Puput Risdanareni, ST, MT., Ph.D. memiliki minat penelitian di bidang struktur beton, self- healing concrete, and geopolymer concrete.
Biodata
Nama
NIDN
Alamat Kantor
Google Scholar ID
Scopus ID
SINTA ID
Puput Risdanareni, ST, MT., Ph.D.
0001028602
Gedung D19 Lt. 2, Jl. Semarang No. 5 Malang
puput.risdanareni.ft@um.ac.id
Pendidikan
S1
Teknik Sipil, Institut Teknologi Sepuluh Nopember
S2
Teknik Sipil, Institut Teknologi Sepuluh Nopember
S3
Civil Engineering, Gent University, Belgia
Kepakaran
- Struktur Beton
- Self-healing concrete
- Geopolymer concrete
Mata Kuliah yang Diampu
- Dinamika Struktur
- Mekanika Bahan Lanjut
- Perancangan Struktur Bangunan Gedung Tinggi
- Perilaku Struktur Beton
- Teori dan Praktik Pengujian Bahan
- Teori Elastisitas & Plastisitas
- Teknologi Bahan Konstruksi
- Metodologi Penelitian
- Teknologi Bahan Lanjut
Penelitian
- Penelitian Kerjasama Antar Perguruan Tinggi (PEKERTI): Pemanfaatan Fly Ash Dan Metakaolin Sebagai Bahan Pembuatan Agregat Ringan Buatan (Alwa), (2016)
Pengabdian kepada Masyarakat
Sosialisasi Kegiatan Penghijauan (Program Pos Daya).
Pengembangan Master Plan Wisata Air sebagai Upaya Peningkatan Potensi Wisata Daerah dan Ekonomi Warga Desa Pait. (2022)
Chemical and Physical Characterization of Fly Ash as Geopolymer Material. (2017)
Workability enhancement of geopolymer concrete through the use of retarder. (2017)
Mechanical and physical properties of metakaolin based geopolymer paste. (2017)
The effect of foaming agent doses on lightweight geopolymer concrete metakaolin based. (2017)
Flexural Test of Fly Ash based Geopolimer Concrete Beams. (2017)
Phase identification and morphology study of hematite (Fe2O3) with sintering time varitions. (2017)
Properties of Mn0.4Zn0.6Fe2O4 and Mn0.6Zn0.4Fe2O4 as Nanocatalyst for Ammonia Production. (2017)
Green Construction and Engineering Education for Sustainable Future. (2017)
Mechanical properties of concrete composed of sintered fly ash lightweight aggregate. (2018)
The Durability of Mortar Containing Alkali Activated Fly Ash-Based Lightweight Aggregate. (2021)
Suitable yeast extract concentration for the production of self-healing mortar with expanded clay as bacterial carrier. (2022)
Paten
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Hak Cipta
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Karya Buku
- Effect of waste as supplementary cementitious materials on the transport properties of concrete (Book Chapter). (2021)