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首页> 外文期刊>Agricultural Water Management >Effect of long-term irrigation with wastewater on growth, biomass production and water use by Eucalyptus (Eucalyptus tereticornis Sm.) planted at variable stocking density
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Effect of long-term irrigation with wastewater on growth, biomass production and water use by Eucalyptus (Eucalyptus tereticornis Sm.) planted at variable stocking density

机译:长期灌溉对桉树(桉树Tereticornis SM)进行生长,生物质生产和用水的影响的影响

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摘要

Irrigation of high transpiring forest species has been put forward for recycling and reuse of wastewater and conservation of nutrient energy into biomass and thereby bringing multiple benefits such as fuel wood production, environmental sanitation and eco-restoration. But loading rates, the tree plantations can carry, continue to be contradictory. Therefore, the growth patterns, biomass production, water use and changes in soil properties were evaluated for a 10-year rotation of Eucalyptus (Eucalyptus tereticornis Sm.) plantations of variable stocking density and irrigated with either sewage (SW) or a good quality groundwater (GW). The irrigated trees grew rapidly and the stock volumes attained after 10 years were 164.0 and 127.1 m(3) ha(-1) with SW and GW, respectively. The tree growth improved with stocking density and the maximum shoot biomass (262 Mg ha(-1)) was produced under high (HD, 1993 stems ha(-1)), followed by the recommended (RD, 517 stems ha(-1); 178 Mg ha(-1)), very high (VHD, 6530 stems ha(-1); 127 Mg ha-1) and low stocking density (LD, 163 stems ha(-1); 55 Mg ha(-1)). Sap flow values almost coincided with growth rates and increased until sixth year of planting and stabilised thereafter. The annual sap flow values ranged between 418-473, 1373-1417 and 1567-1628 mm during 7-10 year of planting under LD, RD and HD, respectively. The daily sap flow values were 0.56*PAN-E (USWB Class A Open Pan Evaporation) during summer months of April-June, 1.24*PAN-E during August-October, i.e. active growth period and 1.12*PAN-E during winter months of December-February. Reference evapotranspiration (ETref) computed using Penman-Monteith method could better describe water use; the sap flow being 0.87-1.23*ETref with an average 1.03*ETref. The water productivity for timber was 1.54, 1.71 and 1.99 kg m(-3) for LD, RD and HD, respectively. Similarly, the water use efficiency increased by about 40% with HD and also with SW (11%) under RD. The soil quality improved considerably with sewage irrigation and the plant absorbed carbon was also greater. The annual carbon absorption was 3.5, 12.0, 13.9 and 7.0 Mg ha-1 under LD, RD, HD and VHD, respectively. It is concluded that Eucalyptus plantations can act as potential sites for year round and about 1.5 fold recycling of sewage than the annual crops. However, cautions, rather regulatory mechanism should be devised to control loading rates since these are not as profligate consumers of water as has been claimed. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了高转档森林物种的灌溉,用于回收和重新利用废水和养分能量储存到生物质中,从而带来多种益处,如燃料木材生产,环境卫生和生态恢复。但是装载率,树种植园可以携带,继续矛盾。因此,评价生长模式,生物质生产,用水量和土壤性质的变化,用于桉树(桉树Tereticornis SM)的10年旋转。可变加载密度的种植园,并用污水(SW)或优质地下水灌溉(GW)。灌溉树迅速增长,10年后获得的库存量分别为164.0和127.1米(3)公顷(-1),SW和GW。在高袜密度和最大芽生物量(262mg(-1))下,在高(HD,1993茎HA(-1))下产生的树木生长(262mg(-1)),其次是推荐(RD,517茎HA(-1 ); 178 mg ha(-1)),非常高(VHD,6530茎HA(-1); 127mg HA-1)和低储存密度(LD,163茎HA(-1); 55 mg ha( - 1))。 SAP流量值几乎恰好符合增长率,并增加到植入和稳定的第六年。在LD,RD和HD下的7-10岁时,每年的SAP流量值范围为418-473,1373-1417和1567-1628 mm。每日SAP流量值为0.56 * PAN-E(USWB A类开放式泛釜蒸发),在4月至6月,1.24 * PAN-E期间,在8月至10月期间,即在冬季期间主动增长期和1.12 * PAN-E 12月至2月。使用Penman-Monteith方法计算的参考蒸散(ETREF)可以更好地描述水使用; SAP流量为0.87-1.23 * ETREF,平均为1.03 * ETREF。对于LD,RD和HD,木材的水生产率分别为1.54,1.71和1.99千克M(-3)。同样,水性使用效率随高温和RD下的SW(11%)增加了约40%。土壤质量随着污水灌溉而改善,植物吸收的碳也大。在LD,Rd,HD和VHD下,每年碳吸收分别为3.5,12.0,13.9和7.0mg HA-1。结论是,桉树种植园可以作为潜在地点,比年度作物污水约为1.5倍。然而,应设计注意力,相当监管机制,以控制加载率,因为这些不是如声称的消费者的消费者。 (c)2015 Elsevier B.v.保留所有权利。

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