic benefi ts, such as food and raw material production. Few studies have been conducted on the estimation of indirect services provided by rice-duck-fi sh complex ecosystem. The gas regulation service and its economic values provided by rice-duck-f ish complex ecosystem were studied in Wuhan, China. The major components of gas regulation are O2 emission and greenhouse gases (GHGs, CO2) regulation. The results show that O2 emission from different treatments (including rice-duck (RD), rice-f ish (RF), rice-duck-f ish (RDF) and rice (CK)) ranged from 26,370 kg/ha to 33,910 kg/ha per year, with an eco-nomic value of 10,050-12,920 yuan/ha per year (Chinese currency: 1 euro =10.2475 yuan, August 28, 2007). The net GHGs exchange varied from 1,200 to 3,320 kg/ha per year, and its economic value ranged from 1,040 yuan/ha to 2,900 yuan/ha per year. Consequently, the total economic value of gas regulation provided by symbiosis complex ecosystems ranged from 11,090 yuan/ha to 15,820 yuan/ha per year, and the maximum overall economic value of gas regulation was provided by RDF complex ecosystem. The work will be useful for further understanding of the func-tions of rice-duck-fi sh complex ecosystem services and supplying the theoretical references to agricultural policy.Yuan Welling Cao Cougui Wang Jinping 2008Ecological Economy2008,4,3:10
2Straw return increases crop grain yields and K-use efficiency under a maize-rice cropping system显示文摘Straw return is an effective way to improve crop grain yield and potassium(K)use efficiency by increasing soil K content.However,the effects of straw return on soil K supplying capacity,replacement of K fertilizer,and K-use efficiency under maize(Zea mays L.)–rice(Oryza sativa L.)cropping systems are little studied.A two-year field experiment was conducted to determine the physiological determinants of K-use efficiency under straw return with four K fertilization rates.Sr33(straw returned plus 33%of K fertilizer applied)and Sr67(straw returned plus 67%of K fertilizer applied)increased annual crop yields by 1.5%and 3.2%and increased agronomic K-use efficiency by respectively 2.9 and 1.3-fold on average in the two years,compared with the conventional practice S0K100(no straw returned plus normal amounts of K fertilizer applied).The Sr33 and Sr67 treatments resulted in significantly greater equilibrium K concentration ratios(CR0 K)and specifically exchangeable K(KX)values according to quantity/intensity(Q/I)relationship analyses,indicating improvement of the potential soil K supply capacity.However,the Sr67 better maintained the soil exchangeable K level and K balance.The results suggested that K released from maize and rice straw can replace about half of chemical K fertilizer,depending on the available K content in maize–rice cropping system production.Yuling Han Wei Ma Baoyuan Zhou Akram Salah Mingjian Geng Cougui Cao Ming Zhan Ming Zhao 2021The Crop Journal2021,9,1:5
3Effects of irrigation regime and nitrogen management on grain yield, quality and water productivity in rice显示文摘Pan Shenggang Cao Cougui Cai Mingli 2009Journal of Food Agriculture & Environment2009,7,2:1
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