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滴灌条件下覆盖玉米田土壤呼吸及碳收支对灌溉量/水质和生物炭添加的响应

Response of soil respiration and carbon budget to irrigation quantity/quality and biochar addition in a mulched maize field under drip irrigation.

作者信息

Chen Yang, Wang Lu, Tong Ling, Hao Xinmei, Ding Risheng, Li Sien, Kang Shaozhong

机构信息

State Key Laboratory of Efficient Utilization of Agricultural Water Resources, Beijing 100083, China.

National Field Scientific Observation and Research Station on Efficient Water Use of Oasis Agriculture in Wuwei of Gansu Province, Wuwei 733009, China.

出版信息

J Sci Food Agric. 2024 Jan 30;104(2):1051-1062. doi: 10.1002/jsfa.12993. Epub 2023 Oct 13.

Abstract

BACKGROUND

Biochar addition strongly alters net carbon (C) balance in agroecosystems. However, the effects of biochar addition on net C balance of maize field under various irrigation water quantities and qualities remains unclear. Thus, a field experiment combining two irrigation levels of full (W1) and deficit irrigation (W2 = 1/2 W1), two water salinity levels of fresh (S0, 0.71 g L ) and brackish water (S1, 4 g L ), and two biochar addition rates of 0 t ha (B0) and 60 t ha (B1) was conducted to investigate soil carbon dioxide (CO ) emissions, maize C sequestration and C budget.

RESULTS

Compared with W1, W2 reduced average cumulative CO emissions by 6.5% and 19.9% for 2020 and 2021, respectively. The average cumulative CO emissions under W1S1 treatments were 5.4% and 22.3% lower than W1S0 for 2020 and 2021, respectively, whereas W2S0 and W2S1 had similar cumulative CO emissions in both years. Biochar addition significantly increased cumulative CO emissions by 17.8-23.5% for all water and salt treatments in 2020, and reduced average cumulative CO emissions by 11.9% for W1 but enhanced it by 8.0% for W2 in 2021. Except for W2S1, biochar addition effectively increased total maize C sequestration by 6.9-14.8% for the other three treatments through ameliorating water and salt stress over the 2 years. Compared with W1S0, W1S1 did not affect net C sequestration, but W2 treatments significantly decreased it. Biochar addition increased net C sequestration by 39.47-43.65 t C ha for four water and salt treatments for the 2 years.

CONCLUSION

These findings demonstrate that biochar addition is an effective strategy to increase both crop C sequestration and soil C storage under suitable water-saving irrigation methods in arid regions with limited freshwater resources. © 2023 Society of Chemical Industry.

摘要

背景

添加生物炭会显著改变农业生态系统中的净碳(C)平衡。然而,在不同灌溉水量和水质条件下,添加生物炭对玉米田净碳平衡的影响仍不明确。因此,开展了一项田间试验,该试验结合了充分灌溉(W1)和亏缺灌溉(W2 = 1/2W1)两个灌溉水平、淡水(S0,0.71 g/L)和微咸水(S1,4 g/L)两个水盐度水平,以及0 t/ha(B0)和60 t/ha(B1)两个生物炭添加率,以研究土壤二氧化碳(CO₂)排放、玉米碳固存和碳收支情况。

结果

与W1相比,W2在2020年和2021年分别使平均累积CO₂排放量降低了6.5%和19.9%。W1S1处理下的平均累积CO₂排放在2020年和2021年分别比W1S0低5.4%和22.3%,而W2S0和W2S1在这两年的累积CO₂排放量相似。2020年,添加生物炭使所有水盐处理的累积CO₂排放量显著增加了17.8 - 23.5%,2021年,添加生物炭使W1的平均累积CO₂排放量降低了11.9%,但使W2的平均累积CO₂排放量增加了8.0%。除W2S1外,在两年时间里,添加生物炭通过缓解水盐胁迫,使其他三种处理的玉米总碳固存有效增加了6.9 - 14.8%。与W1S0相比,W1S1不影响净碳固存,但W2处理显著降低了净碳固存。添加生物炭使两年内四种水盐处理的净碳固存增加了39.47 - 43.65 t C/ha。

结论

这些研究结果表明,在淡水资源有限的干旱地区,采用合适的节水灌溉方法时,添加生物炭是增加作物碳固存和土壤碳储量的有效策略。© 2023化学工业协会。

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