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生物炭对再生混凝土骨料植物生长和水化学性质的影响。

Effects of biochar on plant growth and hydro-chemical properties of recycled concrete aggregate.

机构信息

Department of Civil and Environmental Engineering, the Hong Kong University of Science and Technology, Hong Kong.

Center for Hypergravity Experimental and Interdisciplinary Research, Zhejiang University, Hangzhou 310058, China.

出版信息

Sci Total Environ. 2023 Jul 15;882:163557. doi: 10.1016/j.scitotenv.2023.163557. Epub 2023 Apr 19.

Abstract

Biochar has been used as a sustainable amendment to mitigate environmental risks, improve plant growth and soil properties. This study conducted laboratory column tests to investigate the effects of plant-biochar interactions on shrub growth, hydraulic properties and nutrient contents of recycled concrete aggregates (RCAs). In total, three test conditions, namely, vegetated RCA without biochar (R), with 5 % biochar (R5) and 10 % biochar (R10) were subject to drying. With biochar application, total N, P and K of RCA increased by >100 %, 200 % and 31 %, respectively, while pH reduced to 8.3. With shrub growth, the lowest RCA pH was reduced to 7.8. The leaf area index (LAI) of shrub increased by 51 % due to biochar amendment, while the differences in shoot height were insignificant. The water retention capacity of RCA was enhanced by improving the saturated water content and air-entry value by 27 % and 100 %. The slope of the soil suction-LAI correlation for biochar amend cases was 1.6 times lower than R. This indicates that biochar may limit the increase of matric suction and prevent excessive water loss during drying. However, the differences between R5 and R10 were not significant. Therefore, 5 % biochar amendment is highly suggested as it can substantially improve plant growth and soil hydraulic properties during drying.

摘要

生物炭已被用作一种可持续的改良剂,以减轻环境风险、促进植物生长和改善土壤特性。本研究通过实验室柱状试验,研究了植物-生物炭相互作用对灌木生长、水力特性和再生混凝土骨料(RCA)养分含量的影响。总共设置了三个测试条件,即无生物炭的植被 RCA(R)、添加 5%生物炭的 RCA(R5)和添加 10%生物炭的 RCA(R10),然后对它们进行干燥处理。添加生物炭后,RCA 的总 N、P 和 K 分别增加了>100%、200%和 31%,而 pH 值降低至 8.3。随着灌木的生长,RCA 的最低 pH 值降低至 7.8。由于生物炭的添加,灌木的叶面积指数(LAI)增加了 51%,而茎高的差异并不显著。通过提高饱和含水量和进气值,RCA 的水分保持能力分别提高了 27%和 100%。生物炭改良情况下的土壤吸力-LAI 相关关系的斜率比 R 低 1.6 倍。这表明生物炭可能会限制基质吸力的增加,并防止在干燥过程中过度失水。然而,R5 和 R10 之间的差异并不显著。因此,强烈建议添加 5%的生物炭,因为它可以显著提高植物生长和干燥过程中的土壤水力特性。

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