Acknowledgments Many thanks to the SATREPS project founded by JICA (Japan International
Cooperation Agency) and JST (Japan Science and Technology Agency), the IJ-REDD project
founded by JICA, and the JICA-JPS (Japan Peatland Society)-BRG (Peatland Restoration Agency,
Indonesia) program founded mainly by JICA, PT. Wana Subur Lestari & PT. Mayangkara Tanaman
Industri, BRG through the Norwegian grant via UNOPS and WRI. Thank you for the support in the
field by Beringin Jaya Cooperatives (Siak) and CIMTROP, University of Palangka Raya (Central
Kalimantan).
References
Alexander IJ, Lee SS (2005) Mycorrhizas and ecosystem processes in tropical rain forest: implications for diversity. In: Burslem D, Pinard M, Hartley S (eds) Biotic interactions in the tropics.
Cambridge University Press, Cambridge, pp 165–2013
Anshari GZ, Afifudin M, Nuriman M, Gusmayanti E, Arianie L, Susana R, Nusantara RW,
Sugardjito J, Rafiastanto A (2010) Drainage and land use impacts on changes in selected peat
properties and peat degradation in West Kalimantan Province, Indonesia. Biogeosciences
7:3403–3419
Bartholome E, Belward AS, Achard F, Bartalev S, Carmona-Moreno C, Eva H, Sitbig HJ (2002)
GLC 2000: global land cover mapping for the year 2000. Project Status, November
BBSDLP (2011) Peta Lahan Gambut Indonesia Skala 1:250.000. Bogor: Balai Besar Penelitian dan
Pengembangan Sumberdaya Lahan Pertanian, Badan Pertanian dan Pengembangan Pertanian.
ISBN: 978-602-8977-16-6
BBSDLP (2019) Peta Lahan Gambut Indonesia Skala 1:50.000. Bogor: Balai Besar Penelitian dan
Pengembangan Sumberdaya Lahan Pertanian, Badan Penelitian dan Pengembangan Pertanian,
Kementerian Pertanian. ISBN: 978-602-459-507-4
Brearley FQ (2012) Ectomycorrhizal associations of the dipterocarpaceae. Biotropica 44
(5):637–648
Cairo PC, de Armas JM, Artiles PT, Martin BD, Carrazana RJ, Lopez OR (2017) Effect of zeolite
and organic fertilizers on soil quality and yield of sugarcane. Austr J Crop Sci 11:733–738
Dommain R, Dittrich I, Giesen W, Joosten H, Rais DS, Silvius M, Wibisono ITC (2016) Ecosystem
services, degradation and restoration of peat swamps in the Southeast Asian tropics. In: Bonn A,
Allott T, Evans M, Stoneman R, Joosten H (eds) Peatland restoration and ecosystem services:
science, policy and practice. Cambridge University Press, Cambridge
FAO (2016) Facts of Indonesia peatland and paludiculture practices. http://www.fao.org/indonesia/
news/detail-events/en/c/414437/. Accessed 26 October 2019
Gani A (2009) Potensi Arang Hayati Biochar sebagai Komponen Teknologi Perbaikan
Produktivitas Lahan Pertanian. Iptek Tanaman Pangan 4(1):35–36
Giesen W (2015) Utilising non-timber forest products to conserve Indonesia’s peat swamp forests
and reduce carbon emissions. J Indones Nat Hist 3:10–19
Goenadi DH (2004) Teknologi pengolahan zeolit menjadi bahan yang memiliki nilai ekonomi
tinggi. J Zeolit Indonesia 3(1):42–49
Graham LLB, Turjaman M, Page SE (2013) Shorea balangeran and Dyera polyphylla (syn. Dyera
lowii) as tropical peat swamp forest restoration transplant species: effects of mycorrhizae and
level of disturbance. Wetl Ecol Manag 21(5):307–321
Hashidoko Y, Gotou Y, Osaki M, Purnomo E, Suwido LH, Tahara S (2006) Characterization and
ecological role of free-living nitrogen-fixing bacteria isolated from the rhizoplane of Melastoma
malabathricum inhabiting acidic plain lands in Kalimantan. Tropics 15:365
Hayasaka H, Noguchi I, Putra EI, Yulianti N, Vadrevu K (2014) Peat-fire-related air pollution in
Central Kalimantan, Indonesia. J Environ Pollut 195:257–266
7 Principles of AeroHydro Culture
281
Cooperation Agency) and JST (Japan Science and Technology Agency), the IJ-REDD project
founded by JICA, and the JICA-JPS (Japan Peatland Society)-BRG (Peatland Restoration Agency,
Indonesia) program founded mainly by JICA, PT. Wana Subur Lestari & PT. Mayangkara Tanaman
Industri, BRG through the Norwegian grant via UNOPS and WRI. Thank you for the support in the
field by Beringin Jaya Cooperatives (Siak) and CIMTROP, University of Palangka Raya (Central
Kalimantan).
References
Alexander IJ, Lee SS (2005) Mycorrhizas and ecosystem processes in tropical rain forest: implications for diversity. In: Burslem D, Pinard M, Hartley S (eds) Biotic interactions in the tropics.
Cambridge University Press, Cambridge, pp 165–2013
Anshari GZ, Afifudin M, Nuriman M, Gusmayanti E, Arianie L, Susana R, Nusantara RW,
Sugardjito J, Rafiastanto A (2010) Drainage and land use impacts on changes in selected peat
properties and peat degradation in West Kalimantan Province, Indonesia. Biogeosciences
7:3403–3419
Bartholome E, Belward AS, Achard F, Bartalev S, Carmona-Moreno C, Eva H, Sitbig HJ (2002)
GLC 2000: global land cover mapping for the year 2000. Project Status, November
BBSDLP (2011) Peta Lahan Gambut Indonesia Skala 1:250.000. Bogor: Balai Besar Penelitian dan
Pengembangan Sumberdaya Lahan Pertanian, Badan Pertanian dan Pengembangan Pertanian.
ISBN: 978-602-8977-16-6
BBSDLP (2019) Peta Lahan Gambut Indonesia Skala 1:50.000. Bogor: Balai Besar Penelitian dan
Pengembangan Sumberdaya Lahan Pertanian, Badan Penelitian dan Pengembangan Pertanian,
Kementerian Pertanian. ISBN: 978-602-459-507-4
Brearley FQ (2012) Ectomycorrhizal associations of the dipterocarpaceae. Biotropica 44
(5):637–648
Cairo PC, de Armas JM, Artiles PT, Martin BD, Carrazana RJ, Lopez OR (2017) Effect of zeolite
and organic fertilizers on soil quality and yield of sugarcane. Austr J Crop Sci 11:733–738
Dommain R, Dittrich I, Giesen W, Joosten H, Rais DS, Silvius M, Wibisono ITC (2016) Ecosystem
services, degradation and restoration of peat swamps in the Southeast Asian tropics. In: Bonn A,
Allott T, Evans M, Stoneman R, Joosten H (eds) Peatland restoration and ecosystem services:
science, policy and practice. Cambridge University Press, Cambridge
FAO (2016) Facts of Indonesia peatland and paludiculture practices. http://www.fao.org/indonesia/
news/detail-events/en/c/414437/. Accessed 26 October 2019
Gani A (2009) Potensi Arang Hayati Biochar sebagai Komponen Teknologi Perbaikan
Produktivitas Lahan Pertanian. Iptek Tanaman Pangan 4(1):35–36
Giesen W (2015) Utilising non-timber forest products to conserve Indonesia’s peat swamp forests
and reduce carbon emissions. J Indones Nat Hist 3:10–19
Goenadi DH (2004) Teknologi pengolahan zeolit menjadi bahan yang memiliki nilai ekonomi
tinggi. J Zeolit Indonesia 3(1):42–49
Graham LLB, Turjaman M, Page SE (2013) Shorea balangeran and Dyera polyphylla (syn. Dyera
lowii) as tropical peat swamp forest restoration transplant species: effects of mycorrhizae and
level of disturbance. Wetl Ecol Manag 21(5):307–321
Hashidoko Y, Gotou Y, Osaki M, Purnomo E, Suwido LH, Tahara S (2006) Characterization and
ecological role of free-living nitrogen-fixing bacteria isolated from the rhizoplane of Melastoma
malabathricum inhabiting acidic plain lands in Kalimantan. Tropics 15:365
Hayasaka H, Noguchi I, Putra EI, Yulianti N, Vadrevu K (2014) Peat-fire-related air pollution in
Central Kalimantan, Indonesia. J Environ Pollut 195:257–266
7 Principles of AeroHydro Culture
281
