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Regional Considerations for Targeted Use of Biochar in Agriculture and Remediation in Australia

作者

Lynne M. Macdonald, Rai S. Kookana, Lukas van Zwieten, Bhupinder P. Singh, Balwant Singh, Mark Farrell

名稱(期刊/節目)

Agricultural and Environmental Applications of Biochar: Advances and Barriers

期刊期數/節目集數

Volume 63, Pages 445-474

出版單位

Wiley

出版年月日

2015/10/29

原文摘要

This chapter provides an overview of biochar research within Australia with consideration given to the regional land‐use diversity in defining both the dominant feedstock materials used and the dominant target systems. Carbon sequestration and greenhouse gas (GHG) mitigation have been strong underlying themes of Australian biochar research, with contaminant focus on its use as a soil amendment in agriculture. Clear messages from the research are often hampered by the high level of variation reported in key study parameters, including the biochar types used and the soil environments they are applied to. Nevertheless, field trials within the eastern agricultural region support the wider global view that highly weathered acidic soils (e.g., Ferrosols) provide a good target system where biochar can improve pH and nutrient availability and reduce Al toxicity. The results from the southern and western regions are more limited and inconsistent and currently leave the potential use in legume rotations unexplored. The risk of reduced herbicide efficacy is of particular relevance to Australia. Herbicide resistance is a growing problem, and adoption of no‐till practices is dependent on effective and economic weed control; therefore, field scale assessment of the impact of biochar is required. Interest in the use of biochar as a soil remediation and rehabilitation tool has been slow to appear in Australia, but there is growing interest for bauxite rehabilitation, heavy‐metal remediation, and management of acid‐sulfate soils. Building on growing understanding of the sorptive and reactive characteristics of biochar, there has been a shift toward the type of targeted and integrated approaches required to overcome adoption barriers, for example, as part of enhanced C fertilizers. The development of integrated biochar approaches in agriculture and environmental management is intrinsically linked to establishment of a bioenergy industry, which is currently fragmented in Australia.

原文摘要簡述

本章概述澳洲境內生物炭的研究,同時定義使用主要原料和主要指標系統時,需考量區域土地利用的多樣性。固碳和減少溫室氣體(GHG)一直是澳洲生物炭研究的重要主題,在污染物方面,著重在農業土壤改良劑上。清楚明確的資訊經常受到報告中顯著差異的關鍵研究參數(包括所使用的生物炭類型及其所應用的土壤環境)的阻礙。然而,東部農業地區的田間試驗提供了一個良好的指標系統,並支持更廣泛的全球觀點(生物炭在高度風化的酸性土壤(富鐵土)可改善土壤pH值、養分利用率以及降低土壤中鋁的毒性)。南部和西部地區的結果較為有限且不一致,目前對豆類輪作的潛在用途無人進行研究。與澳洲特別相關的潛在危險是降低除草劑的功效。除草劑抗藥性是一個日益嚴重的問題,採取「免耕」(no-till)的農業政策取決於快速有效和經濟利益的雜草管理。因此,現地規模評估生物炭的影響是必須的。在澳洲,人們對於生物炭作為土壤改良與修護工具的興趣不高,但在鋁土礦修復、重金屬土壤改良以及硫酸鹽土壤管理的興趣日益濃厚。在日益了解生物炭吸附和反應特性的基礎上,已經有朝向針對性和綜合性類型去採用克服障礙所需轉變的方法,例如,增加部分的碳肥施用。綜合生物炭在農業和環境管理上的發展方法,在澳洲內部目前正在連結建構一個零散生物能源產業。

關鍵字

agriculture, A ustralia, biochar use, carbon sequestration, greenhouse gas mitigation, regional land‐use diversity, soil amendment, soil rehabilitation, soil remediation

連結

https://doi.org/10.2136/sssaspecpub63.2014.0052

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